B Ionic strength corrections
824
Alternatively, water activities can be taken from Table B-l. These have been calculated for the most common ionic media at various concentrations applying Pitzer's ion interaction model and the interaction parameters given in [91 PIT]. Data in italics have been calculated for concentrations beyond the validity of the parameter set applied. These data are therefore extrapolations and should be used with care.
Table B-l: Water activities auo for the most common ionic media at various concentrations applying Pitzer's ion interaction approach and the interaction parameters given in [91 PIT]. Data in italics have been calculated for concentrations beyond the validity of the parameter set applied. These data are therefore extrapolations and should be used with care.
Water activities a H 0 c(M)
HC1O 4
NaClO 4
LiClO4
NH4CIO4
Ba(CIO4)2
HC1
NaCl
LiCI
0.10
0.9966
0.9966
0.9966
0.9967
0.9953
0.9966
0.9966
0.9966
0.25
0.9914
0.9917
0.9912
0.9920
0.9879
0.9914
0.9917
0.9915
0.50
0.9821
0.9833
0.9817
0.9844
0.9740
0.9823
0.9833
0.9826
0.75
0.9720
0.9747
0.9713
0.9769
0.9576
0.9726
0.9748
0.9731
1.00
0.9609
0.9660
0.9602
0.9694
0.9387
0.9620
0.9661
0.9631
1.50
0.9357
0.9476
0.9341
0.9542
0.8929
0.9386
0.9479
0.9412
2.00
0.9056
0.9279
0.9037
0.8383
0.9115
0.9284
0.9167
0.7226
0.8459
0.8850
0.8589
0.7643
0.8352
0.7991
0.7782
0.7079
3.00
0.8285
0.8840
0.8280
4.00
0.7260
0.8331
0.7309
5.00
0.5982
0.7744
0.6677
6.00
0.4513
0.7075
0.5592
0.6169
(Continued on next page)
B. 1 The specific ion interaction equations
825
Table B-l: (continued) c(M)
K.C1
NH4CI
MgCI,
CaCl2
NaBr
HNO3
NaNO3
LiNO3
0.10
0.9966
0.9966
0.9953
0.9954
0.9966
0.9966
0.9967
0.9966
0.25
0.9918
0.9918
0.9880
0.9882
0.9916
0.9915
0.9919
0.9915
0.50
0.9836
0.9836
0.9744
0.9753
0.9830
0.9827
0.9841
0.9827
0.75
0.9754
0.9753
0.9585
0.9605
0.9742
0.9736
0.9764
0.9733
1.00
0.9671
0.9669
0.9399
0.9436
0.9650
0.9641
0.9688
0.9635
1.50
0.9500
0.9494
0.8939
0.9024
0.9455
0.9439
0.9536
0.9422
2.00
0.9320
0.9311
0.8358
0.8507
0.9241
0.9221
0.9385
0.9188
3.00
0.8933
0.8918
0.6866
0.7168
0.8753
0.8737
0.9079
0.8657
4.00
0.8503
0.8491
0.5083
0.5511
0.8174
0.8196
0.8766
0.8052
0.3735
0.7499
0.7612
0.8446
0.7390
0.6728
0.7006
0.8120
0.6696
0.8037
5.00 6.00 c(M)
NH4NO3
Na,SO4
(NH4)2SO4 Na2CO3
K.2CO3
NaSCN
0.10
0.9967
0.9957
0.9958
0.9956
0.9955
0.9966
0.25
0.9920
0.9900
0.9902
0.9896
0.9892
0.9915
0.50
0.9843
0.9813
0.9814
0.9805
0.9789
0.9828
0.75
0.9768
0.9732
0.9728
0.9720
0.9683
0.9736
1.00
0.9694
0.9653
0.9640
0.9637
0.9570
0.9641
1.50
0.9548
0.9491
0.9455
0.9467
0.9316
0.9438
2.00
0.9403
0.9247
0.9283
0.9014
0.9215
3.00
0.9115
0.8735
0.8235
0.8708
4.00
0.8829
0.8050
0.7195
0.8115
5.00
0.8545
0.5887
0.7436
6.00
0.8266
0.6685
Values of osmotic coefficients for single electrolytes have been compiled by various authors, e.g., Robinson and Stokes [59ROB/STO]. The activity of water can also be calculated from the known activity coefficients of the dissolved species. In the presence of an ionic medium, N v+ X v , of a concentration much larger than those of the reacting ions, the osmotic coefficient can be calculated according to Eq. (B.I 1) (cf. Eqs. (23-39), (23-40) and (A4-2) in [61 LEW/RAN]).
826
B Ionic strength corrections
,
±
A\n(\O)z+z_
-ln(10)e(N,X)»i N
where v+ and v_ are the number of cations and anions in the salt formula (v+z+ = v_z_) and in this case:
The activity of water is obtained by inserting Eq. (B.ll) into Eq. (B.10). It should be mentioned that in mixed electrolytes with several components at high concentrations, it might be necessary to use Pitzer's equation to calculate the activity of water. On the other hand, aH0 is nearly constant in most experimental studies of equilibria in dilute aqueous solutions, where an ionic medium is used in large excess with respect to the reactants. The medium electrolyte thus determines the osmotic coefficient of the solvent. In natural waters the situation is similar; the ionic strength of most surface waters is so low that the activity of H2O(1) can be set equal to unity. A correction may be necessary in the case of seawater, where a sufficiently good approximation for the osmotic coefficient may be obtained by considering NaCl as the dominant electrolyte. In more complex solutions of high ionic strengths with more than one electrolyte at significant concentrations, e.g., (Na+, Mg2+, Ca2+) (CT, SO^), Pitzer's equation (cf. [2000GRE/WAN]) may be used to estimate the osmotic coefficient; the necessary interaction coefficients are known for most systems of geochemical interest. Note that in all ion interaction approaches, the equation for the mean activity coefficients can be split up to give equations for conventional single ion activity coefficients in mixtures, e.g., Eq. (B.I). The latter are strictly valid only when used in combinations which yield electroneutrality. Thus, while estimating medium effects on standard potentials, a combination of redox equilibria with, H + +e~ ^ ^-H 2 (g), is necessary (cf. Example B.3).
B.I.2 Ionic strength corrections at temperatures other than 298.15 K Values of the Debye-Hiickel parameters A and B in Eqs. (B.2) and (B.ll) are listed in Table B-2 for a few temperatures at a pressure of 1 bar below 100°C and at the steam saturated pressure for t > 100°C. The values in Table B-2 may be calculated from the static dielectric constant and the density of water as a function of temperature and pres-
B. 1 The specific ion interaction equations
827
sure, and are also found for example in Refs. [74HEL/KIR], [79BRA/PIT], [81HEL/KIR], [84ANA/ATK], [90ARC/WAN]. The term, Baj, in the denominator of the Debye-Hiickel term, D, cf. Eq. (B.2), has been assigned in this review a value of 1.5 kg^ -moP^ at 25 °C and 1 bar, cf. Section B.I.I At temperatures and pressures other than the reference and standard state, the following possibilities exist: • The value of Baj is calculated at each temperature assuming that ion sizes are independent of temperature and using the values of B listed in Table B-2. • The value Baj is kept constant at 1.5 kg^ -moi"^. Due the variation of B with temperature, cf. Table B-2, this implies a temperature dependence for ion size parameters. Assuming for the ion size is in reality constant, then it is seen that this simplification introduces an error in D, which increases with temperature and ionic strength (this error is less than ±0.01 at t < 100°C and / < 6 m, and less than ± 0.006 at t < 50°C and / < 4 m). • The value of Baj is calculated at each temperature assuming a given temperature variation for «, and using the values of B listed in Table B-2. For example, in the aqueous ionic model of Helgeson and co-workers ([88TAN/HEL], [88SHO/HEL], [89SHO/HEL], [89SHO/HEL2]) ionic sizes follow the relation: aj(T) =a y (298.15 K, 1 bar) + \Zj\g{T,p) [90OEL/HEL], where g(T, p) is a temperature and pressure function which is tabulated in [88TAN/HEL], [92SHO/OEL], and is approximately zero at temperatures below 175°C. The values of e(j,k,l m ), obtained with the methods described in Section B.I.3 at temperatures other than 25°C, will depend on the value adopted for Baj. As long as a consistent approach is followed, values of s(j, k, Im) absorb the choice of Baj, and for moderate temperature intervals (between 0 and 200°C) the choice Baj — 1.5 kg^ • moP^ is the simplest one and is recommended by this review. The variation of s(j,k,Im) with temperature is discussed by Lewis et al. [61LEW/RAN], Millero [79MIL], Helgeson et al. [81HEL/KIR], [90OEL/HEL], Giffaut et al. [93GIF/VIT2] and Grenthe and Plyasunov [97GRE/PLY]. The absolute values for the reported ion interaction parameters differ in these studies due to the fact that the Debye-Hilckel term used by these authors is not exactly the same. Nevertheless, common to all these studies is the fact that values of (ds/dT)p are usually < 0.005 kg-mor'-KT1 for temperatures below 200°C. Therefore, if values of z{j,k,Im) obtained at 25°C are used in the temperature range 0 to 50°C to perform ionic strength corrections, the error in log]0 y. IIm will be < 0.13. It is clear that in order to reduce the uncertainties in solubility calculations at t ^ 25°C, studies on the variation of z{j,k,Im) values with temperature should be undertaken.
B Ionic strength corrections
828
Table B-2: Debye-Hiickel constants as a function of temperature at a pressure of 1 bar below 100°C and at the steam saturated pressure for t > 100°C. The uncertainty in the A parameter is estimated by this review to be ± 0.001 at 25°C, and + 0.006 at 300°C, while for the B parameter the estimated uncertainty ranges from ± 0.0003 at 25°C to ±0.001 at300°C. t(°C)
p(bar)
0 5 10 15 20 25 30 35 40 50 75 100 125 150 175 200 250 300
1.00 1.00 1.00 1.00 1.00 1.00 1.00 1.00 1.00 1.00 1.00 1.013 2.32 4.76 8.92 15.5 29.7 85.8
0.3246
0.491 0.494 0.498 0.501 0.505 0.509 0.513 0.518 0.525 0.534 0.564 0.600 0.642 0.690 0.746 0.810 0.980 1.252
0.3254 0.3261 0.3268 0.3277 0.3284 0.3292 0.3300 0.3312 0.3326 0.3371 0.3422 0.3476 0.3533 0.3593 0.365 0.379 0.396
B.1.3 Estimation of ion interaction coefficients B.l.3.1
Estimation from mean activity coefficient data
Example B.I: The ion interaction coefficient s(H + ,CT) can be obtained from published values of Y±. HCl
VerSUS
m
UC\ •
-D + s(Ci~,H+)/Mir
By plotting (log10 y± HC1 +D) versus mHC\ a straight line with the slope s(H + ,Cr) is obtained. The degree of linearity should in itself indicate the range of validity of the specific ion interaction approach. Osmotic coefficient data can be treated in an analogous way.
B. 1 The specific ion interaction equations
B. 1.3.2
829
Estimations based on experimental values of equilibrium constants at different ionic strengths
Example B.2: Equilibrium constants are given in Table B-3 for the reaction: UOf +C1" ^
UO2C1+
(B.12)
The following formula is deduced from Eq. (B.5) for the extrapolation to / = 0:
The linear regression is done as described in Appendix C. The following results are obtained: log10/?° = (0.170 + 0.021) Ae(B.12) = - (0.248 ± 0.022) kg-mol"1. The experimental data are depicted in Figure B-l, where the area enclosed by the dotted lines represents the uncertainty range that is obtained by using the results in logl0 J3° and Ae and correcting back to / ^ 0. Table B-3: The preparation of the experimental equilibrium constants for the extrapolation to / = 0 with the specific ion interaction method at 25°C and 1 bar, according to Reaction (B.12). The linear regression of this set of data is shown in Figure B-l.
(a) (b)
Io g]0 /?, m
log,,, /?,,„+ 4 D
- (0.17 ±0.10)
-0.174
(0.264 ±0.100)
0.2
-(0.25 ±0.10)
-0.254
(0.292 ±0.100)
0.26
-(0.35 ±0.04)
-0.357
(0.230 ±0.040)
0.31
-(0.39 ±0.04)
-0.397
(0.220 ±0.040)
0.41
-(0.41 ±0.04)
-0.420
(0.246 + 0.040)
0.51
-(0.32 + 0.10)
-0.331
(0.371 ±0.100)
0.57
- (0.42 ± 0.04)
-0.432
(0.288 ±0.040)
0.67
-(0.34 ±0.04)
-0.354
(0.395 ±0.040)
0.89
- (0.42 ± 0.04)
-0.438
(0.357 ±0.040)
1.05
-(0.31 ±0.10)
-0.331
(0.491 ±0.100)
1.05
-(0.277 ±0.260)
-0.298
(0.525 ±0.260)
1.61
-(0.24 ±0.10)
- 0.272
(0.618 ±0.100)
2.21
-(0.15 ±0.10)
-0.193
(0.744 ±0.100)
2.21
-(0.12 ±0.10)
-0.163
(0.774 ±0.100)
2.82
-(0.06 ±0.10)
-0.021
(0.860 ±0.100)
3.5
(0.04 ±0.10)
-0.021
(0.974 ±0.100)
L
logl0 Pt (exp)
0.1
(a)
Equilibrium constants for Reaction (B.12) with assigned uncertainties, corrected to 25°C where necessary. Equilibrium constants corrected from molarity to molality units, as described in Section 11.2
B Ionic strength corrections
830
Figure B-l: Plot of logl0 /?, + 4D versus lm for Reaction (B.12), at 25°C and 1 bar. The straight line shows the result of the weighted linear regression, and the dotted lines represent the uncertainty range obtained by propagating the resulting uncertainties at / — 0 back to / — 4 m.
1.4 1.2 1.0
log101βο = (0.17 ±0.02) As = - (0.25 ± 0.02) kg·mol–1 0.2
0.0
0.0
0.5
1.0
1.5
2.0
2.5
3.0
3.5
4.0
/ (mol · kg–1)
Example B.3: When using the specific ion interaction theory, the relationship between the redox potential of the couple, PuO^/Pu4* , in a medium of ionic strength, /,„, and the corresponding quantity at / = 0 should be calculated in the following way. The reaction in the galvanic cell: Pt
H2(g,
PuOf,Pu 4 + , H + , H2O(1)
Pt
is:
PuOf+H2(g,r) + 4H+-2H+(r) ^
Pu 4 + +2H 2 O(1)
(B.14)
where "r" is used to indicate that H2(g) and H+ are at the chemical conditions in the reference electrode compartment, i.e., standard conditions when the reference electrode is the SHE. However, activities of H+, H2O(1) and the ratio of activity of PuOf to Pu 4+ depend on the conditions of the experimental measurements (i.e., non-standard conditions, usually high ionic strength to improve the accuracy of the measurement).
B.I The specific ion interaction equations
831
For Reaction (B. 14): Iog10 K = logl0 Since by definition of the SHE, / H
(r)
=1 and Yu*(r = 1,
logl0 K° = logl0 A: + logl0/pi|41 -log l 0 yPMV -41og l0 yH. + 2 \ogl0aHiO , and
log10 r P u . = -16£) + S ( P U 4 + , C 1 O - ) mao_ iog l(1 r Puor = -4 J D +
f
log,,,?',,- = - ^ + s( Hence, logl()A:0 = log, 0 A:-8D + (8(Pu4+, CIO") -e(PuOf, CIO") (B.15) - 4 s ( H \ CIO") ) W c | o ; +21ogl0«H2O The relationship between the equilibrium constant and the redox potential is: nF — Eo> (B.16) RT nF \a.K° = E°. (B.17) RT E°' is the redox potential in a medium of ionic strength /, E° is the corresponding standard potential at / = 0, and n is the number of transferred electrons in the reaction considered. Combining Eqs. (B.15), (B.16) and (B.17) and rearranging them leads to Eq.(B.18):
For n — 2 in the present example and T— 298.15 K, Eq.(B.18) becomes: £ o '[mV]-236.6Z) + 59.161og10aH2O =£°[mV]-29.58Ae where = s(Pu4+, ClO^) -e(PuOf, ClO^)
-4E(H+,
The value of aH0 can be taken from experimental data or calculated from equations (B.10) and (B.I 1). In general, formal potentials are reported with reference to the standard hydrogen electrode, cf. Section II. 1.6.5, as exemplified in Tables V.2 and V.3 of the uranium NEA review [92GRE/FUG]. In that case, the H+ appearing in the reduction reaction is
832
B Ionic strength corrections
already at standard conditions. For example, experimental data are available on the formal potentials for reactions: PuOf+ 4H + + 2e~ ^
Pu 4+ + 2H2O(1)
(B.19)
and PuOf + e" ^
PuO 2 .
(B.20)
While Reaction (B.19) corresponds to (B.14), Reaction (B.20) is equivalent to: PuOf + yH 2 (g) ^
PuO;+ H+
(B.21)
where the designator "(r)" has been omitted, since in these equations only the H+ in the reference compartment is relevant. The cations in Reaction (B.14) represent aqueous species in the ionic media used during the experiments. In Reaction (B.21) H+ represents the cation in the standard hydrogen electrode, and therefore it is already in standard conditions, and its activity coefficient must not be included in any extrapolation to / = 0 of experimental values for Reaction (B.20). Reactions (B.20) and (B.21) are equivalent, as are Reactions (B.14) and (B.19), as can be seen if any of these equations are combined with Reaction (11.27). Hence Eq. (B.I8) can be obtained more simply by using Eq. (11.34) for Reaction (B.19).
B.1.4 On the magnitude of ion interaction coefficients Ciavatta [80CIA] made a compilation of ion interaction coefficients for a large number of electrolytes. Similar data for complexations of various kinds were reported by Spahiu [83SPA] and Ferri et al. [83FER/GRE]. These and some other data for 25°C and 1 bar have been collected and are listed in Section B.3. It is obvious from the data in these tables that the charge of an ion is of great importance for determining the magnitude of the ion interaction coefficient. Ions of the same charge type have similar ion interaction coefficients with a given counter-ion. Based on the tabulated data, Grenthe et al. [92GRE/FUG] proposed that it is possible to estimate, with an error of at most + 0.1 kg • mol"1 in e, ion interaction coefficients for cases where there are insufficient experimental data for an extrapolation to / — 0. The error that is made by this approximation is estimated to + 0.1 kg • mol"1 in As in most cases, based on comparison with As values of various reactions of the same charge type. Ciavatta [90CIA] has proposed an alternative method to estimate values of s for a first or second complex, ML or ML2, in an ionic media NX, according to the following relationships: s(ML,N or X)« (s(M,X) + s(L,N)) /2
(B.22)
s(ML 2 ,NorX) « (s(M,X) + 2s(L,N))/3
(B.23)
B.3 Tables of ion interaction coefficients
833
Ciavatta obtained [90CIA] an average deviation of ± 0.05 kg • moP1 between 8 estimates according to Eqs. (B.22) and (B.23), and the 8 values at 25°C obtained from ionic strength dependency of equilibrium constants.
B.2 Ion interaction coefficients versus equilibrium constants for ion pairs It can be shown that the virial type of activity coefficient equations and the ionic pairing model are equivalent provided that the ionic pairing is weak. In these cases the distinction between complex formation and activity coefficient variations is difficult or even arbitrary unless independent experimental evidence for complex formation is available, e.g., from spectroscopic data, as is the case for the weak uranium(VI) chloride complexes. It should be noted that the ion interaction coefficients evaluated and tabulated by Ciavatta [80CIA] were obtained from experimental mean activity coefficient data without taking into account complex formation. However, it is known that many of the metal ions listed by Ciavatta form weak complexes with chloride and nitrate ion. This fact is reflected by ion interaction coefficients that are smaller than those for the noncomplexing perchlorate ion, cf. Table B-4. This review takes chloride and nitrate complex formation into account when these ions are part of the ionic medium and uses the value of the ion interaction coefficient, S(M" + ,C1C>4), as a substitute for s(M" + ,Cr) and s(M" + ,NO3). In this way, the medium dependence of the activity coefficients is described with a combination of a specific ion interaction model and an ion pairing model. It is evident that the use of NEA recommended data with ionic strength correction models that differ from those used in the evaluation procedure can lead to inconsistencies in the results of the speciation calculations. It should be mentioned that complex formation may also occur between negatively charged complexes and the cation of the ionic medium. An example is the stabilisation of the complex ion, UO2(CO3):f , at high ionic strength, see for example Section V.7.1.2.1.d (p. 322) in the uranium review [92GRE/FUG].
B.3 Tables of ion interaction coefficients Table B-4, Table B-5, Table B-6 and Table B-7 contain the selected specific ion interaction coefficients used in this review, according to the specific ion interaction theory described. Table B-4 contains cation interaction coefficients with CT, CIO4 andNCK , Table B-5 anion interaction coefficients with Li+, Na+ (or NH^) and K+, and Table B-7 neutral species - electroneutral combination of ions. The coefficients have the units of kg-mor1 and are valid for 298.15 K and 1 bar. The species are ordered by charge and appear, within each charge class, in standard order of arrangement, cf. Section II. 1.8. In some cases, the ionic interaction can be better described by assuming ion interaction coefficients as functions of the ionic strength rather than as constants. Ciavatta [80CIA] proposed the use of Eq. (B.24) for cases where the uncertainties in Table B-4 and Table B-5 are ± 0.03 kg-moP1 or greater.
834
B Ionic strength corrections
8 = s, + e2 log10 /,„
(B.24)
For these cases, and when the uncertainty can be improved with respect to the use of a constant value of s, the values s, and s2 given in Table B-6 should be used. It should be noted that ion interaction coefficients tabulated in Table B-4, Table B-5 and Table B-6 may also involve ion pairing effects, as described in Section B.3. In direct comparisons of ion interaction coefficients, or when estimates are made by analogy, this aspect must be taken into account.
B.3 Tables of ion interaction coefficients
835
Table B-4: Ion interaction coefficients s(y,£) (kg-mol ') for cations j with k = Cl , ClO^ and NO,, taken from Ciavatta [80CIA], [88CIA] unless indicated otherwise. The uncertainties represent the 95% confidence level. The ion interaction coefficients marked with t can be described more accurately with an ionic strength dependent function, listed in Table B-6. The coefficients s(M"+, ( X ) and s(M"+, NO") reported by Ciavatta [80CIA] were evaluated without taking chloride and nitrate eomplexation into account, as discussed in Section B.2. j
k^
cio;
i H+
(0.12 + 0.01)
NO;
(0.14 ±0.02)
NHJ
-(0.01 +0.01)
H2gly+
- (0.06 + 0.02)
H5edta+
-(0.23 + 0.15)
- (0.08 ± 0.04)
-(0.23 ±0.15)
Tl+
CdCI
-(0.23 + 0.15)
0.2(a)
+
(0.25 ±0.02)
Cdl+
(0.27 + 0.02)
CdSCN+
(0.31 ±0.02)
HgCI+
(0.19 + 0.02)
Cu +
(0.11 ±0.01)
+
(0.00 + 0.01)
NiOH
+
-(0.01 +0.07)
IK)
(0.14 + 0.07)
(0.34 ± 0.08)|M)
Nicr
(0.47 ± 0.06)(N) (0.44 ± 0.14)<0)
NiNO^ Ni(H 2 cit)
+
(0.12 + 0.5)
NiBr+ NiHS
(0.59 ± 0.10)(p)
+
- (0.85 + 0.39)(Q)
NiSCN+
(0.31 ±0.04)
YCO3
(0.17±0.04) (b)
Am(OH)2
- (0.27 + 0.20)(q)
+
(0.17 ± 0.04)(c) (0.17 + 0.04)(c) (0.22 + 0.08)(d)
AmSOj AmCOj
(0.01 +0.05)
(r)
(0.17±0.04) (c)
Am(ox)+
(0.08 ±0.10)
PuOj
(0.24 ± 0.05)(e)
PuO 2 F + PuO 2 Cl
-(0.12±0.05) +
(L)
NiF +
AmF 2
- (0.06 ± 0.03/'
-(0.21 ±0.06) +
ZnHCOj
Ag
(0.07 ±0.01) T
(0.29±0.11) (f) +
(0.50 ± 0.09)(8)
(Continued on next page)
836
B Ionic strength corrections
Table B-4 (continued) j *->
cio;
cr
I
(0.09 ±0.05)
NpO* NpO 2 OH +
NO;
(0.25 ± 0.05)
(NpO 2 ) 3 (OH);
(0.45 ± 0.20)
NpO 2 F +
(0.29 ± 0.12)*-'1 +
(0.50 +0.14) (k)
NpO2 IO3
(0.33 + 0.04)°'
Np(SCN)3+
(0.17±0.04) <m)
U0 2
(0.26±0.03)
NpO 2 Cl
UO 2 OH
+
(UO 2 ) 3 (OH); UF3
+
- (0.06 ± 0.40) (0.1±0.1)
UO2F+
(o)
(0.04 ± 0.07)
(0.45 + 0.15)(n) (0.1±0.1)
(0.28 ± 0.04) (0.33 + 0.04)(n)
UO2CIO3
(0.33 + 0.04)
UO2Br
(0.24 ± 0.04)
UO2BrO3 UO 2 1O 3
+
(0.33 ± 0.04)
UO2N3
(0.33 ± 0.04)
UO2NO3 UO2SCN
+
H6edta
(0.22 ± 0.04)
Pb2+ A1OH2
0.09 (s)
Al2CO3(OH)2
0.26v '
Zn
2+
ZnCO 2+
(0.41 ± 0.22)
(o)
UO2CI+ +
(0.51 ± 1.4)
-(0.20 ±0.16)
-(0.20 ±0.16)
(0.15 + 0.02)
-(0.20 + 0.12)1'
0.31 (s)
(0.33 ±0.03)
(0.16 ±0.02)
(O.35±O.O5)(a)
Cd 2+ Hg
(0.09 ± 0.02)
2+
Hgf Cu 2+ Ni
(0.08 + 0.01)
(0.34 ±0.03)
-(0.1 ±0.1) +
(0.09 + 0.02)
-(0.2 ± 0 . 1 /
(0.32 + 0.02)
2+
(0.17 ±0.02)
(0.370 ± 0.032)
2+
(0.16 ±0.02)
(0.34 ±0.03)
Co
(0.11 +0.01) (S)
(0.182 ± 0.010)
(Continued on next page)
B.3 Tables of ion interaction coefficients
837
Table B-4 (continued) J
cr
K ^
I
cio;
FeOH2+
0.38
FeSCN2+
0.45
Mn
2+
(0.13 + 0.01)
YHCO
2+
AmOH
2+
(0.39 ± 0.04)
(q)
(0.39 ± 0.04)(c) (0.39 ± 0.04)
AmF2+ AmCl
NO;
(0.39 ± 0.04)
2+
(0.39 ± 0.04)
AmN2+ AmNO2
(0.39 ± 0.04)
+
(0.39 ± 0.04)
AmNO2+ AmH2PO
(0.39 ± 0.04)
2+
AmSCN2+
(0.39 ± 0.04)
2+
(0.46 ± 0.05)(t)
PuF 2 2+
(0.36 ±0.17)Ci)
PuO
PuCl
(0.39 ± 0.16)
2+
(0.39 ± 0.04)
Pul2+ PuSCN
(0.39±0.04)
2+
(0.46 ± 0.05)<w)
NpO2+ (NpO2)2(OH)2
+
(0.57 ±0.10) (0.38 ±0.17) (j)
NpF2+ NpSO
2+
(0.48 ±0.11) (0.38 ± 0.20)(i)
Np(SCN)2+ 2+
uo
(UO 2 ) 2 (OH)
(0.21 ±0.02) 2+
(UO 2 ) 3 (OH) 2+ UF
(0.69 + 0.07)
(n)
(0.50 + 0.18)(n)
2+
uso
(x)
(0.24 + 0.03)(v)
(0.46 ±0.03) (0.57 + 0.07)
(0.89±0.23)
(0.49 + 0.09)(n) (0.72±1.0) (n)
(o)
2
U(NO 3 ) 2 Mg 2+
(0.19 + 0.02)
(0.33 ±0.03)
(0.17 + 0.01)
Ca 2+
(0.14 ±0.01)
(0.27 ±0.03)
(0.02 + 0.01)
2+
(0.07 + 0.01)
(0.15 ±0.02)
-(0.28 ±0.03)
Ba
(0.49 + 0.14)"'
(Continued on next page)
838
B Ionic strength corrections
Table B-4 (continued) j
k^
cr
I Al 3 +
cio;
(0.33 +0.02)
Ni2OH
3+
(0.59 + 0.15) (U)
Fe
3+
Cr
3+
(0.30 ±0.03)
La 3 +
(0.22 + 0.02)
(0.56 + 0.03)
, 3 +
La Am
. 3+
3
+
(0.27 ± 0.02) (0.47 + 0.03)
(0.23 ± 0.02)
(0.49 + 0.03)(c) (0.49 + 0.05)(z)
PuOH
3+
(0.50 + 0.05) (0 (0.56 +0.11) ( 0
PuF 3 +
(0.85 + 0.09)1*'
3+
PuBr 3 +
(0.58 +0.16) ( A )
3+
(0.49 + 0.05)(z)
NpOH3+
(0.50 + 0.05) (0
Np
NpF
3+
(0.58 + 0.07) (C) (0.81 +0.09) ( D )
NpCI 3 + Npl
(0.77 + 0.26) (t)
3+
NpSCN3+
(0.76+ 0.12)°'
u3+
(0.49 + 0.05) (y)
UOH 3 +
(0.48 + 0.08)(y)
UF
3+
(0.50 + 0.10)(k)
3+
(0.52 + 0.10)(o)
UBr Ul
(0.48 + 0.08)(o)
3+
uci
(0.42 ± 0.08)
0.47 -> 0.52 (b)
—> Lu
Pu 3 +
PuCI
NO;
3+
UNO
(0.55 +0.10) (o) 3+
Be 2 OH
(0.62 + 0.08)(y) 3+
Be 3 (OH)
(0.50 + 0.05) (F)
3+
A1 3 CO 3 (OH)* Ni 4 (OH)4
+
4
Fe 2 (OH)* "
(0.30±0.05) +
0.41
(0.51 +0.05) (y)
(0.29 ± 0.05)
(S)
(1.08 + 0.08) (V) 0.82(b)
(Continued on next page)
B.3 Tables of ion interaction coefficients
839
Table B-4: (continued)
I
cr
Y2 C 0 4 + Pu
(0.82 + 0.07)
Np 4+ 4+
(0.84 + 0.06)<0
u
Al3 (OH)4+
NO;
(0.80 + 0.04)
4+
Th 4+
cio;
(0.76 + 0.06)<J)(o) (0.25 ±0.03) 0.66<s)
(a)
Taken from Ferri et al. [85FER/GRE].
(b)
Taken from Spahiu [83SPA],
(0.11 +0.02) 1.30(s)
(c)
Estimated in [95SIL/BID].
(d)
Evaluated in [95SIL/B1D].
(e)
Derived from Ae = e(PuO:;\CIO;) - e(PuO:,ClO;) = (0.22 ±0.03) kg-moP1 [95CAP/VIT], In [92GRE/FUG], e(PuO:,CIO~) = (0.17 + 0.05) kg-mol"1 was tabulated based on [89ROB], [89R1G/ROB] and [90RIG]. Capdevila and Vitorge's data [92CAP], [94CAP/VIT] and [95CAP/V1T] were unavailable at that time.
(f)
Estimated in [2001LEM/FUG] by analogy with As of the corresponding Np(IV) reaction.
(g)
From Ae evaluated by Giffaut [94GIF].
(h)
As in [92GRE/FUG], derived from Ae = e(NpO;;\ClO;) - etNpO+.CIO;) = (0.21 ±0.03) kg-moP1 [87RIG/VIT], [89RIG/ROB] and [90RIG],
(i)
Estimated in [2001LEM/FUG].
(j)
Estimated in [2001LEM/FUG] by analogy with Ae of the corresponding U(IV) reaction,
(k)
Estimated in [2001LEM/FUG] by analogy with Ae of the corresponding P(V1) reaction.
(I)
Estimated in [2001LEM/FUG] by assuming e(NpO 2 Io;,ClO;,) » s(UO.,IOt,CIO~) .
(m) Estimated in [2001LEM/FUG] by assuming e(Np(SCN)3+,C10^) * e(AmF,\ClO^) . (n)
Evaluated in the uranium review [92GRE/FUG], using E ( U O ; + , X ) = (0.46 ± 0.03) kg-mol"1, where X = Cr, CIO; and NO; .
(o)
Estimated in the uranium review [92GRE/FUG].
(p)
Taken from Riglet et al. [89RIG/ROB], where the following assumptions were made: e(Np 3+ ,CIO^)« e(Pu 3+ ,CIO;)= 0.49 kg-mol"1 as for other (M3t, CIO;) interactions, and 8(NpOf,ClO^)» e(PuO?+,CIO4)« e(UO;+,ClO4) = 0.46 kg-mol"1.
(q)
Evaluated in [2003GUI/FAN] (cf. Section 12.3.1.1) from Ae (in NaCl solution) for the reactions An3~+nU2O(\) ^ An(OH)|'~")+ «H + .
(r)
Evaluated in [2003GUI/FAN] (cf. Section 12.6.1.1.1) from Ae (in NaCl solution) for the reactions An3+ + nCO," ^ An(CO3 )|i3"'" (based on e(Am 3+ ,Cr) = (0.23 ± 0.02) kg-mol"1 and e(Na + ,COf) = - (0.08 ± 0.03) kg-mol"1.
(s)
Taken from Hedlund [88HED].
840
B Ionic strength corrections
(t)
By analogy with s(UO2+,CIO4) as derived from isopiestic measurements in [92GRE/FUG]. The uncertainty is increased because the value is estimated by analogy.
(u)
Estimated in [2001LEM/FUG] by analogy with Ae of the corresponding Am(III) reaction.
(v)
Estimated in [2001LEM/FUG] by assuming E(PUI 2 ~,C1O;,) « E(AmSCN2+,CIO;,) and E ( P , N H * ) «
(w) By analogy with s(UO;+,CIO4) as derived from isopiestic measurements noted in [92GRE/FUG]. The uncertainty is increased because the value is estimated by analogy. (x)
These coefficients were not used in the NEA TDB uranium review [92GRE/FUG] because they were evaluated by Ciavatta [80CIA] without taking chloride and nitrate complexation into account. Instead, Grenthe et al. used E ( U O 2 + , X ) = (0.46 + 0.03) kg-mor1, for X = CI", CIO" and NO".
(y)
Evaluated in the uranium review [92GRE/FUG] using e(U4+,X) = (0.76 ± 0.06) kg-mol"1.
(z)
Estimated by analogy with e(Ho v ,ClO;,) [83SPA] as in previous books in this series [92GRE/FUG], [95SIL/BID]. The uncertainty is increased because the value is estimated by analogy.
(#)
Derived from the As evaluated in [2001LEM/FUG].
(A) Estimated in [2001LEM/FUG] by analogy with Ae of the corresponding U(IV) reaction, and by assuming e(Br~,H )«E(Br~,Na') . (B) Estimated in [2001LEM/FUG] by assuming E(PUSCN 2 + ,CIO4) « s(AmSCN 2+ ,CIO4). (C) Evaluated in [2001 LEM/FUG]. (D) Derived from the AE selected in [2001 LEM/FUG]. (E)
Estimated in [2001 LEM/FUG] by analogy with AE of the corresponding Np(IV) chloride reaction, and by assuming s ( r , H + ) » s ( I ~ , N a + ) .
(F)
Taken from Bruno [86BRU], where the following assumptions were made: s(Be2+,ClO4) = 0.30 kg-mol"1 as for other E(M 2 + ,C1O~); s(Be2+,CI~) = 0.17 kg-mol"1 as for other E(M 2 + ,CI") and s(Be 2+ ,NO;;)= 0.17kg-mor' as for others(M 2+ ,NO,).
(G) The ion interaction coefficient £(An 3+ ,d~) for An = Am and Cm is assumed to equal to £(NdJ+,Cl~) which is calculated from trace activity coefficients of Nd" ion in 0- 4 m NaCI. These trace activity coefficients are based on the ion interaction Pitzer parameters evaluated in [97K.ON/FAN] from osmotic coefficients in aqueous NdCI? - NaCI and NdCI? - C a d i . (H) Derived from AE = stPu^ClCQ-stPu^.CIO") = (0.33 + 0.035) kg-mol"1 [95CAP/VIT]. Uncertainty estimated in [2001 LEM/FUG] (see Appendix A). In the first book of this series [92GRE/FUG], S(PU 3+ ,C1C>4)= (1.03 ±0.05) kg-mor1 was tabulated based on references [89ROB], [89RIG/ROB], [90RIG]. Capdevila and Vitorge's data [92CAP], [94CAP/V1T] and [95CAP/VIT] were unavailable at that time. (1)
Derived from Ae = s(Np 4+ ,CIO^)- s(Np3+,CIO;) = (0.35 + 0.03) kg-mol"1 [89ROB], [89RIG/ROB], [90RIG].
(J)
Using the measured value of Ae = e(U4~,CIO4")- S(U 3 + ,C1O;) = (0.35 ± 0.06) kg-mor1 p.89 [90R1G], where the uncertainty is recalculated in [2001 LEM/FUG] from the data given in this thesis, and S(U 3 + ,C1O;) = (0.49 + 0.05) kg-moP1 (see footnote (y)), a value for e(U4+,CIO^) can be calculated in the same way as is done for s(Np4+,ClO;) and E(PU 4+ ,CIO4) . This value, E(U 4+ ,CIC>4) = (0.84 + 0.06) kg-moL1 is consistent with that tabulated s(U4*,CIO4) = (0.76 + 0.06) kg-moT1, since the uncertainties overlap. The authors of [2001 LEM/FUG] do not believe that a change in the previously selected value for E(U 4 + ,C1O4) is justified at present.
(K) Evaluated in Section V.3.1.1 of [2005GAM/BUG] from As in chloride media for the reaction Ni2^ + H2O
B.3 Tables of ion interaction coefficients
(L)
841
Evaluated in Section V.3.1.1 of [2005GAM/BUG] from AE in perehlorate media for the reaction Ni +
(M) Derived from As = E(NiF~,CIO;)-e(Ni 2+ ,CIO;)-s(Na + ,F) = - (0.049 + 0.060) kg-mol"1 (see Section V.4.2.3 of [2005GAM/BUG]). (N) See details in Section V.4.2.4 of [2005GAM/BUG] (O) See details in Section V.6.1.2 of [2005GAM/BUG], specially sub-section V.6.1.2.1 for an alternative treatment of this system. (P)
See details in Section V.4.2.5 of [2005GAM/BUG], specially sub-section V.4.2.5.1 for an alternative treatment of this system.
(Q) See details in Section V.5.1.1.2 of [2005GAM/BUG]. (R) Derived from As = s(NiSCN~,Na + )- e(SCN",Na + )-£(Ni 2 ',C10;;) = - (0.109 + 0.025) kg-moP1 (see [2005GAM/BUG], Section V.7.1.3.1). (S)
Derived from the ionic strength dependence of the osmotic and mean activity coefficient of Ni(ClC>4)2 solution (see [2005GAM/BUG], Section V.4.3).
(T)
Derived from the ionic strength dependence of the osmotic and mean activity coefficient of Ni(N(>;)2 solution (see [2005GAM/BUG], Section V.6.1.2.1).
(U) By assuming 8(Ni,OH3+,ClO^) » e(Be2OH3+,ClO^), see Section V.3.1.1 ([2005GAM/BUG]). (V) Derived from As = 4-E(H + ,C1G-4)- s(Ni 4 OH4 + ,ClO;)-4-s(Ni 2+ ,ClO4) = (0.16 + 0.05) kg-mol"1 (see [2005GAM/BUG], Section V.3.1.1.1).
B Ionic strength corrections
842
Table B-5: Ion interaction coefficients, s(j,k) kg • mol ', for anions j with k = Li+, Na+ and K+, taken from Ciavatta [80CIA], [88CIA] unless indicated otherwise. The uncertainties represent the 95% confidence level. The ion interaction coefficients marked with t can be described more accurately with an ionic strength dependent function, listed in Table B-6. j
k^
Li
Na1
K1
i OH"
- (0.02 ± 0.03)t
(0.04 ±0.01)
(0.09 + 0.01) (0.03 + 0.02)
(0.10 + 0.01)
(0.02 + 0.02)
F" HF2-
Cl C1O 4
(0.15 ±0.01)
Br"
(0.13 ±0.02)
(0.01 ±0.01) (0.05 ±0.01)
(0.01 ±0.02)
- (0.06 ± 0.02)
B1O3 ,-(P)
(0.00 + 0.01)
-(0.01 +0.02)
CIO3
(0.16 + 0.01)
(0.08 ±0.02)
IO3
- (0.06 + 0.02)
HSO4
-(0.01 +0.02)
(0.02 + 0.01)
(0.0 ±0.1)
N" NO 2
(0.06 + 0.04)+
(0.00 + 0.02)
- (0.04 + 0.02)
NO3
(0.08 + 0.01)
- (0.04 + 0.03)+
-(0.11 +0.04)+
- (0.08 + 0.04)+
-(0.14 + 0.04)+
H 2 PO 4
(0.00 + 0.02)
HCO3
- (0.06 + 0.05) (0
Hox~
-(0.28 + 0.09)
-(0.07 + 0.01)
-(0.01 +0.08)
H 2 cit"
-(0.11 ±0.03)
-(0.05 ±0.01)
-(0.04 + 0.01)
(xl
CN"
(0.07 ± 0.03)
SCN"
(0.05 ±0.01)
HCOO~
(0.03 ±0.01)
CH3COO"
(0.05 ±0.01)
-(0.01 +0.01)
(0.08 ±0.01)
(0.09 + 0.01)
H3edta~
-(0.33 ±0.14)
-(0.14 + 0.17)
SiO(OH)3
- (0.08 ± 0.03)(a)
Si 2 O 2 (OH)j
- (0.08 ± 0.04)(b)
B(OH)4
- (0.07 ± 0.05)+
Ni(SCN)3
(0.66 +0.13) (t>
Ni(cit)"
(0.22 + 0.5)
Am(SO4 ) 2
-(0.05 + 0.05)
Am(CO3 ) 2
-(0.14 + 0.06)
Am(ox)2
-(0.21 +0.08)
Am(edta)
(0.01 +0.16)
PUOJCOJ
-(0.18 + 0.18)<0) (0.01 +0.16) (D)
Pu(edta)" NpO 2 (OH) 2
(0.01 +O.I6) (E)
-(0.01 ±0.07)
(Continued on next page)
B.3 Tables of ion interaction coefficients
843
Table B-5 (continued) j k->
Li+
Na+
K+
I NpOjCOj
- (0.18 ± 0.15)(f)
NpO 2 (ox)"
-(0.4 + 0.1)
NpO 2 (H 2 edta)~
- (0.18 + 0.16) (0.00 ± 0.05)(k)
(NpO 2 ) 2 CO 3 (OH)3 UO2(OH)3
- (0.09 ± 0.05)(b)
UO2F3"
-(0.14±0.05)* w )
UO 2 (N 3 ) 3 "
(0.0±0.1) (b)
(UO 2 ) 2 CO 3 (OH) 3 "
(0.00 ± 0.05)*b)
UO2cit~
-(0.11 ±0.09)
Mg(cit)"
(0.03 ±0.03)
UO2 (Hedta)"
-(0.18 + 0.16)
Mg(Hedta)~ SO 2 "
- (0.08 ± 0.05)t
(0.11 ±0.20)
SO4"
- (0.03 ± 0.04)t
-(0.12±0.06)t
-(0.06 ±0.02)
- (0.08 ± 0.05)t
S2O3" HPO 2 "
-(0.15 + 0.06)t
2
-(0.10 + 0.06)f d)
CO ."
- (0.08 ± 0.03)*
(0.02 + 0.01)
ox
-(0.51 ±0.09)
-(0.08 ±0.01)
(0.07 ±0.08)
Hcit 2 "
-(0.17 ±0.04)
- (0.04 ± 0.02)
-(0.01 ±0.02)
H 2 edta 2 "
-(0.37 ±0.14)
— (0.17 ± 0 . 1 8 )
SiO 2 (OH) 2 "
-(0.10±0.07)* a )
Si 2 O 3 (OH) 2 "
-(0.15±0.06)* b )
2
Ni(ox) "
- (0.26 ± 0.03) (0.185 ± 0.081)
Ni(CN)^
- (0.06 ± 0.04)t
4
NpO 2 (HPO 4 )2"
-(0.1 ±0.1)
NpO 2 (CO 3 ) 2
-(0.02 +0.14)*k)
NpO 2 cit
- (0.06 ± 0.03)
NpO 2 (Hedta) 2 "
(0.07 + 0.16)
UO2F42"
- (0.30 ± 0.06)*w)
UO 2 (SO 4 ) 2 "
-(0.12±0.06)* b )
2—
-(0.1±0.1)* b )
UO 2 (ox) 2 "
-(0.18 + 0.07)
UO 2 edta 2 "
-(0.22 + 0.18)
UO 2 (CO 3 ) 2 "
- (0.02 ± 0.09)*d)
(\ \c\
- (0.08 ± 0.04)t
\ (c\\-\\ /en 2
1~
-(0.14 ±0.22)
Mg(ox) "
-(0.15 ±0.03)
2
-(0.01 ±0.15)
Mg(edta) ~
-(0.15 ± 0.10) (y)
(Continued on next page)
844
B Ionic strength corrections
Table B-5 (continued)
Ca(ox)2 3
cit "
(0.44 + 0.15)f
Hedta 3"
-(0.15 + 0.10)" -(0.076±0.030)t
-(0.15±0.10) v ' (0.02 + 0.02)
-(0.10 + 0.14)
(0.31 +0.18)
- (0.25 + 0.03)t
-(0.09 + 0.02)
- (0.25 + 0.03)(b) - (0.25 + 0.03)(b) 3
- (0.25 + 0.03)(b)
Si 4 O 7 (OH) "
(0.25 +0.14) (v)
Ni(CN)j"
- (0.23 + 0.07)(r) -(0.23+0.10) ( C )
Am(ox)3
-(0.15 + 0.07)
-(0.33+0.17)
NpO^ox) 3 ,"
-(0.3+0.2)
NpO2edta3~
(0
(0.20 + 0.16)
edta 4 "
(0.32 + 0.14)
(1.07 + 0.19)
- (0.26 ± 0.05)
-(0.15 ±0.05)
Fe(CN)*"
-(0.17 + 0.03) -(0.40±0.19) < e )
NpO 2 (CO 3 ) 2 OH
4
-(0.40±0.19)
-(0.62 + 0.42)
<m)
-(0.09±0.10) < b ) ( d ) UO 2 (CO 3 )*"
-(0.01 +0.11) (d) -(0.01 +0.11) (B)
(UO 2 ) 3 (OH) 4 (SO 4 )3" NpO 2 (CO 3 )j"
UO2(CO3)f
(0.6 + 0.6) - (0.53 ±0.19) ( 0 -(0.62±0.15)
-(0.22±0.03) < s )
- (0.73 + 0.68) 0) (NpO 2 ) 3 (CO 3 )*-
- (0.46 + 0.73)
(e)
-(0.30 + 0.15)(d) (d)
(UO 2 ) 3 (CO 3 )*~
(0.37 +0.1 l)
(UO 2 ) 2 NpO 2 (CO 3 )*"
(0.09 +0.71 ) (l)
(UO 2 ) 5 (OH) 8 (SO 4 )*"
(1.10 + 0.5)
(UO 2 ) 4 (OH) 7 (SO 4 )^
(2.80 + 0.7)
(a)
Evaluated in the NEA TDB uranium review [92GRE/FUG].
(b)
Estimated in the NEA TDB uranium review [92GRE/FUG].
(c)
Estimated in the NEA TDB americium review [95SIL/B1D].
-(0.70 +0.31) (0
B.3 Tables of ion interaction coefficients
845
(d)
These values differ from those reported in the NEA TDB uranium review. See the discussion in [95GRE/PUI], Values for CO32" and HCOj are based on [80CIA].
(e)
Calculated in [2001LEM/FUG] (Section 12.1.2.1.2).
(f)
Calculated in [2001LEM/FUG] (Section 12.1.2.1.3).
(g)
Calculated in [2001LEM/FUG] (Section 12.1.2.2.1).
(h)
E(NpO 2 (CO 3 )3~,NH4)= - (0.78 + 0.25) kg • mol"1 is calculated in [2001 LEM/FUG] (Section
(i)
Calculated in [2001 LEM/FUG] from Pitzer coefficients [98RAI/FEL].
G)
Calculated in [2001 LEM/FUG] (Section 12.1.2.1.4).
(k)
Estimated by analogy in [2001 LEM/FUG] (Section 12.1.2.1.2).
(1)
Estimated by analogy in [2001 LEM/FUG] (Section 12.1.2.2.1).
12.1.2.2.1).
(m) Estimated in [2001 LEM/FUG] by analogy with NpO 2 (CO3 f~ . (n)
Estimated by analogy in [2001LEM/FUG] (Section 12.1.2.1.5).
(o)
Estimated in [2001 LEM/FUG] by analogy with s(NpO2CC>3 , N a + ) .
(p)
8(1",NHj) » e(SCN~,Na + ) = (0.05 + 0.01) kg • mol"1.
(q)
Estimated in [2001 LEM/FUG] (Section 8.1.3).
(r)
Evaluated in [2003GUI/FAN], Section 12.6.1.1.1 from Ae,, (in NaCI solution) for the reactions An3+ + «CO,^ ^ An(CO, )|;"" (based on e(Am3+,Cl") = (0.23 + 0.02) kg • moL1 and + 2 1 s(Na , CO3 ") = - (0.08 ± 0.03) kg • mol" .
(s)
Evaluated in [2003GUI/FAN] in Appendix A, discussion of [98ALM/NOV] from Ae for the reactions KNpO2CO,(s) + 2 CO2" ^ NpO 2 (CO r ,)r + K + (in K2CO3-K.CI solution) and KjNpC^CCbMs) + CO3" ^
NpO2 (CO 3 )r + 3 K+(in K2CO3 solution) (based on e(K + , CO," ) = (0.02 ± 0.01) kg-mol"1).
(t)
Evaluated in theNEA-TDB nickel review [2005GAM/BUG] (see Section V.7.1.3.1).
(u)
Evaluated in the NEA-TDB nickel review [2005GAM/BUG] (see Section V.7.1.2.1.1).
(v)
Evaluated in the NEA-TDB nickel review [2005GAM/BUG] (see Section Section V.7.1.2.1.1).
(w) Evaluated in [2003GUI/FAN], Section 9.4.2.2. I.I. (x)
As reported in [92BAN/BLI],
(y)
Estimated in Section VI.5.1 by assuming e(Mg(ox)2~, K + ) » s(Mg(ox) 2 ~,Na + ).
(z)
Estimated in Section VI.5.2 by assuming e(Ca(ox)2~, Na + ) » s(Mg(ox) 2 ~, Na + ) .
(A) Estimated in Section VI.5.2 by assuming s(Ca(ox) 2 , K + ) « s(Mg(ox) 2 , N a + ) . (B) Estimated in Section VI. 10.2.4.1 by assuming s(UO 2 (ox)r,Na + ) « E(UO 2 (CO 3 )r,Na + ) . (C) Estimated in Section VI. 13.2.1 by assuming e(Am(ox)J ,Na + ) a E(AITI(CO3)5 , N a + ) . (D) Estimated in Section VIII. 12.2.1 by assuming s(Pu(edta)~, K + ) a e(Am(edta)~, N a + ) . (E)
Estimated in Section VIII. 13.2.1 by assuming s(Am(edta) , K + ) » s(Am(edta) , N a + ) .
B Ionic strength corrections
846
Table B-6: Ion interaction coefficients, z{\j,k) and s(2J,k) kg • mol ', for cations 7 with k = Cr, C1O4 and NO3 (first part), and for anionsy with k = Li+, Na+ and K+ (second part), according to the relationship 8 = s, + e2 logI0/m. The data are taken from Ciavatta [80CIA], [88CIA] unless indicated otherwise. The uncertainties represent the 95% confidence level. NO;
cr E2
£1
£2
-(0.088±0.002) (0.095±0.012) -(0.18+0.02)
-(0.075±0.001)
(0.057±0.004)
(0.09+0.02)
AgT Pb
£]
-(0.1432±0.0002) (0.0971 ±0.0009
2+
-(0.329±0.007)
(0.288±0.018)
2+
-(0.145±0.001)
(0.194±0.002)
Hg
-(0.2300±0.0004) (0.194±0.002) Li +
I OH" NOj
£1
-(0.039±0.002) (0.02+0.01)
K+
1 £2
£1
£2
£1
£2
(0.072±0.006) (0.11+0.01)
NO3
-(0.049+0.001) (0.044+0.002)
-(0.131+0.002)
H 2 PO 4
-(0.109+0.001) (0.095+0.003)
-(0.1473+0.0008) (0.121+0.004)
B(OH)4
-(0.092±0.002) (0. 103±0.005)
so?SO4"
(0.082+0.006)
-(0.125±0.008) (0. 106±0.009) -(0.068±0.003)
(0.093±0.007) -(0.184±0.002) (0. 139±0.006)
s2o?-
-(0.125±0.008) (0. 106±0.009)
HPO^
-(0.19+0.01)
(0. 11+0.03)
-(0.152±0.007)
(0.123+0.016)
CrO;;-
-(0.090±0.005) (0.07±0.01)
-(0.123±0.003)
(0.106+0.007)
cit3~ PO^" (a):
-(0.55±0.11)(a)
(0.3±0.2)(a)
-(0.15±0.03)(a) (0. 13±0.03)(a) -(0.29±0.02)
See Section VII.3.6 of this review.
(0. 10+0.01)
B.3 Tables of ion interaction coefficients
847
Table B-7: SIT interaction coefficient e(j,k) kg • mol ' for neutral species,/ with k, electroneutral combination of ions. k^
Na~ + C1OJ
Na + + CI"
K+ + NO3
H2ox(aq)
(0.00 + 0.01)
(0.00 +0.01 ) (b)
(0.00 +0.0 l) ( b )
H3cit(aq)
(0.00±0.01) (b)
(0.00 ± 0.0 l) (b)
(0.00 ± 0.0 l) ( b )
j
I
H4edta(aq)
-(0.29 ±0.14)
-(0.29 ±0.14)
Ni(ox)(aq)
-(0.07 + 0.03)
-(0.07 + 0.03)
Ni(Hcit)(aq)
-(0.07 ±0.05)
Ni(SCN)2(aq)
-(0.29 ±0.14)
(0.38 + 0.06)(a) (0.00 + 0.05)
Am(cit)(aq) (8)
Np(edta)(aq)
-(0.19±0.19)
UO2Ox(aq)
-(0.05 ±0.06)
Uedta(aq)
-(0.19 + 0.19)
-(0.05 ±0.06)
(0.00 + 0.03)
Mg(ox)(aq) Mg(Hcit)(aq)
(0.02 ± 0.05)
(0.02 ±0.05)
Ca(ox)(aq)
(0.0 + 0.1)(d)
(0.0±0.1) (e)
(0.0 + 0.1)(c) (0.0 + 0.1)(fl
(a): See Section V.7.1.3.1 in [2005GAM/BUG]. (b): Basic assumption of this review, see Sections VI.3.5 and VII.3.6 for discussions. (c): Estimated in Section VI.5.2 by assuming e(Mg(ox)(aq), KNO3) » e(Mg(ox)(aq), NaCl). (d): Estimated in Section VI.5.2 by assuming e(Ca(ox)(aq), NaCIO4) « E(Mg(ox)(aq), NaCl). (e): Estimated in Section VI.5.1 by assuming E(Ca(ox)(aq), NaCl) » s(Mg(ox)(aq), NaCl). (f):
Estimated in Section VI.5.2 by assuming e(Ca(ox)(aq), KNO3) « e(Mg(ox)(aq), NaCl).
(g): Estimated in Section VI11.11.2.2 by assuming e(Np(edta)(aq), NaCIO4) » e(Uedta(aq), NaClO4).
This Page is Intentionally Left Blank
Appendix C Assigned uncertainties1 This Appendix describes the origin of the uncertainty estimates that are given in the TDB tables of selected data. The original text in [92GRE/FUG] has been retained in [95SIL/BID], [99RAR/RAN] and [2001LEM/FUG], except for some minor changes. Because of the importance of the uncertainty estimates, the present review offers a more comprehensive description of the procedures used.
C.I The general problem The focus of this section is on the uncertainty estimates of equilibria in solution, where the key problem is analytical, i.e., the determination of the stoichiometric composition and equilibrium constants of complexes that are in rapid equilibrium with one another. We can formulate analyses of the experimental data in the following way: From N measurements, yh of the variable y we would like to determine a set of n equilibrium constants k,., r=l,2,...,n, assuming that we know the functional relationship: y=Ak\,k2,...kr...kn;aua2,....)
(C.I)
where a\, a2, etc. are quantities that can be varied but whose values (a1;-; a2i; etc.) are assumed to be known accurately in each experiment from the data sets (yb aVl, a2i,...), i = 1, 2, ...N. The functional relationship (C.I) is obtained from the chemical model proposed and in general several different models have to be tested before the "best" one is selected. Details of the procedures are given in Rossotti and Rossotti [61ROS/ROS]. When selecting the functional relationship (C.I) and determining the set of equilibrium constants that best describes the experiments one often uses a least-squares method. Within this method, the "best" description is the one that will minimise the residual sum of squares, U:
U= Iw, b,.-/(£,..!„; a,, «2,...)f
(C.2)
where w, is the weight of each experimental measurement yt.
This Appendix essentially contains the text of the TDB-3 Guideline, [99WAN/OST], earlier versions of which have been printed in the previous NEA TDB reviews [92GRE/FUG], [95SIL/BID], [99RAR/RAN] [200ILEM/FUG] and [2003GUI/FAN]. Because of its importance in the selection of data and to guide the users of the values in Chapters VI, VII, VIII and IV the text is reproduced here with minor revisions.
850
C. Assigned uncertainties
The minimum of the function (C.2) is obtained by solving a set of normal equations: — = 0, r = \, dkr A "true" minimum is only obtained if:
n
(C.3)
•
the functional relationship (C.I) is correct, i.e., if the chemical model is correct.
•
all errors are random errors in the variable y, in particular there are no systematic errors.
•
the random errors in y follow a Gaussian (normal) distribution.
•
the weight w,(y,, aXi, alb....) of an experimental determination is an exact measure of its inherent accuracy.
To ascertain that the first condition is fulfilled requires chemical insight, such as information of the coordination geometry, relative affinity between metal ions and various donor atoms, etc. It is particularly important to test if the chemical equilibrium constants of complexes that occur in small amounts are chemically reasonable. Too many experimentalists seem to look upon the least-squares refinement of experimental data more as an exercise in applied mathematics than as a chemical venture. One of the tasks in the review of the literature is to check this point. An erroneous chemical model is one of the more serious type of systematic error. The experimentalist usually selects the variable that he/she finds most appropriate to fulfill the second condition. If the estimated errors in a]h a2i ... are smaller than the error in yh the second condition is reasonably well fulfilled. The choice of the errorcarrying variable is a matter of choice based on experience, but one must be aware that it has implications, especially in the estimated uncertainty. The presence of systematic errors is, potentially, the most important source of uncertainty. There is no possibility to handle systematic errors using statistics; statistical methods may indicate their presence, no more. Systematic errors in the chemical model have been mentioned. In addition there may be systematic errors in the methods used. By comparing experimental data obtained with different experimental methods one can obtain an indication of the presence and magnitude of such errors. The systematic errors of this type are accounted for both in the review of the literature and when taking the average of data obtained with different experimental methods. This type of systematic error does not seem to affect the selected data very much, as judged by the usually very good agreement between the equilibrium data obtained using spectroscopic, potentiometric and solubility methods.
C.2 Uncertainty estimates in the selected thermodynamic data.
851
The electrode calibration, especially the conversion between measured pH and - logi0[H+] is an important source of systematic error. The reviewers have when possible corrected this error, as seen in many instances in Appendix A. The assumption of a normal distribution of the random errors is a choice made in the absence of better alternatives. Finally, a comment on the weights used in least-squares refinements; this is important because it influences the uncertainty estimate of the equilibrium constants. The weights of individual experimental points can be obtained by repeating the experiment several times and then calculating the average and standard deviation of these data. This procedure is rarely used, instead most experimentalists seem to use unit weight when making a least-squares analysis of their data. However, also in this case there is a weighting of the data by the number of experimental determinations in the parameter range where the different complexes are formed. In order to have comparable uncertainty estimates for the different complexes, one should try to have the same number of experimental data points in the concentration ranges where each of these complexes is predominant; a procedure very rarely used. As indicated above, the assignment of uncertainties to equilibrium constants is not a straightforward procedure and it is complicated further when there is lack of primary experimental data. The uncertainty estimates given for the individual equilibrium constants reported by the authors and for some cases re-estimated by this review are given in the tables of this and previous reviews. The procedure used to obtain these estimates is given in the original publications and in the Appendix A discussions. However, this uncertainty is still a subjective estimate and to a large extent based on "expert judgment".
C.2 Uncertainty estimates in the selected thermodynamic data. The uncertainty estimate in the selected thermodynamic data is based on the uncertainty of the individual equilibrium constants or other thermodynamic data, calculated as described in the following sections. A weighted average of the individual \og\oK values is calculated using the estimated uncertainty of the individual experimental values to assign its weight. The uncertainty in this average is then calculated using the formulae given in the following text. This uncertainty depends on the number of experimental data points - for N data point with the same estimated uncertainty, a, the uncertainty in the average is alyjN . The average and the associated uncertainty reported in the tables of selected data are reported with many more digits than justified only in order to allow the users to back-track the calculations. The reported uncertainty is much smaller than the estimated experimental uncertainty and the users of the tables should look at the discussion of the selected constants in order to get a better estimate of the uncertainty in an experimental determination using a specific method.
852
C. Assigned uncertainties
One of the objectives of the NEA Thermochemical Data Base (TDB) project is to provide an idea of the uncertainties associated with the data selected in this review. As a rule, the uncertainties define the range within which the corresponding data can be reproduced with a probability of 95% at any place and by any appropriate method. In many cases, the statistical treatment is limited or impossible due to the availability of only one or few data points. A particular problem has to be solved when significant discrepancies occur between different source data. This appendix outlines the statistical procedures, which were used for fundamentally different problems, and explains the philosophy used in this review when statistics were inapplicable. These rules are followed consistently throughout the series of reviews within the TDB Project. Four fundamentally different cases are considered: 1. One source datum available 2. Two or more independent source data available 3. Several data available at different ionic strengths 4. Data at non-standard conditions: Procedures for data correction and recalculation.
C.3 One source datum The assignment of an uncertainty to a selected value that is based on only one experimental source is a highly subjective procedure. In some cases, the number of data points, on which the selected value is based, allows the use of the "root mean square" [82TAY] deviation of the data points, Xh to describe the standard deviation, sx, associated with the average, X :
—— f(X-X)2 N-i t r '
(C.4)
The standard deviation, sx, is thus calculated from the dispersion of the equally weighted data points, Xh around the average X, and the probability is 95% that an X: is within X ±1.96 sx, see Taylor [82TAY] (pp. 244-245). The standard deviation, sx, is a measure of the precision of the experiment and does not include any systematic errors. Many authors report standard deviations, sx, calculated with Eq. (C.4) (but often not multiplied by 1.96), but these do not represent the quality of the reported values in absolute terms. Therefore, it is thus important not to confuse the standard deviation, sx, with the uncertainty, a. The latter reflects the reliability and reproducibility of an experimental value and also includes all kinds of systematic errors, s7, that may be involved. The uncertainty, a, can be calculated with Eq. (C.5), assuming that the systematic errors are independent.
°X=M+Us U 2,)
(C5)
C.4 Two or more independent source data
853
The estimation of the systematic errors Sj (which, of course, have to relate to X and be expressed in the same units) can only be made by a person who is familiar with the experimental method. The uncertainty, o, has to correspond to the 95% confidence level preferred in this review. It should be noted that for all the corrections and recalculations made (e.g., temperature or ionic strength corrections) the rules of the propagation of errors have to be followed, as outlined in Section C.6.2. More often, the determination of sx is impossible because either only one or two data points are available, or the authors did not report the individual values. The uncertainty a in the resulting value can still be estimated using Eq. (C.5) assuming that sx is much smaller than J (sj), which is usually the case anyway. j
C.4 Two or more independent source data Frequently, two or more experimental data sources are available, reporting experimental determinations of the desired thermodynamic data. In general, the quality of these determinations varies widely, and the data have to be weighted accordingly for the calculation of the mean. Instead of assigning weight factors, the individual source data, Xh are provided with an uncertainty, a,, that also includes all systematic errors and represents the 95% confidence level, as described in Section C.3. The weighted mean X and its uncertainty, a^ , are then calculated according to Eqs. (C.6) and (C.7).
(C.6)
(C.7)
Eqs. (C.6) and (C.7) may only be used if all the Xt belong to the same parent distribution. If there are serious discrepancies among the Xh one proceeds as described below under Section C.4.1. It can be seen from Eq. (C.7) that a^ is directly dependent on the absolute magnitude of the cr, values, and not on the dispersion of the data points around the mean. This is reasonable because there are no discrepancies among the Xh and because the a, values already represent the 95% confidence level. The selected uncertainty, a^ , will therefore also represent the 95% confidence level. In cases where all the uncertainties are equal, a, = a , Eqs. (C.6) and (C.7) reduce to Eqs. (C.8) and (C.9).
X = i-fx,
(C.8)
N ,=i
^
(C.9)
854
C. Assigned uncertainties
Example C.I: Five data sources report values for the thermodynamic quantity, X. The reviewer has assigned uncertainties that represent the 95% confidence level as described in Section C.3.
1
xt 25.3
0.5
2
26.1
0.4
/
3
26.0
0.5
4
24.85
0.25
5
25.0
0.6
According to Eqs.(C6) and (C.7), the following result is obtained: X= (25.3 ±0.2). The calculated uncertainty, a^ = 0.2, appears relatively small, but is statistically correct, as the values are assumed to follow a Gaussian distribution. As a consequence of Eq. (C.7), o^ will always come out smaller than the smallest a,. Assuming a 4 = 0.10 instead of 0.25 would yield X = (25.0 ± 0.1) and c 4 = 0.60 would result in X = (25.6 ± 0.2). In fact, the values (X; ± a,) in this example are at the limit of consistency, i.e., the range (X4 ± a 4 ) does not overlap with the ranges (X2 ± CJ2) and (X3 ± a 3 ). There might be a better way to solve this problem. Three possible choices seem more reasonable: i. The uncertainties, a,, are reassigned because they appear too optimistic after further consideration. Some assessments may have to be reconsidered and the uncertainties reassigned. For example, multiplying all the a, by 2 would yield X = (25.3 + 0.3). ii. If reconsideration of the previous assessments gives no evidence for reassigning the X: and a,- (95% confidence level) values listed above, the statistical conclusion will be that all the Xt do not belong to the same parent distribution and cannot therefore be treated in the same group (cf. item iii below for a non-statistical explanation). The values for z =1, 4 and 5 might be considered as belonging to Group A and the values for / = 2 and 3 to Group B. The weighted average of the values in Group A is XA (i = 1, 4, 5) = (24.95 ± 0.21) and of those in Group B, XB (i — 2, 3) — (26.06 + 0.31), the second digit after the decimal point being carried over to avoid loss of information. The selected value is now determined as described below under "Discrepancies" (Section C.4.1, Case I). XA and XB are averaged (straight average, there is no reason for giving XA a larger weight than XB), and a^ is chosen in such a way that it covers the complete ranges of expectancy ofXA andXB. The selected value is then X = (25.5 + 0.9).
C.4 Two or more independent source data
855
iii. Another explanation could be that unidentified systematic errors are associated with some values. If this seems likely to be the case, there is no reason for splitting the values up into two groups. The correct way of proceeding would be to calculate the unweighted average of all the five points and assign an uncertainty that covers the whole range of expectancy of the five values. The resulting value is then X= (25.45 ± 1.05), which is rounded according to the rules in Section C.6.3to X={25A± 1.1).
C.4.1 Discrepancies Two data are called discrepant if they differ significantly, i.e., their uncertainty ranges do not overlap. In this context, two cases of discrepancies are considered. Case I: Two significantly different source data are available. Case II: Several, mostly consistent source data are available, one of them being significantly different, i.e., an "outlier". Case I. Two discrepant data: This is a particularly difficult case because the number of data points is obviously insufficient to allow the preference of one of the two values. If there is absolutely no way of discarding one of the two values and selecting the other, the only solution is to average the two source data in order to obtain the selected value, because the underlying reason for the discrepancy must be unrecognised systematic errors. There is no point in calculating a weighted average, even if the two source data have been given different uncertainties, because there is obviously too little information to give even only limited preference to one of the values. The uncertainty, djz, assigned to the selected mean, X, has to cover the range of expectation of both source data, X\, X2, as shown in Eq.(C.lO), amax
(CIO)
where / =1, 2, and amax is the larger of the two uncertainties cr,, see Example C.l.ii and Example C.2. Example C.2: The following credible source data are given: Xx = (4.5 ± 0.3) X2 = (5.9 ± 0.5). The uncertainties have been assigned by the reviewer. Both experimental methods are satisfactory and there is no justification to discard one of the data. The selected value is then: X =(5.2± 1.2).
856
C. Assigned uncertainties
Figure C-l: Illustration for Example C.2 X
I
Xx •
1
X2 •
I
1
I I I I I I I I I I I I I I I I I I I I I I I I I 4
4.5
5
5.5
6
6.5
Case II. Outliers: This problem can often be solved by either discarding the outlying data point, or by providing it with a large uncertainty to lower its weight. If, however, the outlying value is considered to be of high quality and there is no reason to discard all the other data, this case is treated in a way similar to Case I. Example C.3 illustrates the procedure.
Example C.3: The following data points are available. The reviewer has assigned the uncertainties and sees no justification for any change. i
X,
1
4.45
0.35
2
5.9
0.5
3
5.7
0.4
4
6.0
0.6
5
5.2
0.4
There are two data sets that, statistically, belong to different parent distributions, A and B. According to Eqs. (C.6) and (C.7), the following average values are found for the two groups: XA(i =1) = (4.45 + 0.35) and XB(i = 2, 3, 4, 5) = (5.62 + 0.23). The selected value will be the straight average ofX^ andXg, analogous to Example C.I: X = (5.0 ± 0.9).
C.5 Several data at different ionic strengths
857
C.5 Several data at different ionic strengths The extrapolation procedure for aqueous equilibria used in this review is the specific ion interaction model outlined in Appendix B. The objective of this review is to provide selected data sets at standard conditions, i.e., among others, at infinite dilution for aqueous species. Equilibrium constants determined at different ionic strengths can, according to the specific ion interaction equations, be extrapolated to / = 0 with a linear regression model, yielding as the intercept the desired equilibrium constant at / = 0, and as the slope the stoichiometric sum of the ion interaction coefficients, As. The ion interaction coefficient of the target species can usually be extracted from As and would be listed in the corresponding table of Appendix B. The available source data may sometimes be sparse or may not cover a sufficient range of ionic strengths to allow a proper linear regression. In this case, the correction to / = 0 should be carried out according to the procedure described in Section C.6.1. If sufficient data are available at different ionic strengths and in the same inert salt medium, a weighted linear regression will be the appropriate way to obtain both the constant at / = 0, X°, and As. The first step is the conversion of the ionic strength from the frequently used molar (mol-dnT3, M) to the molal (mol-kg"1, m) scale, as described in Section 11.2. The second step is the assignment of an uncertainty, a,, to each data point Xj at the molality, mkJ, according to the rules described in Section C.3. A large number of commercial and public domain computer programs and routines exist for weighted linear regressions. The subroutine published by Bevington [69BEV] (pp. 104 - 105) has been used for the calculations in the examples of this appendix. Eqs. (C.I 1) through (C.I 5) present the equations that are used for the calculation of the intercept X° and the slope - As :
(en) 1f
1
m, X
«.
x \
-As = 4 I-Vz-V-SHrl^ A l i=i c r i=i
a,
i=i o.
(C12)
i=i a , I
(C.13)
(C.14)
where
A
^
-
^
-
,-=i o,. ,=i o,.
;=i a
858
C. Assigned uncertainties
In this way, the uncertainties, a,, are not only used for the weighting of the data in Eqs. (C.I 1) and (C.12), but also for the calculation of the uncertainties, o- o and o Ae , in Eqs. (C.13) and (C.14). If the a, represents the 95% confidence level,
UO 2 F + + H+
(C.16)
are available in HClC^/NaClC^ media at different ionic strengths. Uncertainties that represent the 95% confidence level have been assigned by the reviewer. A weighted linear regression, (log l0 */3 + 2D) vs. mk, according to the formula, logl0 */? (C.16) + 2D = log,0 *J3° (C.16) - Azmk, will yield the correct values for the intercept, log]0 /?°(C.16), and the slope, As. In this case, mk corresponds to the molality of . D is the Debye-Huckel term, cf. Appendix B.
i
'"C.OJ./
log,,, "j3 + 2D
a,
1
0.05
1.88
0.10
2
0.25
1.86
0.10
3
0.51
1.73
0.10
4
1.05
1.84
0.10
5
2.21
1.88
0.10
6
0.52
1.89
0.11
7
1.09
1.93
0.11
8
2.32
1.78
0.11
9
2.21
2.03
0.10
10
4.95
2.00
0.32
The results of the linear regression are: intercept = (1.837 ±0.054)= logl0 V°(C-16) slope = (0.029 ± 0.036) = - Ae Calculation of the ion interaction coefficient e(UO 2 F + ,ClO4)= Ae + + 8(UOf,ClO^)- e(H ,ClCr): from E C U O ^ C I O ; ) = (0.46 ± 0.03) kg-mol"1, e(H+,ClO;;) = (0.14 ± 0.02) kg-moP1 (see Appendix B) and the slope of the linear re-
C.5 Several data at different ionic strengths
859
gression, As = -(0.03 + 0.04) kg-mol"1, it follows that e(UO2F+,ClO~) = (0.29 ± 0.05) kg-mol"1. Note that the uncertainty (+ 0 05) kg-mor1 is obtained based on the rules of error propagation as described in Section C.6.2: a = 7(0.04) 2 + (0.03)2 + (0.02)2
The resulting selected values are thus: log10 V ( C . 1 6 ) = (1.84 ±0.05) S(UO2F+,C1O") =
(0.29 ±0.05) kg-mol"1.
C.5.1 Discrepancies or insufficient number of data points Discrepancies are principally treated as described in Section C.4. Again, two cases can be defined. Case I: Only two data points are available. Case II: An "outlier" cannot be discarded. If only one data point is available, the procedure for correction to zero ionic strength outlined in Section C.6 should be followed. Case I. Too few molalities: If only two source data are available, there will be no straightforward way to decide whether or not these two data points belong to the same parent distribution unless either the slope of the straight line is known or the two data refer to the same ionic strength. Drawing a straight line right through the two data points is an inappropriate procedure because all the errors associated with the two source data would accumulate and may lead to highly erroneous values of log10 K° and Ae. In this case, an ion interaction coefficient for the key species in the reaction in question may be selected by analogy (charge is the most important parameter), and a straight line with the slope As as calculated may then be drawn through each data point. If there is no reason to discard one of the two data points based on the quality of the underlying experiment, the selected value will be the unweighted average of the two standard state data point obtained by this procedure, and its uncertainty must cover the entire range of expectancy of the two values, analogous to Case I in Section C.4. It should be mentioned that the ranges of expectancy of the corrected values at / = 0 are given by their uncertainties, which are based on the uncertainties of the source data at / ^ 0 and the uncertainty in the slope of the straight line. The latter uncertainty is not an estimate, but is calculated from the uncertainties in the ion interaction coefficients involved, according to the rules of error propagation outlined in Section C.6.2. The ion interaction coefficients estimated by analogy are listed in the table of selected ion interaction coefficients (Appendix B), but they are flagged as estimates. Case II. Outliers and inconsistent data sets: This case includes situations where it is difficult to decide whether or not a large number of points belong to the same parent distribution. There is no general rule on how to solve this problem, and decisions are left to the judgment of the reviewer. For example, if eight data points follow a straight line reasonably well and two lie way out, it may be justified to discard the "out-
860
C. Assigned uncertainties
liers". If, however, the eight points are scattered considerably and two points are just a bit further out, one can probably not consider them as "outliers". It depends on the particular case and on the judgment of the reviewer whether it is reasonable to increase the uncertainties of the data to reach consistency, or whether the slope, As, of the straight line should be estimated by analogy. Example C.5: Six reliable determinations of the equilibrium constant, logl0 f3, of the reaction: UOf+SCN" ^
UO2SCN+
(C.17)
are available in different electrolyte media: / c = 0.1M(KNO 3 )
Iog 10/ 5(C.17)= (1.19 + 0.03)
Ic = 0.33 M (KNO3)
log10 P (C.17) = (0.90 + 0.10)
7 c =1.0M(NaClO 4 )
log 10 /?(C17) = (0.75 + 0.03)
Ic = 1.0 M (NaC104)
log10 j3 (C.17) = (0.76 + 0.03)
Ic = 1.0 M (NaClO4)
log10 P (C.17) = (0.93 + 0.03)
Ic = 2.5 M (NaNO3)
logI0 p (C.17) = (0.72 ± 0.03)
The uncertainties are assumed to represent the 95% confidence level. From the values at Ic = 1 M, it can be seen that there is a lack of consistency in the data, and that a linear regression similar to that shown in Example C.4 would be inappropriate. Instead, the use of As values from reactions of the same charge type is encouraged. Analogies with As are more reliable than analogies with single s values due to canceling effects. For the same reason, the dependency of As on the type of electrolyte is often smaller than for single s values. A reaction of the same charge type as Reaction (C.17), and for which As is well known, is:
uof +cr ^ uo2ci+.
(c.i 8)
The value of As (C.I8) = - (0.25 + 0.02) kg • mof1 was obtained from a linear regression using 16 experimental values between Ic = 0 1 M and Ic = 3 M Na(Cl,ClO4) [92GRE/FUG]. It is thus assumed that: As (C.17) = As (C.I8) = - (0.25 ± 0.02) kg • mol"1. The correction of log,0 P (C. 17) to Ic = 0 is done using the specific ion interaction equation, cf. TDB-2, which uses molal units: log l0 /?+4Z)=log l0y tf o - As/,,,.
(C.19)
D is the Debye-Hiickel term in molal units and /„, the ionic strength converted to molal units by using the conversion factors listed in Table II-5. The following list
C.5 Several data at different ionic strengths
861
gives the details of this calculation. The resulting uncertainties in logl0 /3 are obtained based on the rules of error propagation as described in Section C.6.2.
Table C-l: Details of the calculation of equilibrium constant corrected to / = 0 , using (C.19). lm
(a)
electrolyte
'og,. P
AD
As /„,.
'°8,. P"
0.101
KNO3
(1.19 ±0.03)
0.438
-0.025
(1.68 ±0.03) (a)
0.335
KNO3
(0.90 ±0.10)
0.617
-0.084
(1.65 +0.10) (a)
1.050
NaClO4
(0.75 + 0.03)
0.822
-0.263
(1.31 ±0.04)
1.050
NaClO4
(0.76 + 0.03)
0.822
-0.263
(1.32 + 0.04)
1.050
NaClO4
(0.93 ±0.03)
0.822
-0.263
(1.49 ±0.04)
2.714
NaNO3
(0.72 + 0.03)
0.968
- 0.679
(1.82±0.13) (a)
These values were corrected for the formation of the nitrate complex, UO2NOj , by using O;) = (0.30 ±0.15) [92GRE/FUG],
As was expected, the resulting values, log,0 P°, are inconsistent and have therefore to be treated as described in Case I of Section C.4. That is, the selected value will be the unweighted average of logI0 p°, and its uncertainty will cover the entire range of expectancy of the six values. A weighted average would only be justified if the six values of log10 P" were consistent. The result is: logloytf° =(1.56 ±0.39).
C.6 Procedures for data handling C.6.1 Correction to zero ionic strength The correction of experimental data to zero ionic strength is necessary in all cases where a linear regression is impossible or appears inappropriate. The method used throughout the review is the specific ion interaction equations described in detail in Appendix B. Two variables are needed for this correction, and both have to be provided with an uncertainty at the 95% confidence level: the experimental source value, log]0 K or logl0 p, and the stoichiometric sum of the ion interaction coefficients, As. The ion interaction coefficients (see Tables B-4, B-5, B-6 and B-7 of Appendix B) required to calculate As may not all be known. Missing values therefore need to be estimated. It is recalled that the electric charge has the most significant influence on the magnitude of the ion interaction coefficients, and that it is in general more reliable to estimate Ae from known reactions of the same charge type, rather than to estimate single Ae values. The uncertainty of the corrected value at / — 0 is calculated by taking into account the
862
C. Assigned uncertainties
propagation of errors, as described below. It should be noted that the ionic strength is frequently given in moles per dm3 of solution (molar, M) and has to be converted to moles per kg H2O (molal, m), as the model requires. Conversion factors for the most common inert salts are given in Table II.5. Example C.6: For the equilibrium constant of the reaction: M3+ + 2 H2O(1) ^
MCOH)* + 2 H+ ,
(C.20)
only one credible determination in 3 M NaClO4 solution is known to be, logl0 * p (C.20) — - 6.31, to which an uncertainty of + 0.12 has been assigned. The ion interaction coefficients are as follows: s(M3+, CIO") = (0.56 ± 0.03) kg-mol"1, e(M(OH);,ClC%) = (0.26 ± 0.11) kg-mol"1, s(H\C10 4 ) =(0.14 + 0.02) kg-mol"1. The values of As and a4e can be obtained readily (cf. Eq. (C.22)): Ae=e(M(OH);,ClC^) + 2s(H\ ClC^)-s(M 3+ , CIO") = -0.22 kg-mol"1, 0mf+(0mf
= 0.12kg-mol"'.
The two variables are thus: log,0*/ff (C.20) = -(6.31 ±0.12), Ae = - (0.02 ± 0.12) kg-mol"1. According to the specific ion interaction model the following equation is used to correct for ionic strength for the reaction considered here: logl0 */?(C.20) + 6D= i o g i o >"(C.20)D is the Debye-Hiickel term: D
0.509,/TT
The ionic strength, /„„ and the molality, m (Im « m ), have to be expressed in molal units, 3 M NaClO4 corresponding to 3.5 m NaClO4 (see Section II.2), giving D — 0.25. This results in: I o g 1 0 > (C.20) = -4.88. The uncertainty in logl0 */3° is calculated from the uncertainties in logl0 *p and Ae (cf. Eq. (C.22)):
C. 6 Procedures for data handling ^)
2
863
= >.12) 2 +(3.5x0.12) 2 = 0.44
The selected, rounded value is: log 1 0 >(C.20) = -(4.9 + 0.4).
C.6.2 Propagation of errors Whenever data are converted or recalculated, or other algebraic manipulations are performed that involve uncertainties, the propagation of these uncertainties has to be taken into account in a correct way. A clear outline of the propagation of errors is given by Bevington [69BEV]. A simplified form of the general formula for error propagation is given by Eq.(C21), supposing that Xis a function ofY\, Y2,...,YN .
s>.
f[<X_a)
(C21)
Eq. (C.21) can be used only if the variables, Y\, Y2,...,YN, are independent or if their uncertainties are small, i.e., the covariances can be disregarded. One of these two assumptions can almost always be made in chemical thermodynamics, and Eq. (C.21) can thus almost universally be used in this review. Eqs. (C.22) through (C.26) present explicit formulas for a number of frequently encountered algebraic expressions, where c,C], c2 are constants. X = c,y, ± c2Y2 :
a2x = ( C | a t . ) 2 + (c2ai2 f
(C.22) (C23)
X =C l e >
:
X =Cl\n(±c2Y)
:
= c2cy
(C.25)
<J, f =c,y
(C.26)
Example C.7: A few simple calculations illustrate how these formulas are used. The values have not been rounded. Eq. (C.22) : ArGm = 2-[ - (277.4 + 4.9)] kJ-mol"1 - [ - (467.3 + 6.2)] kJ-mol"1 = -(87.5+11.6) kJ-mor 1 . Eq.(C23): K= ( ° - 0 3 8 ± 0 - 0 0 2 ) = (8.09±0.96) (0.0047 ±0.0005)
864
C. Assigned uncertainties
Eq. (C.24) : K= 4-(3.75 + 0.12)3 = (210.9 ± 20.3) -A r G°
Eq. (C.25): K° = e"^;
ArG° = - (2.7 + 0.3) kJ-mol"1 R = 8.3145 J-KT'-mor1 T=298.15K
K° = (2.97 + 0.36). Note that powers of 10 have to be reduced to powers of e, i.e., the variable has to be multiplied by ln(10), e.g., log10 K = (2.4510.10); K = \0log'"K =e(ln(IOHoSl>i:) =(282 + 65). ArG° = -RTlnK0;
Eq. (C.26):
K°= (8.2 ± 1.2) x 106 R = 8.3145 J-K-'-mor1 T= 298.15 K
ArG° = - (39.46 ± 0.36) kJ-mor1 ln/T = (15.92 ±0.15) logl0 K° = \nK° /ln(10) = (6.91 + 0.06). Again, it can be seen that the uncertainty in logl0 K° cannot be the same as in ln^T . The constant conversion factor of ln(10) =2.303 is also to be applied to the uncertainty. 0
C.6.3 Rounding The standard rules to be used for rounding are: 1.
When the digit following the last digit to be retained is less than 5, the last digit retained is kept unchanged.
2.
When the digit following the last digit to be retained is greater than 5, the last digit retained is increased by 1.
3.
When the digit following the last digit to be retained is 5 and a)
there are no digits (or only zeroes) beyond the 5, an odd digit in the last place to be retained is increased by 1 while an even digit is kept unchanged.
b) other non-zero digits follow, the last digit to be retained is increased by 1, whether odd or even. This procedure avoids introducing a systematic error from always dropping or not dropping a 5 after the last digit retained.
C. 6 Procedures for data handling
865
When adding or subtracting, the result is rounded to the number of decimal places (not significant digits) in the term with the least number of places. In multiplication and division, the results are rounded to the number of significant digits in the term with the least number of significant digits. In general, all operations are carried out in full, and only the final results are rounded, in order to avoid the loss of information from repeated rounding. For this reason, several additional digits are carried in all calculations until the final selected data set is developed, and only then are data rounded.
C.6.4 Significant digits The uncertainty of a value basically defines the number of significant digits a value should be given. Example: (3.478 + 0.008) (3.48 ±0.01) (2.8 ± 0.4) (10+1) (105+20). In the case of auxiliary data or values that are used for later calculations, it is often inconvenient to round to the last significant digit. In the value (4.85 + 0.26), for example, the "5" is close to being significant and should be carried along a recalculation path in order to avoid loss of information. In particular cases, where the rounding to significant digits could lead to slight internal inconsistencies, digits with no significant meaning in absolute terms are nevertheless retained. The uncertainty of a selected value always contains the same number of digits after the decimal point as the value itself.
This Page is Intentionally Left Blank
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Moore, F. FL, Power, L. F., The crystal structure of potassium hydrogen oxalate by neutron diffraction, Inorg. Nucl. Chem. Lett., 7, (1971), 873-875. Cited on pages: 153, 154.
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Beloedova, T. V., Kazakova, L. V., Skorik, N. A., Stability of citrato-complexes of the rare earth elements and yttrium in water and aqueous alcohol, Russ. J. Inorg. Chem., 17, (1972), 816-818. Cited on page: 308.
[72DOM]
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Hoshi, M., Ueno, K., The precipitation of thorium, uranium(IV) and plutonium(IV) oxalate complex ions with hexaurea chromium(III) chloride, J. Inorg. Nucl. Chem., 34, (1972), 981-986. Cited on pages: 263, 272.
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Kiippers, H., Die Ziichtung grosser Einkristalle von Kalium- und Ammoniumoxalaten, J. Cryst. Growth, 15, (1972), 89-92, in German. Cited on pages: 153, 154, 681.
[72LAG/LAG]
Lagrange, J., Lagrange, P., Etude du complexe vanadium(V)-EDTA en milieu acide (1,5< pH <2) et NaClO4 3 M. I. Constante apparente d'equilibre, Bull. Soc. Chim. Fr., (1972), 13-18, in French. Cited on pages: 400, 402.
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[72MEN]
Mentre, I., Tautomerie "zwitterionique" des acides aminobenzoi'ques et amino-naphtoiques. I. Constantes de dissociation apparentes, Ann. Chim. (Paris), 7, (1972), 333-341, in French. Cited on page: 114.
[72MET/GUI3]
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[72MUN]
Munze, R., Thermodynamische Funktionen der Komplexbildung und Ionenradien - 1 . Bestimmung der freien Enthalpie, Entropie und Enthalpie von Azetatokomplexen der Lanthaniden und Aktiniden aus zwischenatomaren Donor-Akzeptorabstanden, J. Inorg. Nucl. Chem., 34, (1972), 661-668, in German. Cited on page: 749.
[72NIK/ANT]
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Roelofsen, G., Kanters, J. A., Citric acid monohydrate, C 6 H 8 O r H 2 O, Cryst. Struct. Commun., 1, (1972), 23-26. Cited on page: 297.
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[72STO]
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[73ALC]
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Barkhanova, N. N., Dyatlova, N. M , Fridman, A. Y., Reactions of coproportionation of dinuclear mixed compounds of the transition metals with the ethylenediaminetetra-acetate ion and with ethylenediamine, glycine, and oxalate in solution, Russ. J. Inorg. Chem., 18, (1973), 785-788. Cited on page: 465.
[73BAR/FRI]
Barkhanova, N. N., Fridman, A. Y., Dyatlova, N. M., Mono- and dinuclear compounds formed by ethylenediaminetetraacetatocompounds of nickel, cobalt, and copper with glycinate and oxalate in solution, Russ. J. Inorg. Chem., 18, (1973), 227-229. Cited on pages: 463, 464, 465, 467.
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[73BAT]
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Carr, J. D., Swartzfager, D. G., Studies of the alkali metal ion complexes of 2,3-diaminobutane-N,N,N',N'-tetraacetic acid, J. Am. Chem. Soc, 95, (1973), 3569-3572. Cited on pages: 398, 438.
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[74HUB/HUS]
Hubert, S., Hussonnois, M , Brillard, L., Goby, G., Guillaumont, R., Determination simultanee de constantes de formation des complexes citrique de l'americium, du curium, du californium, de l'einsteinium et du fermium, J. Inorg. Nucl. Chem., 36, (1974), 2361-2366, in French. Cited on pages: 381, 382, 383, 692, 707, 745.
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Bera, A. M., Vast, P., Palavit, G., Gosset, S., Determination de constantes de complexation par automatisation et informatisation d'un calorimetre a circulation, Journ. Calorim. Anal. Therm., 18, (1987), 311-315, in French. Cited on pages: 437, 439, 755.
[87BLA/BER]
Blaquiere, C , Berthon, G., Speciation studies in relation to magnesium bioavailability. Formation of Mg(II) complexes with glutamate, aspartate, glycinate, lactate, pyroglutamate, pyridoxine and citrate, and appraisal of their potential significance towards magnesium gastrointestinal absorption, Inorg. Chim. Ada, 135, (1987), 179-189. Cited on pages: 335, 336, 337, 338, 339, 340, 342, 343, 344, 755.
[87CAC/NEC]
Caceci, M. S., Nectoux, F., Pages, M., Stout, B. E., Choppin, G. R., Spectrophotometric studies of complexes of NpOj in solution. I. Complexes with the anions of oxalic, malonic, succinic and maleic acid, Inorg. Chim. Ada, 140, (1987), 243-244. Cited on pages: 255, 256, 756, 763.
[87CIA/IUL]
Ciavatta, L., Iuliano, M., Porto, R., The hydrolysis of the La(III) ion in aqueous perchlorate solution at 60°C, Polyhedron, 6, (1987), 1283-1290. Cited on page: 37.
[87COL/WIL]
Colmanet, S. F., Williams, G. A., Mackay, M. F., Preparation and crystal structures of bis(tetraphenylarsonium)tris(oxalato) technetate(IV), and tetraphenylarsonium tris(benzene-l,2dithiolato)Technetate(V): Octahedral versus trigonal prismatic geometry for tris-bidendate complexes of technetium, J. Chem. Soc. Dalton Trans., (1987), 2305-2310. Cited on page: 201.
[87DOL]
Dollimore, D., The thermal decomposition of oxalates. A review., Thermochim. Ada, 117, (1987), 331-363. Cited on pages: 165, 207, 214,225.
[87FIN/DUF]
Findlow, J. A., Duffield, J. R., Evans, D. A., Williams, D. R., Speciation of aluminium in human and bovine milk, Reel. Trav. Chim. Pays-Bas, 106, (1987), 403. Cited on page: 308.
[87FRE/LAN]
Handbook on the physics and chemistry of the actinides, Freeman, A. J. and Lander, G. H., Eds., vol. 5, North-Holland, Amsterdam, (1987), 375 pp. Cited on page: 4.
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Gampp, H., Investigation of pH-dependent complex equilibria at low ligand to metal ratio by nonlinear least-squares fit to linearsweep or cyclic voltammetric data, Anal. Chem., 59, (1987), 24562460. Cited on page: 114.
[87GAR/PAR]
Garvin, D., Parker, V. B., White, Jr., H. J., CODATA thermodynamic tables: Selection of some compounds of calcium and related mixtures: A prototype set of tables, Springer-Verlag, Berlin, (1987), 356 pp. Cited on page: 25.
[87HYN/ODO]
Hynes, M. J., O'Dowd, M., Interactions of the trimethyltin(IV) cation with carboxylic acids, amino acids, and related ligands, J. Chem. Soc. Dalton Trans., (1987), 563-566. Cited on page: 308.
[87JOA/BIG]
Joao, A., Bigot, S., Fromage, F., Etude des carbonates complexes des elements IVB II. Determination des constantes d'equilibre de formation des tetracarbonatozirconates(IV) et -hafnate(IV), Bull. Soc. Chim. Fr., (1987), 943-947, in French. Cited on pages: 472, 474, 756.
[87KIT/ITO]
Kitamura, Y., Itoh, T., Reaction volume of protonic ionization for buffering agents. Prediction of pressure dependence of pH and pOH, J. Solution Chem., 16, (1987), 715-725. Cited on page: 308.
[87LEO/FRI]
Leonfeva, M. V., Fridman, A. Y., Dyatlova, N. M , Agre, V. M , Sysoeva, T. F., Preparation, structure, and properties of tetraaquozinc ethylenediaminetetra-acetatocuprate dihydrate and tetraaquozinc ethylenediaminetetra-acetatonickelate dihydrate, Russ. J. Inorg. Chem., 32, (1987), 1453-1456. Cited on page: 460.
[87LIN/GU]
Lin, H.-K., Gu, Z.-X., Chen, Y.-T., Calorimetric measurement of the heat of formation of competitive mixed-ligand complexes: The Cu(II)-oxalate-ethylenediamine system, Gazz. Chim. Ital, 117, (1987), 23-26. Cited on pages: 143, 146, 756, 757.
[87MEF/KRO]
Mefod'eva, M. P., Krot, N. N., The compounds of transuranium elements, Nauka, Moscow, (1987), in Russian. Cited on pages: 207, 212,248,261,490.
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[87PAZ/KRI]
Pazukhin, E. M., Krivokhatskii, A. S., Kochergin, S. M , Complex formation of americium(III) in oxalate solutions, Sov. Radiochem., 29, (1987), 9-13. Cited on pages: 284, 285, 286, 287, 757.
[87RAY/DUF]
Raymond, D. P., Duffield, J. R., Williams, D. R., Complexation of plutonium and thorium in aqueous environments, Inorg. Chim. Ada, 140, (1987), 309-313. Cited on pages: 308, 379, 758.
[87RIG/VIT]
Riglet, C , Vitorge, P., Grenthe, I., Standard potentials of the /MOj) systems for uranium and other actinides, Inorg. Chim. Ada, 133, (1987), 323-329. Cited on page: 839.
[87SUE/HU]
Sue, Z., Hu, H., Xue, S., Qing, Z., The solubility of Pu(III) oxalate, Yuanzineng Kexue Jishu, 21, (1987), 326-329, in Chinese. Cited on pages: 264, 758.
[87THE/BUS]
The, P. J., Bush, J. F., Solubility of sodium oxalate in bayer liquor and a method of control, in: Light Metals, 1987; proceedings of the technical sessions presented by the TMS Aluminium Committee at the TMS annual meeting, pp. 5-10, Minerals, Metals and Materials Society, 420 Commonwealth Dr., Warrendale, PA, USA 15086, (1987). Cited on page: 158.
[87THU/KUP]
Thuan, L. B., Kupriyanova, G. N., Smirnova, N. S., Martynenko, L. I., Evseev, A. M., Evaluation of the stability of polycyclic complexes of rare earth elements with EDTA on a background of stable monocomplexonates, Moscow Univ. Chem. Bull, 42, (1987), 51-54. Cited on page: 398.
[87VAS/KOZ]
Vasil'ev, V. P., Kozlovskii, E. V., Chistyakova, G. Thermochemistry of the reactions of nickel, copper, zinc, cadmium ethylenediaminetetra-acetates with iminodiacetate nitrilotriacetate in aqueous solution, Russ. J. Inorg. Chem., (1987), 911-913. Cited on page: 464.
[88ALL/BOL]
Allakhverdov, G. R., Bolyanovskii, A. D., Katkov, A. P., Matkovskaya, T. A., Mikhlin, A. L., Falin, V. A., Automated system for scientific studies of equilibria in solutions by the pH potentiomemetric method, High-purity substances, 5, (1988), 914916. Cited on page: 398.
V., and and 32,
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987
[88BAL/COL]
Baldas, J., Colmanet, S. F., Mackay, M. F., Preparation and crystal structures of [AsPh4]4[Tc4N4O2(ox)6] and [AsPh4]2[TcO(ox)2(Hox)]3H2O: Technetium complexes containing quadridentate or unidentate oxalato ligands, J. Chem. Soc. Dalton Trans., (1988), 1725-1731. Cited on page: 201.
[88BYK/KUZ2]
Bykhovskii, D. N., Kuzmina, M. A., Maksimov, V. F., Novikov, G. S., Smirnov, A. N., Solntseva, L. V., Synthesis conditions and some properties of neptunium(IV) oxalates in which C2O4/Np = 2.5, Sov. Radiochem., 30, (1988), 35-39. Cited on pages: 246, 248.
[88CAM/MUN]
Caminiti, R., Munoz Roca, C , Beltran-Porter, D., Rossi, A., Amorphous complexes MM(EDTA)(H2O)4.2H2O. LAXS and XPS investigation of the local structure, Z. Naturforsck, A: Phys. ScL, 43, (1988), 591-596. Cited on page: 460.
[88CAS/FAU]
Castro, I., Faus, J., Julve, M., Study of the interaction of [Cu(bipy)]2+ with oxalate and squarate in aqueous solution, Transition Met. Chem. (London), 13, (1988), 455-458. Cited on page: 114.
[88CIA]
Ciavatta, L., (1988), Universita di Napoli, Naples, Italy, Private Communication, (from the citation in [92GRE/FUG]). Cited on pages: 835, 842, 846.
[88CRO]
Crow, D. R., Diffusion phenomena and metal complex formation equilibria. Part 2. Cd"-benzimidazole and Ni"-oxalate systems in aqueous solution and general treatment of ion-molecule interactions, J. Chem. Soc. Faraday Trans. 1, 84, (1988), 4285-4297. Cited on pages: 194, 195, 196,759.
[88DAN/OST]
Daniele, P. G., Ostacoli, G., Zerbinati, O., Sammartano, S., De Robertis, A., Mixed metal complexes in solution. Thermodynamic and spectrophotometric study of copper(II)-citrate heterobinuclear complexes with nickel(II), zinc(II) or cadmium(II) in aqueous solution, Transition Met. Chem. (London), 13, (1988), 87-91. Cited on pages: 354, 355, 356, 759.
[88DAS/KAL]
Dash, U. N., Kalia, S. P., Thermodynamics of the homologous dicarboxylic acids and the silver-silver salt electrodes in aqueous medium, J. Electrochem. Soc. India, 37, (1988), 333-338. Cited on page: 114.
988
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[88EVS/SMI]
Evseev, A. M., Smirnova, N. S., Kir'yanov, Y. A., Nikolaeva, E. M., Ozerova, G. P., A study of complex formation in ethylenediaminetetraacetate solutions from chemical copper plating, Moscow Univ. Chem. Bull, 43, (1988), 16-20. Cited on pages: 398, 462, 466, 759.
[88GHA/MAN]
Ghandour, M. A., Mansour, H., Abu El-Wafa, M. H. M., Khodary, M., pH-metric studies of mixed-ligand complexes of cadmium-, magnesium-, strontium- and calcium-(II) with pyruvate and oxalate or citrate, J. Indian Chem. Soc, 65, (1988), 716-718. Cited on pages: 114, 178, 181, 308, 335, 338, 342, 759, 760.
[88HED]
Hedlund, T., Studies of complexation and precipitation equilibria in some aqueous aluminium(III) systems, Ph. D. Thesis, University of Umea, (1988), Sweden. Cited on page: 839.
[88HOV/HEP2]
Hovey, J. K., Hepler, L. G., Tremaine, P. R., Thermodynamics of aqueous EDTA systems: Apparent and partial molar heat capacities and volumes of aqueous EDTA4", HEDTA3", H2EDTA2\ NaEDTA3", and KEDTA" at 25°C. Relaxation effects in mixed aqueous electrolyte solutions and calculations of temperature dependent equilibrium constants, Can. J. Chem., 66, (1988), 881-896. Cited on pages: 432, 440.
[88KIT]
Kita, E., Model quasi-enzyme compounds of chromium(III) with vitamins B6 and histamine. Part V. Kinetics of anation of the [Cr(C2O4)(histamine)(OH2)2]+ ion by oxalate species, Pol. Journ. Chem., 62, (1988), 359-367. Cited on pages: 115, 118.
[88LIN/GU]
Lin, H.-K., Gu, Z.-X., Chen, X.-M., Chen, Y.-T., Calorimetric determination of the heats of formation of competitive ternary mixed-ligand complex compounds. Copper(II)-N-acetylglycine-aamino acid system, Thermochim. Ada, 123, (1988), 201-212. Cited on page: 765.
[88MEL/BAR]
Meloun, M , Bartos, M., Hogfeldt, E., Multiparametric curve fitting -XIII. Reliability of formation constants determined by analysis of potentiometric titration data, Talanta, 35, (1988), 981-991. Cited on page: 308.
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989
[88NER/VIT]
Nerad, I., Vitkova, S., Proks, I., Instrumentation of thermal analysis and calorimetry. New method for determination of the equilibrium state in systems involving reactions of the type A(s) <-> B(s) + C(g), J. Therm. Anal, 33, (1988), 291-295. Cited on pages: 165, 166.
[88NIK/DZY]
Nikitenko, S. I., Dzyubenko, V. I., Malkova, N. N., Matyukha, V. A., Kinetics of intramolecular oxidation of the oxalate ion in a monooxalate complex with plutonium(IV) in nitric acid solution, Sov. Radiochem., 30, (1988), 634-638. Cited on pages: 270, 277, 279, 760.
[88PET/TSY]
Petropavlov, N. N., Tsygankova, I. G., Teslenko, L. A., Microcalorimetric investigation of polymorphic transitions in organic crystals, Sov. Phys. Crystallogr., 33, (1988), 853-855. Cited on page: 108.
[88SHO/HEL]
Shock, E. L., Helgeson, H. C, Calculation of the thermodynamic and transport properties of aqueous species at high pressures and temperatures: Correlation algorithms for ionic species and equation of state predictions to 5 kb and 1000°C, Geochim. Cosmochim. Ada, 52, (1988), 2009-2036. Cited on pages: 35, 827.
[88TAN/HEL]
Tanger, IV, J. C , Helgeson, H. C , Calculation of the thermodynamic and transport properties of aqueous species at high pressures and temperatures: Revised equations of state for the standard partial molal properties of ions and electrolytes, Am. J. Sci., 288, (1988), 19-98. Cited on pages: 35, 827.
[88TAQ/HUS]
Taqui Khan, M. M., Hussain, A., Venkatasubramanian, K., Ramachandraiah, G., Oomen, V., Complexes of Ru(III) with aminopolycarboxylic acids and their interaction with molecular oxygen to form Ru(IV)-|j.-peroxo complexes, J. Mol. Catal, 44, (1988), 117-127. Cited on page: 401.
[88TOG/KOJ]
Togashi, H., Kojima, N., Ban, T., Tsujikawa, I., Optical absorption by Mn2+ ions in MnM(edta).6H2O (M = Zn, Cu, Ni, and Co), Bull. Chem. Soc. Jpn., 61, (1988), 1903-1909. Cited on page: 460.
990
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[88VAS/BOR]
Vasil'ev, V. P., Borodin, V. A., Kopnyshev, S. B., Standard enthalpies of combustion and formation of iminodiacetic and ethylenediaminetetra-acetic acids, Russ. J. Phys. Chem., 62, (1988), 1156-1157. Cited on page: 394.
[88WAN]
Wanner, H., The NEA Thermochemical Data Base Project, Radiochim. Ada, 44/45, (1988), 325-329. Cited on page: 4.
[89ABD/ALI]
Abdel Razik, A., Ali, F. A., Abu Attia, F., Evaluation of the stability constants of uranyl association complexes with phosphate, oxalate, tartrate, and citrate anions in solutions of constant ionic strength, Microchem. J., 39, (1989), 265-269. Cited on pages: 231, 234, 235, 364, 368, 760.
[89COR/DR1]
Coronado, E., Drillon, M., Nugteren, P. R., De Jongh, L. J., Beltran, D., Georges, R., Low-temperature investigation of the ferrimagnetic chains MnM'(EDTA).6H2O (M' = Co, Ni, and Cu(II)): thermal and magnetic properties, J. Am. Chem. Soc, 111, (1989), 3874-3880. Cited on page: 460.
[89COX/WAG]
Cox, J. D., Wagman, D. D., Medvedev, V. A., CODATA Key Values for Thermodynamics, Hemisphere Publ. Corp., New York, (1989), 271 pp. Cited on pages: 6, 29, 34, 36, 57, 58, 59,107, 222.
[89CRO/EWA]
Cross, J. E., Ewart, F. T., Greenfield, B. F., Modelling the behaviour of organic degradation products, Mater. Res. Soc. Symp. Proc, 127, (1989), 715-722. Cited on pages: 511, 531.
[89DAS/DAS]
Dash, U. N., Das, B. B., Biswal, U. K., Panda, T., Mishra, M. K., Ion - solvent interaction studies on homologous dicarboxylic acids in various mixed solvent systems, Egypt. J. Chem., 32, (1989), 181194. Cited on page: 114.
[89FEL/TOP]
Feltz, A., Topfer, J., Redoxreaktionen in kondensierten Oxidsystemen. X. Bildung von Defektspinellen und Phasenbeziehungen im System NixMn3.xO4, Z. Anorg. Allg. Chem., 576, (1989), 71-80, in German. Cited on page: 191.
[89FUE/REB]
Fuentes, J., Reboso, R., Rodriguez, A., 2,5-toluenediamine-N,N'disuccinic acid. Preparation, dissociation constants and coordinating capacity with divalent cations, Polyhedron, 8, (1989), 1365-1370. Cited on page: 115.
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991
[89FUE/REB2]
Fuentes, J., Reboso, R., Rodriguez, A., Binary and ternary complexes of l,3-phenylenediamine-N,N'-disuccinic acid with divalent cations, Polyhedron, 8, (1989), 2693-2699. Cited on pages: 118, 130, 194, 195, 197.
[89ISH/ENO]
Ishikawa, M., Enomoto, H., Complexation of Ni(II) with citrate in nickel-citrate plating baths, Hyomen Gijutsu, 40, (1989), 1266-1271, in Japanese. Cited on pages: 353, 760.
[89MAN/APE]
Manzurola, E., Apelblat, A., Markovits, G., Levy, O., Mixed-metal hydroxycarboxylic acid complexes: Formation constants of complexes of U(VI) with Fe(III), Al(III), In(III) and Cu(II), J. Chem. Soc. Faraday Trans. I, 85, (1989), 373-379. Cited on pages: 306,308,365,368,761.
[89MIR]
Mironov, I. V., Complex formation by silver(I) with EDTA4", NT A3" , IDA2" and glycinate ions in aqueous solution (T = 298.2 K), Russ. J. Inorg. Chem., 34, (1989), 1075-1077. Cited on page: 398.
[89NAG/SHA]
Nagar, R., Sharma, R. C , Studies of some lanthanide quaternary complexes, Indian J. Chem., 28A, (1989), 627-629. Cited on page: 398.
[89NES/HOF]
Neshvad, G., Hoffman, M. Z., Mulazzani, Q. G., Venturi, M , Ciano, M., d'Angelantonio, ML, One-electron reduction of tris(2,2'bipyrimidine)ruthenium(2+) ion in aqueous solution. A photochemical, radiation chemical, and electrochemical study, J. Phys. Chem., 93, (1989), 6080-6088. Cited on page: 398.
[89NIK/ION2]
Nikitenko, S. I., Ionnikova, N. I., Influence of oxalic acid on equilibrium and kinetics of isotopic exchange between penta- and hexavalent neptunium in nitric acid solutions, Sov. Radiochem., 31, (1989), 250-254. Cited on pages: 255, 256, 761.
[89PAP/ZIO]
Papanastasiou, G., Ziogas, I., Acid-base equilibria in ternary water/methanol/dioxane solvent systems: Determination of pK values of citric acid at 25°C, Anal. Chim. Acta, 222, (1989), 189200. Cited on pages: 308, 323.
992
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[89POC]
Poczynajto, A., Potentiometric determination of Pu(III) complexes formed by citric acid, EDTA, DHTP and DTPP, J. Radioanal. Nucl. Chem., 134, (1989), 97-108. Cited on pages: 301, 378, 446, 449, 499,761,762,770.
[89PRA/RAO]
Prabhakar, B. K., Rao, P. S., Simultaneous elucidation of percentage composition and ionisation constants of acids by conductometric titration, Indian J. Chem., 28A, (1989), 407-412. Cited on page: 114.
[89RED/RAM]
Reddy, M. S., Ram, K., Reddy, M. G. R., Formation constants of binary and ternary complexes of Cu(II) with substituted 1,2,4triazoles and some 0 , 0 ; O,N and N,N donors in aqueous medium, Indian J. Chem., 28A, (1989), 437-439. Cited on page: 114.
[89RIB/SAL]
Ribas, X., Salvado, V., Valiente, M., The chemistry of iron in biosystems. II. A hydrolytic model of the complex formation between Fe(III) and citric acid in aqueous solutions, J. Chem. Res. (M), (1989), 2533-2553. Cited on page: 312.
[89RIB/SAL2]
Ribas, X., Salvado, V., Valiente, M., The chemistry of iron in biosystems. Part 2. A hydrolytic model of the complex formation between iron(III) and citric acid in aqueous solutions, J. Chem. Res. (S), (1989), 332. Cited on page: 312.
[89RIG/ROB]
Riglet, C , Robouch, P., Vitorge, P., Standard potentials of the (MO2+/MOj) and (M4+/M3+) redox systems for neptunium and plutonium, Radiochim. Ada, 46, (1989), 85-94. Cited on pages: 839, 840.
[89RIZ/SUL]
Rizkalla, E. N., Sullivan, J. C , Choppin, G. R., Calorimetric studies of americium(III) complexation by amino carboxylates, Inorg. Chem., 28, (1989), 909-911. Cited on pages: 508, 509, 762, 763.
[89ROB]
Robouch, P., Contribution a la prevision du comportement de l'americium, du plutonium et du neptunium dans la geosphere; donnees chimiques, Commissariat a l'Energie Atomique, Report CEA-R-5473, (1989), partly in French, 216 p. Also published as Ph.D. thesis, Universite Louis Pasteur de Strasbourg, France, 1987. Cited on pages: 839, 840.
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993
[89ROS/DIT]
Rosch, F , Dittrich, S., Buklanov, G. V., Milanov, M., Khalkin, V. A., Dreyer, R., Electromigration of carrier-free radionuclides. 11. Complex formation of 239Np(V) with oxalate, tartrate and sulphate in neutral inert electrolytes, Radiochim. Acta, 48, (1989), 205-211. Cited on pages: 255, 256, 763.
[89SAL/BOO]
Sal'nikov, Y. I., Boos, G. A., Ovchinnikova, I. V., Complex formation by copper(II) with ethylendiaminetetra-acetic acid in aqueous ethanol and aqueous acetone, Russ. J. Inorg. Chem., 34, (1989), 128-130. Cited on pages: 394, 398.
[89SHO/HEL]
Shock, E. L., Helgeson, H. C , Corrections to Shock and Helgeson Geochimica et Cosmochimica Acta, 52, (1988) 2009-2036, Geochim. Cosmochim. Acta, 53, (1989), 215. Cited on pages: 35, 827.
[89SHO/HEL2]
Shock, E. L , Helgeson, H. C , Sverjensky, D. A., Calculation of the thermodynamic and transport properties of aqueous species at high pressures and temperatures: Standard partial molal properties of inorganic neutral species, Geochim. Cosmochim. Acta, 53, (1989), 2157-2183. Cited on pages: 35, 827.
[89SIJ/ROS]
Sijpkes, A. H., van Rossum, P., Raad, J. S., Somsen, G., Heat capacities and volumes of some polybasic carboxylic acids in water at 298.15 K, J. Chem. Thermodyn., 21, (1989), 1061-1067. Cited on pages: 113,306.
[89SIN]
Singh, R. P., On the existence of NaC2O4 ion pair complex, Bull. Chem. Soc. Jpn., 62, (1989), 4089-4091. Cited on pages: 159, 161, 166, 168, 169, 171.
[89STO/CAC]
Stout, B. E., Caceci, M. S., Nectoux, F., Pages, M., Choppin, G. R., Complexes of NpOj with aliphatic dicarboxylic acids, Radiochim. Acta, 46, (1989), 181-184. Cited on pages: 255, 256, 257, 749, 756, 763.
[89SVE/DOB]
Svetlova, I. E., Dobrynina, N. A., Smirnova, N. S., Martynenko, L. I., Evseev, A. M., Savitskii, A. P., Mixed-ligand complex formation by europium with complexones and P-diketones in micellar solutions, Russ. J. Inorg. Chem., 34, (1989), 30-34. Cited on page: 398.
994
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[89VAS/KAL]
Vasil'ev, V. I , Kalevich, E. S., Radchenko, V. M., Egunov, V. P , Izmalkov, A. N., Shimbarev, E. V., Vasil'ev, V. Y., Thermal decomposition of oxalates of An(III) ( An = Am, Cm, Bk, and Cf), Sov. Radiochem., 31, (1989), 651-653. Cited on pages: 284, 763.
[89VEN/BER]
Venturini, M., Berthon, G., Aluminum speciation studies in biological fluids. Part 2. Quantitative investigation of aluminumcitrate complexes and appraisal of their potential significance in vivo, J. Inorg. Biochem., 37, (1989), 69-90. Cited on page: 312.
[89YAD/GHO]
Yadav, J., Ghosh, A. K., Ghosh, J. C , First dissociation constant and the related thermodynamic quantities of citric acid from 283.15 to 323.15 K, Proc. Natl. Acad. Sci. India, A59, (1989), 389-394. Cited on pages: 308, 323, 326, 328.
[90AHR/DAH]
Ahrland, S., Dahlgren, A., Persson, I., Stabilities and hydrolysis of some iron(III) and manganese(III) complexes with chelating ligands, Act. Agr. Scand., 40, (1990), 101-111. Cited on page: 398.
[90ALB/AND]
Alberto, R., Anderegg, G., Albinati, A., Synthesis and X-ray structure of a new Tc(IV) oxalato complex : K4[(C2O4)2Tc(uO)2Tc(C2O4)2].3H2O, Inorg. Chim. Ada, 178, (1990), 125-130. Cited on page: 201.
[90APE/MAN]
Apelblat, A., Manzurola, E., Apparent molar volumes of organic acids and salts in water at 298.15 K, Fluid Phase Equilib., 60, (1990), 157-171. Cited on pages: 113,306.
[90ARC/WAN]
Archer, D. G., Wang, P., The dielectric constant of water and Debye-Huckel limiting law slopes, J. Phys. Chem. Ref. Data, 19, (1990), 371-411. Cited on page: 827.
[90ARE/CON]
Arena, G., Contino, A., Musumeci, S., Purrello, R., Formation and stability constants of dimethyltin(IV) complexes with citrate, tripolyphosphate, and nitrilotriacetate in aqueous solution, J. Chem. Soc. Dalton Trans., (1990), 3383-3387. Cited on page: 312.
[90BAL/COL]
Baldas, J., Colmanet, S. F., Technetium(VII) nitridoperoxo complexes, Inorg. Chim. Ada, 176, (1990), 1-3. Cited on page: 201.
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[90BEC/NAG]
Beck, M. T., Nagypal, I., Chemistry of complex equilibria, 2nd. Edition, Horwood Limited Publishers, New York, (1990), 402 pp. Cited on page: 24.
[90BIA/BUC]
Biader Ceipidor, U., Bucci, R., Magri, A. D., Using thermoanalytical data. Part 2. The dependence of kinetic data available from thermogravimetry on sample and instrument parameters: a method for calculating "true" kinetic parameters, Thermochim. Ada, 161, (1990), 37-49. Cited on pages: 165, 166.
[90CIA]
Ciavatta, L., The specific interaction theory in equilibrium analysis: Some empirical rules for estimating interaction coefficients of metal ion complexes, Ann. Chim. (Rome), 80, (1990), 255-263. Cited on pages: 820, 832, 833.
[90COR/KON2]
Cordfunke, E. H. P., Konings, R. J. M., Ouweltjes, W., The standard enthalpies of formation of MO(s), MCl2(s), and M2+(aq, oo), (M = Ba, Sr), J. Chem. Thermodyn., 22, (1990), 991-996. Cited on page: 4.
[90DAN/ROB]
Daniele, P. G., de Robertis, A., de Stefano, C, Gianguzza, A., Sammartano, S., Studies on polyfunctional O-ligands. Formation thermodynamics of simple and mixed alkali metal complexes with citrate at different ionic strengths in aqueous solution, J. Chem. Res. (S), (1990), 300-301. Cited on pages: 308, 312, 326, 327, 328, 332, 333, 334, 764.
[90DAN/ROB2]
Daniele, P. G., de Robertis, A., de Stefano, C , Gianguzza, A., Sammartano, S., Studies on polyfuncional O-ligands. Formation thermodynamics of simple and mixed alkali metal complexes with citrate at different ionic strengths in aqueous solution, J. Chem. Res. (M), (1990), 2316-2350. Cited on pages: 308, 309, 312, 314, 326, 327, 328, 331, 332, 333, 335, 764.
[90DOB/HEP]
Dobrogowska, C , Hepler, L. G., Apelblat, A., The enthalpies of dilution of aqueous organic acids: oxalic acid and citric acid at 298.15 K, J. Chem. Thermodyn., 22, (1990), 167-172. Cited on page: 306.
[90DZO/MOR]
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[90KOZ/VAS]
Kozlovskii, E. V., Vasil'ev, V. P., Chistyakova, G. V., The thermodynamics of complex formation in the M(Edta)2"-Cu(en)2+en-H2O systems (M = Zn, Ni), Russ. J. Inorg. Chem., 35, (1990), 62-64. Cited on page: 460.
[90LEI]
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[90LIN/GU]
Lin, H.-K., Gu, Z.-X., Chen, Y.-T., Calorimetric measurement of the heat of formation of competitive mixed-ligands complexes: the Ni(II)-oxalate-ethylenediamine system, Gazz. Chim. Ital, 120, (1990), 657-660. Cited on pages: 199, 200, 765.
[90MON]
Monnin, C , The influence of pressure on the activity coefficients of the solutes and on the solubility of minerals in the system Na-Ca-ClSO4-H2O to 200°C and 1 kbar, and to high NaCl concentration, Geochim. Cosmochim. Ada, 54, (1990), 3265-3282. Cited on page: 35.
[90OEL/HEL]
Oelkers, E. H., Helgeson, H. C, Triple-ion anions and polynuclear complexing in supercritical electrolyte solutions, Geochim. Cosmochim. Ada, 54, (1990), 727-738. Cited on page: 827.
[90RED/SAT]
Reddy, G., Satyanarayana, S., Reddy, K. V., Ternary complexes of copper(II), nickel(II), cobalt(II) and zinc(II) with thiodiacetic acid and various secondary ligands, Indian J. Chem., 29A, (1990), 500503. Cited on pages: 115, 194, 196, 765.
[90RIG]
Riglet, C , Chimie du neptunium et autres actinides en milieu carbonate, Commissariat a l'Energie Atomique, Report CEA-R5535, (1990), 267 pp., in French, also published as Ph.D. thesis, Universite Paris 6, (1989). Cited on pages: 839, 840.
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[90ROB/STE]
de Robertis, A., de Stefano, C , Rigano, C , Sammartano, S., Thermodynamic parameters for the protonation of carboxylic acids in aqueous tetraethylammonium iodide solutions, J. Solution Chem., 19, (1990), 569-587. Cited on pages: 115, 118, 119, 132, 143, 144, 146, 312, 314, 326, 328, 331, 334, 334, 766, 767.
[90ROS/REI]
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[90ULL/BHA]
Ullah, M. R., Bhattacharya, P. K., Study of ternary complexes of Cu(II) involving aliphatic carboxylic acids and amino acid, Indian J. Chem., 29A, (1990), 150-153. Cited on page: 114.
[90VAS/KAL2]
Vasil'ev, V. I., Kalevich, E. S., Radchenko, V. M., Egunov, V. P., Izmalkov, A. N., Vasil'ev, V. Y., Thermal decomposition of oxalates and nitrates of transplutonium elements by differential thermal analysis, J. Radioanal. Nucl. Chem., 143, (1990), 269-274. Cited on page: 284.
[90WAN/YAN]
Wang, S., Yang, J., Improvement for calculating stepwise ionization constants of polybasic acids by pH method, Fenxi Huaxue, 18, (1990), 275-279, in Chinese. Cited on page: 308.
[91AND/CAS]
Anderson, G. M., Castet, S., Schott, J., Mesmer, R. E., The density model for estimation of thermodynamic parameters of reactions at high temperatures and pressures, Geochim. Cosmochim. Ada, 55, (1991), 1769-1779. Cited on page: 35.
[91APE/BAR]
Apelblat, A., Barthel, J., Conductance studies on aqueous citric acid, Z Naturforsch., 46a, (1991), 131-140. Cited on pages: 308, 323, 327,328,331.
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van Auken, T. V., Solubility and heat of solution of potassium dihydrogen citrate, J. Chem. Eng. Data, 36, (1991), 255-257. Cited on page: 300.
[91BAL/COL]
Baldas, J., Colmanet, S. F., Williams, G. A., Crystal structure of [AsPh4]2[{TcN(O2)2}2(ox)]-2Me2CO: An oxalate-bridged technetium(VII) nitridoperoxo dimer, J. Chem. Soc. Dalton Trans., (1991), 1631-1633. Cited on page: 201.
[91 BAP]
Bapna, R. K., Binary and ternary complexes of Co2+, Ni2+, Cu2+ and Zn2+ with EDTA and citric acid, Trans. SAEST, 26, (1991), 275-278. Cited on pages: 308, 327, 328, 463, 464, 467, 768.
[91BEI/GRA]
Beiriger, J. M., Grant, P. M., Enthalpy of reaction of thorium(IV) with oxalate, J. Radioanal. Nucl. Chem., 154, (1991), 89-94. Cited on pages: 143, 146, 768, 769, 791.
[91BIC/EDW]
Bickley, R. I., Edwards, H. G. M , Rose, S. J., A Raman spectroscopic study of nickel(II) oxalate dihydrate, NiC2O4.2H2O, and dipotassium bisoxalatonickel(II) hexahydrate, K2Ni(C2O4)2.6H2O, J. Mol. Struct, 243, (1991), 341-350. Cited on page: 190.
[91BOU/PHI]
Bouzat, G., Philipponneau, G., Physical chemistry models of oxalate and gibbsite solubilities in Bayer solutions, in: Light Metals, 1991; proceedings of the technical sessions presented by the TMS Aluminium Committee at the TMS annual meeting, pp. 97-102, Elwin L. Rooy, Ed., Minerals, Metals and Materials Society, 420 Commonwealth Dr., Warrendale, PA, USA, 15086, (1991). Cited on pages: 152, 157, 158, 159,769.
[91CHR/CUM]
Christie, G. L., Cummins, D., Duffield, J. R., Hurford, S. R., Morris, C. R., Riley, P. I., Vesey, J. A., Williams, D. R., Thermodynamic formation constants and solid state properties for the interaction of Zn(II) ions with citrate, phenolsulphonate, monofluorophosphate, and saccharinate, J. Inorg. Biochem., 42, (1991), 273-287. Cited on page: 308.
[91 DIN]
Dinsdale, A. T., SGTE data for pure elements, CALPHAD: Comput. Coupling Phase Diagrams Thermochem., 15, (1991), 317-425. Cited on page: 29.
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[91FRE/KEL]
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[91GRI/BAT]
Grigor'ev, M. S., Baturin, N. A., RegeF, L. L., Krot, N. N., Synthesis, crystallization and molecular structure of crystal hydrates of the complex neptunium(V) oxalate [Co(NH3)6][NpO2(C2O4)2].nH2O (n=3, 4), Sov. Radiochem., 33, (1991), 121-126. Cited on page: 248.
[91GRI/BES]
Grigor'ev, M. S., Bessonov, A. A., Yanovskii, A. I., Struchkov, Y. T., Krot, N. N., Crystal structure of the complex neptunium(V) oxalat (NH4)NpO2C2O4.nH2O, Sov. Radiochem., 33, (1991), 499503. Cited on page: 248.
[91HAR/SMI]
Hartley, D. W., Smith, G., Sagatys, D. S., Kennard, C. H. L., Antimony(III) complexes with carboxylic acids. 2. Preparation and crystal structures of [Sb2Ag2(C6H6O7)4] and 2 [SbNa(C6H6O7)2(H2O)2]-H2O [C6H6O7 = citrate "], J. Chem. Soc. Dalton Trans., (1991), 2735-2739. Cited on page: 300.
[91JAC/TOI]
Jackson, G. E., du Toit, J., Gadolinium(III) in vivo speciation. Part 1. A potentiometric and spectroscopic study of gadolinium(III) citrate complexes, J. Chem. Soc. Dalton Trans., (1991), 1463-1466. Cited on page: 312.
[91KET/PAL]
Kettler, R. M., Palmer, D. A., Wesolowski, D. J., Dissociation quotients of oxalic acid in aqueous sodium chloride media to 175°C, J. Solution Chem., 20, (1991), 905-927. Cited on pages: 769, 792.
[91LI/ZHA]
Li, J., Zhang, Y., The characteristics of EDTA's transition metal complexes (III) The d-d transition spectrum and structure characteristic of [Pb.Ni(HEDTA)H2O]Cl crystal, Cryst. Res. Technoi, 26, (1991), 193-199. Cited on page: 460.
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Van Loon, L. R., Kopajtic, Z., Complexation of Cu2+, Ni2+ and UO 2 / by radiolytic degradation products of bitumen, Radiochim. Ada, 54, (1991), 193-199. Cited on pages: 194, 197,231,236,239,770.
[91MAT/KAR]
Matyukha, V. A., Karelin, A. I., Oxalate compounds oflanthanides, actinides and some transition metals, Energoatomizdat, Moscow, Russia, (1991), in Russian. Cited on pages: 207, 212, 225, 261, 263.
[91NER/PRO]
Nerad, I., Proks, I., Sausova, S., Determination of equilibrium quantities of the systems formed by thermal decomposition according to the reaction A(cond) <-> B(cond) + C(g). II. Divariant equilibrium states at thermal dehydratation of CaC2O4.H2O, Chem. Pap., 45, (1991), 721-730. Cited on pages: 165, 166.
[91 PIT]
Pitzer, K. S., Ion interaction approach: theory and data correlation, in: Activity coefficients in electrolyte solutions, Pitzer, K. S., Ed., pp. 75-153, CRC Press, Boca Raton, Florida, (1991). Cited on page: 824.
[91POC]
Poczynajlo, A., Extraction study of Pu(III)-edta chelates, J. Radioanal. Nucl. Chem., 148, (1991), 295-307. Cited on pages: 499, 770,771.
[91RED/DEV]
Reddy, C. V. R., Devi, C. S., Reddy, M. G. R., Formation constants of binary and ternary complexes of Cu(II) with ninhydrin and some O, O; N, O and N, N donor ligands in aqueous medium, Indian J. Chem., 30A, (1991), 385-386. Cited on page: 781.
[91 SAL/BOO]
Sal'nikov, Y. I., Boos, G. A., Gibadullina, K. V., Basyrova, R. R., Shakirova, N. L., Ethylenediaminetetraacetate complexes of potassium and sodium and dissociation of EDTA in aqueousacetonitrile and aqueous-dioxane media, Russ. J. Inorg. Chem., 36, (1991), 745-749. Cited on pages: 398, 438.
[91SIN/YEB]
Singh, R. P., Yeboah, Y. D., Pambid, E. R., Debayle, P., Stability constant of the calcium-citrate(3-) ion pair complex, J. Chem. Eng. Data, 36, (1991), 52-54. Cited on pages: 338, 344, 349, 771.
[91WAN]
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[92BAN/BLI]
Banyai, I., Blixt, J., Glaser, J., Toth, I., On the dissociation of hydrogen cyanide in aqueous solutions containing different ionic media. A combined potentiometric and carbon-13 NMR study, Ada Chem. Scand, 46, (1992), 138-141. Cited on page: 845.
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Biader Ceipidor, U., Bucci, R., Magri, A. D., Using thermoanalytical data. Part 4. Processing DTA/DSC curves to calculate reaction enthalpy and kinetic parameters. An application to calcium oxalate, Thermochim. Ada, 199, (1992), 85-103. Cited on pages: 165, 166.
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Capdevila, EL, Donnees thermodynamiques sur l'oxydoreduction du plutonium en milieux acide et carbonate. Stabilite de Pu(V), Ph. D. Thesis, Universite de Paris-Sud, Orsay, France, (1992), in French. Also published as CEA-R-5643 Commissariat a l'Energie Atomique, France, (1993). Cited on pages: 839, 840.
[92DAN/ROB]
Daniele, P. G., de Robertis, A., Sammartano, S., The effect of urea on the protonation of acetate, oxalate, malonate, citrate and sulfate in aqueous sodium, potassium, calcium chloride and tetraethylammonium iodide, Ann. Chim. (Rome), 82, (1992), 503516. Cited on pages: 114,308.
[92FUG/KHO]
Fuger, J., Khodakovsky, I. L., Sergeyeva, E. I., Medvedev, V. A., Navratil, J. D., The chemical thermodynamics of actinide elements and compounds, Part 12. The actinide aqueous inorganic complexes, International Atomic Energy Agency, Vienna, (1992), 224 pp. Cited on page: 4.
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[92GRE/MOR]
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[92MIL/GRA]
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[92NGU/BEG]
Nguyen-Trung, C , Begun, G. M., Palmer, D. A., Aqueous uranium complexes. 2. Raman spectroscopic study of the complex formation of the dioxouranium(VI) ion with a variety of inorganic and organic ligands, Inorg. Chem., 31, (1992), 5280-5287. Cited on pages: 230, 773.
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[92ROB/STE]
de Robertis, A., de Stefano, C , Rigano, C , Sammartano, S., Salt effects on the protonation of oxalate in aqueous NaCl, KC1 and tetraethylammonium iodide solution at 5< T <50°C and 0< I <1 mol.dnT3, Thermochim. Ada, 202, (1992), 133-149. Cited on pages: 115, 119, 120, 130, 132, 143, 144, 146, 157, 158, 670, 773, 774, 775, 783.
[92SAP/COR]
Sapifia, F., Coronado, E., Beltran, D., Kuentzler, R., Thermal properties of the tetrahydrate series M ' M ( M ' E D T A ) 2 - 4 H 2 O {M1, M, M' = Co(II), Ni(II), Zn(II)}, J. Magn. Magn. Mater., 104-107, (1992), 837-838. Cited on page: 460.
[92SEI/MUE]
Seifert, S., Muenze, R., Leibnitz, P., Reck, G., Stach, J., Preparation, characterization and crystal structure of a mixed ligand complex of technetium with DPPE and oxalic acid: oxalato-bis(l,2bis(diphenylphosphino)ethane) technetium(II), Inorg. Chim. Ada, 193, (1992), 167-172. Cited on page: 201.
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Shock, E. L., Oelkers, E. H., Johnson, J. W., Sverjensky, D. A., Helgeson, H. C , Calculation of the thermodynamic properties of aqueous species at high pressures and temperatures. Effective electrostatic radii, dissociation constants and standard partial molal properties to 1000°C and 5 kbar, J. Chem. Soc. Faraday Trans., 88, (1992), 803-826. Cited on page: 827.
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[92TAN/NOM]
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[92TOC/INO]
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[92TR1/TR1]
Tripathi, S., Tripathi, S. R., Yadava, K. L., New electrophoretic study of mixed ligand complexes: oxalato and oxalato-NTA complexes of Cu(II), Ni(II) and Co(II), J. Electrochem. Soc. India, 41,(1992), 231-234. Cited on pages: 114, 195, 196,777.
[92TUR/SAN]
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[92VEL/SOH]
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[93ATZ/FIL]
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[93CHE/REI]
Chen, M., Reid, R. S., Solution speciation in the aqueous Na(I)EDTA and K(I)-EDTA systems, Can. J. Chem., 71, (1993), 763768. Cited on pages: 401, 403, 438, 441.
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[93GRE/HAR]
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[93ROM/GUZ]
Roman, P., Guzman-Miralles, C, Luque, A., Structure of dipotassium trans-diaquabis(oxalato-O,O')nickelate(II)-water (1/4), Acta Crystallogr., C49, (1993), 1336-1339. Cited on page: 190.
[93SOH/COS]
Sohnel, O., Costa-Bauza, A., Velich, V., Calcium oxalate monohydrate precipitation investigation by thermometric method, J. Cryst. Growth, 126, (1993), 493-498. Cited on pages: 174, 175, 176.
[93SPI/RIB]
Spirandeli Crespi, ML, Ribeiro, C. A., lonashiro, M., Preparation and thermal decomposition of solid state cobalt, nickel, copper and zinc chelates of ethylenediaminetetraacetic acid, Thermochim. Acta, 221, (1993), 63-72. Cited on page: 460.
[94CAP/VIT]
Capdevila, H., Vitorge, P., Potentiels redox des couples PuO^/PuOj et Pu4+/Pu3+ a force ionique et temperature variables. Entropie et capacite calorifique, Commissariat a l'Energie Atomique, Report CEA-N-2762, (1994), 73 pp., in French. Cited on pages: 839, 840.
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[94GIF]
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[94HAS/KHE]
Hasilkar, S. P., Khedekar, N. B., Chander, K., Jadhav, A. V., Jain, H. C , Studies on the solubility of Pu(III) oxalate, J. Radioanal. Nucl. Chem., 185, (1994), 119-125, errata in [95HAS/KHE]. Cited on page: 264.
[94KIS/SOV]
Kiss, T., Sovago, I., Martin, R. B., Pursiainen, J., Ternary complex formation between Al(III)-adenosine-5'-phosphates and carboxylic acid derivatives, J. Inorg. Biochem., 55, (1994), 53-65. Cited on pages: 120, 132.
[94KUM/CHA]
Kumar, K., Chang, C. A., Francesconi, L. C , Dischino, D. D., Malley, M. F., Gougoutas, J. Z., Tweedle, M. F., Synthesis, stability, and structure of gadolinium(III) and yttrium(III) macrocyclic poly(amino carboxylates), Inorg. Chem., 33, (1994), 3567-3575. Cited on pages: 399, 401, 403, 780, 781.
[94LEH/LUG]
Lehmann, A., Luger, P., Lehmann, C. W., Ibberson, R. M., Oxalic acid dihydrate - an accurate low-temperature structural study using high-resolution neutron powder diffraction, Ada Crystallogr., B50, (1994), 344-348. Cited on page: 111.
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Zhiganov, A. N., Matyukha, V. A., Saltan, N. P., Size and shape of Np(C2O4)2.6H2O crystals as a function of preparation conditions, Radiochemistry (Moscow), 36, (1994), 252-256. Cited on page: 246.
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Zhiganov, A. N., Matyukha, V. A., Saltan, N. P., Size and shape of Pu(C2O4)2.6H2O crystals as a function of preparation conditions, Radiochemistry (Moscow), 36, (1994), 240-245. Cited on page: 263.
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Zhiganov, A. N., Matyukha, V. A., Saltan, N. P., Size and shape of Pu2(C2O4)3.10H2O crystals as a function of preparation conditions, Radiochemistry (Moscow), 36, (1994), 246-251. Cited on page: 263.
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Apelblat, A., Dov, M., Wisniak, J., Zabicky, J., The vapour pressure of water over saturated aqueous solutions of malic, tartaric, and citric acids, at temperatures from 288 to 323 K, J. Chem. Thermodyn., 27, (1995), 35-41. Cited on page: 305.
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[95HAS/KHE]
Hasilkar, S. P., Khedekar N. B., Chander, K., Jadhav, A. V., Jain, H. C , Errata to the paper: Studies on the solubility of Pu(III) oxalate, J. Radioanal. Nucl. Chem., 191, (1995), 427. Cited on page: 264.
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Vaz, J. L. L., Atbir, T., Albourine, A., Petit-Ramel, M., Interactions binaires et ternaires des ions mercuriques avec sept derives pyrimidiques et l'EDTA, J. Chem. Res. (M), (1997), 1917-1928. Cited on page: 398.
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Alderighi, L., Bianchi, A., Mederos, A., Midollini, S., Rodriguez, A., Vacca, A., Thermodynamic and multinuclear NMR study of beryllium(II) hydrolysis and beryllium(II) complex formation with oxalate, malonate, and succinate anions in aqueous solution, Eur. J. Inorg. Chem., (1998), 1209-1215. Cited on pages: 114, 143, 146, 670,791.
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Morris, S., Almond, M. J., Cardin, C. J., Drew, M. G. B., Rice, D. A., Zubavichus, Y., The anions [(ZrOH(CO3)3)2]6" and [(ZrOH(C2O4)3)2]6~: single crystal X-ray diffraction studies of the complexes guanidinium zirconium carbonate [(C(NH2)3)3ZrOH(CO3)3.H2O]2 and sodium zirconium oxalate Na6(ZrOH(C2O4)3)2.7H2O, Polyhedron, 17, (1998), 2301-2307. Cited on pages: 204, 795.
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Rai, D., Felmy, A. R., Hess, N. J., Moore, D. A., Yui, M., A thermodynamic model for the solubility of U02(am) in the aqueous K+-Na+-HCC>3-CO?--OH~-H2O system, Radiochim. Ada, 82, (1998), 17-25. Cited on page: 845.
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Rai, D., Rao, L., Moore, D. A., The influence of isosaccharinic acid on the solubility of Np(IV) hydrous oxide, Radiochim. Ada, 83, (1998), 9-13. Cited on pages: 530, 531.
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Rai, D., Rao, L., Xia, Y., Solubility of crystalline calcium isosaccharinate, J. Solution Chem., 27, (1998), 1109-1122. Cited on pages: 515, 517, 520, 521, 522, 523.
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Reed, D. T., Wygmans, D. G., Aase, S. B., Banaszak, J. E., Reduction of Np(VI) and Pu(VI) by organic chelating agents, Radiochim. Ada, 82, (1998), 109-114. Cited on pages: 261, 283, 498, 502, 572, 573, 589.
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Sal'nikov, Y. I., Boos, G. A., Effect of background electrolyte on dissociation constants of EDTA and ethylenediamine conjugated acids, Izv. Vyssh. Uchebn. Zaved., Khim. Khim. Tekhnol, 41, (1998), 6-9, in Russian. Cited on page: 399.
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Sun, Y., Martell, A. E., Motekaitis, R. J., Welch, M. J., Synthesis and stabilities of the Ga(III) and In(III) chelates of a new diaminodithiol bifunctional ligand, Tetrahedron, 54, (1998), 42034210. Cited on pages: 401, 403.
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Archer, D. G., Thermodynamic properties of import to environmental processes and remediation. II. Previous thermodynamic property values for nickel and some of its compounds, J. Phys. Chem. Ref. Data, 28, (1999), 1485-1507. Cited on page: 698.
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Karhu, J., Harju, L., Ivaska, A., Determination of the solubility products of nitrilotriacetic acid, ethylenediaminetetraacetic acid and diethylenetriaminepentaacetic acid, Anal. Chim. Ada, 380, (1999), 105-111. Cited on page: 394.
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Majumdar, R., Sarkar, P., Ray, U., Mukhopadhyay, M. R., Secondary catalytic reactions during thermal decomposition of oxalates of zinc, nickel and iron(II), Thermochim. Ada, 335, (1999), 43-53. Cited on page: 190.
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Mizera, J., Bond, A. H., Choppin, G. R., Moore, R. C, Dissociation constants of carboxylic acids at high ionic strengths, in: Adinide speciation in high ionic strength media, Reed, D. T., Clark, S. B. and Rao, L., Eds., pp. 113-124, Kluwer Academic/ Plenum Publ., New York, USA, (1999). Cited on pages: 128, 131, 314, 401, 403, 784, 803, 807, 808.
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Pavasars, I., Characterisation of organic substances in waste materials under alkaline conditions, Ph. D. Thesis, Linkoping University, Sweden, (1999), Linkoping Studies in Arts and Science 196. Cited on page: 511.
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de Robertis, A., de Stefano, C, Foti, C , Medium effects on the protonation of carboxylic acids at different temperatures, J. Chem. Eng. Data, 44, (1999), 262-270. Cited on pages: 308, 314, 804.
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De Stefano, C , Gianguzza, A., Piazzese, D., Sammartano, S., Speciation of low molecular weight carboxylic ligands in natural fluids: protonation constants and association with major components of seawater of oxydiacetic and citric acids, Anal. Chim. Ada, 398, (1999), 103-110. Cited on page: 309.
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Vercammen, K., Glaus, M. A., Van Loon, L. R., Evidence for the existence of complexes between Th(IV) and a-isosaccharinic acid under alkaline condition, Radiochim. Ada, 84, (1999), 221-224. Cited on page: 538.
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Ciavatta, L., Iuliano, M., Vitiello, A., Stability constants of chromium(III) oxalate complexes in lm NaClO4 at 60°C, Ann. Chim. (Rome), 90, (2000), 169-179. Cited on pages: 115, 128.
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[2001 TAN/FUR] Taniguchi, M., Furusawa, M., Kiba, Y., Enthalpies of dehydrations of oxalate, sulfate and chloride hydrates by transpiration method and DSC, J. Therm. Anal. Calorim., 64, (2001), 177-183. Cited on pages: 159, 166. [2001VER/GLA] Vercammen, K., Glaus, M. A., Van Loon, L. R., Complexation of Th(IV) and Eu(III) by a-isosaccharinic acid under alkaline conditions, Radiochim. Ada, 89, (2001), 393-401. Cited on pages: 534, 535, 536, 538, 539, 540. [2002CUR/TEN] Curini, R., Tentolini, U., Materazzi, S., Fontanella, C , Palladino, G., Modeling of fluids: synthesis and characterization of the complex, Thermochim. Acta, 387, (2002), 805, 806.
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[2002HAG/DUK] Hagberg, J., Duker, A., Karlsson, S., Determination of dissociation constants of low molecular weight organic acids by capillary zone electrophoresis and indirect UV detection, Chromatographia, 56, (2002), 641-644. Cited on pages: 515, 517. [2002HAV/SOT] Havel, J., Soto-Guerrero, J., Lubal, P., Spectrophotometric study of uranyl-oxalate complexation in solution, Polyhedron, 21, (2002), 1411-1420. Cited on pages: 128, 130, 229, 232, 233, 237, 239, 240, 241, 242, 569, 598, 663, 812, 814. [2002HUM/BER] Hummel, W., Berner, U., Curti, E., Pearson, F. J., Thoenen, T., Nagra/PSI chemical thermodynamic data base 01/01, Nagra Report NTB 02-16 and Universal Publishers/uPublish.com, Parkland, Florida, USA, (2002). Cited on pages: 536. [2002LOW/OGD] Lowe, J., Ogden, M., McKinnon, A., Parkinson G., Crystal growth of sodium oxalate from aqueous solution, J. Cryst. Growth, 237239, (2002), 408-413. Cited on pages: 152, 153. [2002MAK/MER] El Makhfouk, M., El Meray, M , Castetbon, A., Astruc, M., Effect of citrate, oxalate and pyrophosphate ligands on the electrochemical reduction of the uranyl ion in perchloric acid medium, Bull. Electrochem., 18, (2002), 63-70. Cited on pages: 228, 229, 813.
BIBLIOGRAPHY [2002NOW]
1029
Nowack, B., Environmental chemistry of aminopolycarboxylate chelating agents, Environ. Sci. Technol, 36, (2002), 4009-4016. Cited on page: 725.
[2002PET/POW] Pettit, L. D., Powell, K. J., IUPAC stability constants database, Academic Software, Timble, Otley, Yorkshire, U. K., (2002). Cited on page: 114. [2002RAO/JIA]
Rao, L., Jiang, J., Zanonato, P., di Bernardo, P., Bismondo, A., Garnov, A. Y., Complexation of uranium(VI) with malonate at variable temperatures, Radiochim. Ada, 90, (2002), 581-588. Cited on pages: 236, 609.
[2002SHA]
Sharma, K. R., Recycle of uranium in fission products, AlChE Symp. Ser., (2002), 710-716, Spring National Meeting, New Orleans, LA. Cited on page: 201.
[2002SOT]
Soto-Guerrero, J. A., Uranyl complexation with some dicarboxylic acids and uranium determination with MALDI-TOF mass spectrometry, Ph. D. Thesis, Masaryk University, Brno, (2002). Cited on page: 814.
[2002SZA/FIS]
Szabo, Z., Fischer, A., Redetermination of dipotassium diuranyl tris(oxalate) tetrahydrate, Acta Crystallogr., E58, (2002), i56-i58. Cited on page: 213.
[2002TIT/WIE]
Tits, J., Wieland, E., Bradbury, M. FL, Eckert, P., Schaible, A., The uptake of Eu(III) and Th(IV) by calcite under hyperalkaline conditions, Paul Scherrer Institut, PSI Report No. 02-03, (2002). Cited on pages: 511, 534, 535, 536, 538, 539, 540.
[2003BAE/BRA] Baeyens, B., Bradbury, M. H., Hummel, W., Determination of aqueous nickel-carbonate and nickel-oxalate complexation constants, J. Solution Chem., 32, (2003), 319-339. Cited on pages: 194, 197. [2003BOR/CHO] Borkowski, M., Choppin, G. R., Moore, R. C , Thermodynamic modeling of metal-ligand interactions in high ionic strength NaCl solutions: the Ni2+-oxalate system, Radiochim. Acta, 91, (2003), 169-172. Cited on pages: 194, 195, 196, 197.
1030
[2003CHO/RAI]
BIBLIOGRAPHY
Cho, H., Rai, D., Hess, N. J., Xia, Y., Rao, L , Acidity and structure of isosaccharinate in aqueous solution: a nuclear magnetic resonance study, J. Solution Chem., 32, (2003), 691-702. Cited on pages: 514, 515,517,519,522,524,531.
[2003EKB/EKB] Ekberg, S., Ekberg, C , Albinsson, Y., Characterization of aisosaccharinic acid: pKa-determination, Mater. Res. Soc. Symp. Proc, 757, (2003), 503-508. Cited on pages: 514, 515, 517, 518, 519. [2003FRO/WEI]
Frost, R. L., Weier, M. L., Thermal treatment of weddellite - a Raman and infrared emission spectroscopic study, Thermochim. Ada, 406, (2003), 221-232. Cited on page: 165.
[2003GUI/FAN]
Guillaumont, R., Fanghanel, T., Fuger, J., Grenthe, I., Neck, V., Palmer, D. A., Rand, M. Ff., Update on the chemical thermodynamics of Uranium, Neptunium, Plutonium, Americium and Technetium, Nuclear Energy Agency Data Bank, Organisation for Economic Co-operation and Development, Ed., vol. 5, Chemical Thermodynamics, North Holland Elsevier Science Publishers B. V., Amsterdam, The Netherlands, (2003). Cited on pages: 4, 6, 57, 58, 59, 62, 68, 69, 70, 71, 101, 102,218, 222, 224, 235, 240, 244, 266, 383, 532, 536, 596, 628, 656, 675, 706, 741, 777, 785, 786, 801, 802, 839, 845, 849.
[2003RAI/HES]
Rai, D., Hess, N. J., Xia, Y., Rao, L., Cho, H. M., Moore, R. C , Van Loon, L. R., Comprehensive thermodynamic model applicable to highly acidic to basic conditions for isosaccharinate reactions with Ca(II) and Np(IV), J. Solution Chem., 32, (2003), 665-689. Cited on pages: 514, 517, 520, 521, 522, 523, 524, 530, 531.
[2003SMI/MAR] Smith, R. M , Martell, A. E., Motekaitis, R. J., NIST Standard Reference Database 46: NIST Critically selected stability constants of metals complexes database, Version 7.0, National Institute of Standards and Technology, Gaithersburg, MD 20899, USA, (2003). Cited on page: 114. [2003VAL/MOL] Vallet, V., Moll, H., Wahlgren, U., Szabo, Z., Grenthe, I., Structure and bonding in solution of dioxouranium(VI) oxalate complexes: isomers and intramolecular ligand exchange, Inorg. Chem., 42, (2003), 1982-1993. Cited on page: 229.
BIBLIOGRAPHY
1031
[2003WAR/EVA] Warwick, P , Evans, N , Hall, T., Vines, S, Complexation of Ni(II) by a-isosaccharinic acid and gluconic acid from pH 7 to pH 13, Radiochim. Ada, 91, (2003), 233-240. Cited on pages: 525, 526. [2003ZHE/MAU] Zhernosekov, K. P., Mauerhofer, E., Getahun, G., Warwick, P., RQsch, F., Complex formation of Tb3+ with glycolate, D-gluconate and a-isosaccharinate in neutral aqueous perchlorate solutions, Radiochim. Ada, 91, (2003), 599-602. Cited on pages: 534, 537. [2004BON/MOO] Bontchev, R. P., Moore, R. C , Crystal structure of sodium isosaccharate, NaC 6 H n O 6 .H 2 O, Carbohydr. Res., 339, (2004), 801805. Cited on page: 519. [2004BOU/REI]
Boukhalfa, H., Reilly, S. D., Smith, W. H., Neu, M. P., EDTA and mixed-ligand complexes of tetravalent and trivalent plutonium, Inorg. Chem., 43, (2004), 5816-5823. Cited on page: 501.
[2004CRE/ROB] Crea, F., de Robertis, A., Sammartano, S., Medium and alkyl chain effects on the protonation of dicarboxylates in NaClaq and Et4NIaq at 25°C, J. Solution Chem., 33, (2004), 499-528. Cited on pages: 128, 131, 132, 157, 158. [2004EKB/EKB] Ekberg, S., Ekberg, C , Albinsson, Y., Characterization of aisosaccharinic acid: lactone and carboxylic conformations, J. Solution Chem., 33, (2004), 465-477. Cited on pages: 514, 518. [2004FRO/ADE]
Frost, R. L., Adebajo, M., Weier, M. L., A Raman spectroscopic study of thermally treated glushinskite - the natural magnesium oxalate dihydrate, Spedrochim. Ada, A60, (2004), 643-651. Cited on pages: 159, 160,562.
[2004FRO/WEI]
Frost, R. L., Weier, M. L., Thermal treatment of whewellite - a thermal analysis and Raman spectroscopic study, Thermochim. Ada, 409, (2004), 79-85. Cited on page: 165.
[2004LOO/GLA] Van Loon, L. R., Glaus, M. A., Vercammen, K., Stability of the ionpair between Ca2+ and 2-(hydroxymethyl)-3-deoxy-D-erythropentonate (a-isosaccharinate), J. Solution Chem., 33, (2004), 15731583. Cited on pages: 520, 521, 522, 523.
1032
BIBLIOGRAPHY
[2004MEN/APE] Menczel, B., Apelblat, A., Korin, E., The molar enthalpies of solution and solubilities of ammonium, sodium and potassium oxalates in water, J. Chem. Thermodyn., 36, (2004), 41-44. Cited on pages: 152, 153, 155, 156. [2004RAO/GAR] Rao, L., Garnov, A. Y., Rai, D., Xia, Y., Moore, R. C, Protonation and complexation of isosaccharinic acid with U(VI) and Fe(III) in acidic solutions: potentiomentric and calorimetric studies, Radiochim. Acta, 92, (2004), 575-581. Cited on pages: 515, 517, 518,519,528,529,537,538. [2004SCH/MAU] Schunk, A., Maurer, G., Activity of water in aqueous solutions of sodium citrate and in aqueous solutions of (an inorganic salt and citric acid) at 298.15 K, J. Chem. Eng. Data, 49, (2004), 944-949. Cited on pages: 325, 814, 815, 816, 817. [2004TIT/WIE]
Tits, J, Wieland, E , Bradbury, M. H., The effect of isosaccharinic acid and gluconic acid on the retention of Eu(III), Am(III) and Th(IV) by calcite, Appl. Geochem., (2004), submitted. Cited on pages: 532, 533, 534, 535, 536, 538, 539, 540.
[2004WAR/EVA] Warwick, P., Evans, N., Hall, T., Vines, S., Stability constants of uranium(fV)-a-isosaccharinic acid and gluconic acid complexes, Radiochim. Acta, 92, (2004), 897-902. Cited on pages: 526, 527. [2005BRO/CUR] Brown, P. L., Curti, E., Grambow, B., Chemical thermodynamics oj Zirconium, Nuclear Energy Agency Data Bank, Organisation for Economic Co-operation and Development, Ed., vol. 8, Chemical Thermodynamics, North Holland Elsevier Science Publishers B. V., Amsterdam, The Netherlands, (2005). Cited on page: 4. [2005GAM/BUG] Gamsjager, H., Bugajski, J., Gajda, T., Lemire, R. J., Preis, W., Chemical thermodynamics of Nickel, Nuclear Energy Agency Data Bank, Organisation for Economic Co-operation and Development, Ed., vol. 6, Chemical Thermodynamics, North Holland Elsevier Science Publishers B. V., Amsterdam, The Netherlands, (2005). Cited on pages: 4, 6, 29, 36, 57, 58, 59, 64, 68, 71, 361, 840, 841, 845, 847.
BIBLIOGRAPHY
1033
[2005KAN/GIL]
Kantar, C , Gillow, J. B., Harper-Arabie, R., Honeyman, B. D., Francis, A. J., Determination of stability constants of U(VI)-Fe(III)citrate complexes, Environ. Sci. Technol., 39, (2005), 2161-2168. Cited on page: 373.
[2005OLI/NOL]
Olin, A., Nolang, B., Ohman, L.-O., Osadchii, E. G., Rosen, E., Chemical thermodynamics of Selenium, Nuclear Energy Agency Data Bank, Organisation for Economic Co-operation and Development, Ed., vol. 7, Chemical Thermodynamics, North Holland Elsevier Science Publishers B. V., Amsterdam, The Netherlands, (2005). Cited on pages: 4, 6, 29, 36, 57, 58, 59, 65, 73, 76.
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List of cited authors
This chapter contains an alphabetical list of the authors of the references cited in this book. The reference codes given with each name correspond to the publications of which the person is the author or a co-author. Note that inconsistencies may occur due to variations in spelling between different publications. No attempt has been made to correct for such inconsistencies in this volume. Author Aaron, A. Aase, S. B. Abdel Razik, A. Abrahamson, S. G. Abu Attia, F. Abu El-Wafa, M. H. M. Ackermann, H. Adams, A. Adams, G. P. Adebajo, M. Adell, B. Adin, A. Afanas'ev, Y. A. Afonas'eva, T. V. Agarwal, J. S. Agre, V. M. Ahmed, F. R. Ahrland, S. Aizawa, S.-I. Al Mahamid, I. Alberto, R. Albinati, A. Albinsson, Y. Albourine, A. Alcock, N. W. Alderighi, L. Alekperov, A. I. Alekseeva, D. P.
Reference [53WAT/AAR] [98REE/WYG] [89ABD/ALI] [67ABR] [89ABD/ALI] [88GHA/MAN] [47SCH/ACK], [48SCH/ACK] [60ADA/SMI] [67ADA/CAR] [2004FRO/ADE] [40ADE] [70ADI/KLO] [79FRI/SYC] [81MEF/GRI], [96BES/KRO] [82RAO/AGA] [80AGR/SYS], [81SYS/AGR], [86SYS/AGR], [87LEO/FRI] [53AHM/CRU] [86AHR], [90AHR/DAH] [96AIZ/NAT] [98ALM/NOV] [90ALB/AND] [90ALB/AND] [2003EKB/EKB], [2004EKB/EKB] [97VAZ/ATB], [97VAZ/ATB2] [73ALC], [73ALC2], [73ALC3] [97BAR/CEC], [98ALD/BIA] [60ALE/ZHD] [73ZAI/ALE]
1035
1036
Author Al-Falahi, H. S. Ali, F. A. Alimarin, I. P. Allakhverdov, G. R. Allard, B. Alleman, T. G. Allen, J. A. Alluard Almond, M. J. Ambrovic, P. Amico, P. Amis, E. S. Amphlett, C. B. Ananthaswamy, J. Anderegg, G.
Anders, G. Anderson, B. F. Anderson, C. J. Anderson, G. M. Andreeva, M. A. Andrew, LA. Andryushin, V. G. Andryushkeeva, N. I. Anis, S. S. Antipina, V. A. Antonious, M. S. Antonovich, V. P. Apelblat, A.
Aragoni, M. C. Area, M. Archer, D. G. Arena, G. Argersinger, Jr., W. J. Armitage, G. M. Arrieta, J. M. Artyukhin, P. I. Asai, H. Ascanio, J.
LIST OF CITED A UTHORS
Reference [82HUA/ALF] [89ABD/ALI] [63ZOL/ALI] [88ALL/BOL] [97ALL/BAN] [57JOR/ALL] [53ALL/SCA] [1864 ALL] [98MOR/ALM] [85LAN/KRA] [79AMI/DAN], [81 AMI/DAN], [82AMI/DAN] [69SHA/AMI] [52AMP/DAV] [84ANA/ATK] [54SCH/GUT], [57SCH/AND], [63AND], [64AND], [67AND], [67BOT/AND], [70AND/MAL], [70AND/MAL2], [71AND/WEN], [75AND/POD], [76AND], [76AND/MAL], [77AND], [81BUE/AND], [83AND/GAS], [90ALB/AND], [92AND], [99RAR/RAN] [75NEB/AND] [83BAK/BAK] [96SUN/AND] [91 AND/CAS] [58FOM/VOR] [05FOO/AND] [84 AND/KIR] [84KHA/AND] [85RIZ/ANT] [72NIK/ANT] [85RIZ/ANT] [78NAZ/ANT] [86APE], [87APE/MAN], [89MAN/APE], [90APE/MAN], [90DOB/HEP], [91 APE/BAR], [93APE], [95APE/DOV], [95APE/DOV2], [2004MEN/APE] [96ARA/ARC] [96ARA/ARC] [90ARC/WAN], [99ARC] [78ARE/MUS], [80ARE/CAL], [83ARE/MUS], [90ARE/CON] [51BAR/ARG] [72ARM/DUN], [73ARM/DUN] [95CHI/DOM] [59GEL/ART], [59MOS/ART] [62ASA/MOR] [70ASC/BRI]
LIST OF CITED A UTHORS
Author Askarieh, M. M. Aslin, E. Astakhov, K. V. Astapovich, V. I. Astruc, M. Atbir, T. Aterburn, J. B. Atkinson, G. Atzei, D. Aubry, M. Aumeras, M. Avdeef, A. Axt, H. Azab, H. A. Aziz, A. Azkal, R. S. A. Babko, A. K. Bach, R. O. Baes, Jr., C. F. Baetsle, L. Baeyens, B. Bagawde, S. V. Baggio, R. Bagmanova, A. G. Bailar, Jr., J. C. Bailey, S. M. Baker, E. N. Baker, H. M. Bald, A. Baldas, J. Balek, V. Ban, T. Banaszak, J. E. Banks, W. H. Bansal, B. M. L. Banwart, S. A. Banyai, I. Bapna, R. K. Barbara, P. Barczynska, J. Bard, A. J. Barkhanova, N. N. Barnes, J. C. Barnett, B. L. Barney II, J. E.
Reference [2000ASK/CHA] [77HED/OLI] [53AST/VER] [61GRI/AST] [2002MAK/MER] [97VAZ/ATB], [97VAZ/ATB2] [2001BER/BAU] [84ANA/ATK] [93ATZ/FIL] [76LAG/AUB] [27AUM2] [82AVD/KEA] [62AXT/HAN] [92AZA/ELN], [93AZA/HAS] [68AZI/LYL] [92AZA/ELN], [93AZA/HAS] [57BAB/DUB], [60BAB/DUB], [61BAB/SHT] [47SCH/WIL] [76BAE/MES] [62BAE/BEN] [2003BAE/BRA] [76BAG/RAM3], [79KUS/GAN] [97BAG/GAR], [97BAG/GAR2] [98SAL/BOO] [54SCH/LAI] [82WAG/EVA] [83BAK/BAK] [83BAK/BAK] [93BAL/BAR] [88BAL/COL], [90BAL/COL], [91BAL/COL] [62STA/BAL] [88TOG/KOJ] [98REE/WYG] [31 BAN/RIG] [64BAN/SHA] [97ALL/BAN] [92BAN/BLI], [2001LAK/BAN] [91 BAP] [97BAR/CEC] [93BAL/BAR] [85BAR/PAR] [72BAR/FRI], [73BAR/DYA], [73BAR/FRI], [80AGR/SYS], [81SYS/AGR], [81VAS/VAS] [70BAR/BRI] [79BAR/UCH] [51BAR/ARG]
1037
1038
Author Barres, M. Bartenev, S. A. Barthel, J. Bartos, M. Bartusek, M. Baruah, S. D. Baskin, Y. Basset, H. Basyrova, R. R. Bates, K. R. Bates, R. G. Baturin, N. A. Baucke, F. G. K. Bauer, E. Bauer, R. F. Baumann, E. W. Baybarz, R. D. Beck, M. T. Becker, F. Becker, G. Beckham, K. R. Beckman, J. F. Becraft, K. A. Begun, G. M. Beiriger, J. M. Bell, J. M. Beloedova, T. V. Belomestnykh, V. I. Belonogova, A. K. Beltrain, D. Beltran, D.
Beltran-Porter, A. Beltran-Porter, D. Belyaeva, V. K. BeMiller, J. N. Ben-Bassat, A. H. I. Benezeth, P. Bengsch, E. Bennema, P.
LIST OF CITED A UTHORS
Reference [73BAR/RED], [75BAR/DUB] [63PAR/BAR] [61BAR/BEC], [91APE/BAR] [88MEL/BAR] [70BAR2], [75VOT/BAR], [77REB/BAR], [80MIK/HAV], [83BAR/SUS], [86BAR/HAV] [96DEB/BAR] [64BAS/KRI] [34BAS] [91 SAL/BOO] [2001JAN/HAR] [48PIN/BAT], [49BAT/PIN], [73BAT], [83COV/BAT] [91GRI/BAT] [79BAU] [2001BER/BAU] [65BAU/SMI] [74BAU] [69DEL/BAY] [59BEC/GOR], [59BEC/GOR2], [60BEC/GOR], [90BEC/NAG] [61BAR/BEC] [34BEC/ROT] [93BEC/GRO] [40VOS/BEC] [98ALM/NOV] [92NGU/BEG] [91BEI/GRA] [31CHA/BEL] [72BEL/KAZ] [67SHC/BEL], [67SHC/BEL2], [68SHC/BEL], [69SHC/BEL] [75VAS/BEL], [76VAS/BEL], [76VAS/BEL2], [76VAS/BEL3], [82VAS/BEL] [81BEL/DRI] [82BEL/ESC], [84ESC/FUE], [84MOS/GAL], [86COR/DRI], [86DRI/COR], [86GOM/JAM], [89COR/DRI], [92SAP/COR] [86ESC/FUE] [86ESC/FUE], [88CAM/MUN] [58ERM/BEL], [59ERM/BEL2], [60RYA/ERM], [64RYA/MAR] [63WHI/BEM] [58BOB/BEN] [97BEN/PAL] [62BAE/BEN] [95STR/GRI]
LIST OF CITED A UTHORS
Author Benoit, R. L. Benrath A. Bera, A. M. Berger, J. A. Berger, R. L. Bernard, J. G. Berner, U. Bernkopf, M. F. Berro, C. Bersin, T. Berthelot, M. Berthon, G. Bertin, F. Besse, G. Bessonov, A. A. Bevington, P. R. Bharadwaj, P. K. Bhat, A. N. Bhat, T. R. Bhattacharya, P. K. Biader Ceipidor, U. Bianchi, A. Bickley, R. I. Bidoglio, G. Biedermann, G. Biernat, J. Bigot, S. Birch, O. G. Bisbee, H. Bismondo, A. Biswal, U. K. Bjerrum, J. Bjerrum, N. Blaquiere, C. Blauenstein, P. Blazejowski, J. Blixt, J. Blokhin, V. I. Blom, N. S. Blumenthal, W. B. Bobtelsky, M. Bochkarev, G. S. Bohigian, Jr., T. A.
Reference [68DEN/MEI] [42BEN] [87BER/VAS] [70BES/CHA] [85MAR/EVA], [86MAR/EVA] [2001BER/BAU] [2002HUM/BER] [84BER/KIM] [73DEY/BER] [57BER/MUL] [1875BER3] [78BER/MAY], [87BLA/BER], [89VEN/BER] [77DUC/BER] [70BES/CHA] [91GRI/BES], [96BES/KRO] [69BEV] [78CHA/BHA] [69MAN/BHA] [63BHA/KRI], [64BHA/KRI], [65BHA/RAD], [67BHA/KRI] [90ULL/BHA] [90BIA/BUC], [92BIA/BUC] [98ALD/BIA] [91BIC/EDW] [95SIL/BID] [75BIE] [81URB/BIE], [81URB/BIE2] [87JOA/BIG] [36VOS/ISR] [01RIC/MCC] [72MAG/BIS], [73POR/PAO], [2002RAO/JIA] [89DAS/DAS] [57BJE/SCH] [29BJE/UNM] [87BLA/BER] [75AND/POD], [81BUE/AND] [95RAK/SKU] [92BAN/BLI] [70GEL/BLO2], [76MEF/BLO] [81BLO/KAN] [58BLU] [27BOB/MAL], [45BOB/JOR], [54HEI/BOB], [57BOB/RAF], [58BOB/BEN] [57ZAI/SHU2], [62ZAI/BOC3], [64KHA/BOC2], [64KHA/ZAI2], [64ZAI/BOC2], [65ZAI/BOC] [60BOH/MAR]
1039
1040
Author Bokelund, H. Boldyrev, V. V. Bolotova, G. T. Bolshakov, K. A. Bol'shakov, K. A. Bolyanovskii, A. D. Bonavita, M. Bond, A. H. Bontchev, R. P. Boos, G. A. Borggaard, O. K. Borkowski, M. Borodin, V. A. Borras-Almenar, J. J. Bosch, W. Bosch-Reig, F. Bosia, P. D. Bottari, E. Botts, J. Bouhdillon, R. Bouhlassa, S. Boukhalfa, H. Boulanger, J. Boulet, M. Bourderie, L. Bouzat, G. Bradbury, M. H. Bradley, D. J. Bradley, R. S. Braibanti, A. Brandau, E. Brecevic, L. J. Bressat, R. Bricker, C. E. Briggs, T. N. Brighli, M. Brillard, L. Brintzinger, H. Bristow, P. A. Brito, F. Brits, A. G. Britton, H. T. S.
LIST OF CITED A UTHORS
Reference [83CHO/BOK] [95ISU/TAR] [85MIK/LOB] [58BOL/KOR] [57BOL/KOR3], [57BOL/KOR4] [88ALL/BOL] [71ROR/MAC] [99MIZ/BON], [2001CHO/BON] [2004BON/MOO] [86SAL/BOO], [89SAL/BOO], [91 SAL/BOO], [98SAL/BOO], [98SAL/BOO2] [77CHR/BOR] [96BOR/LIS], [99BRO/POK], [2000BOR/CHO], [2001BOR/MOO], [2001CHO/BON], [2003BOR/CHO] [88VAS/BOR] [95BOR/COR] [28KOL/BOS] [69BOS/MAR] [78USS/BOS] [65BOT/CIA], [67BOT/AND], [73BOT/VIC], [73BOT/VIC2], [75BOT] [65BOT/CHA] [13HAR/DRU] [81BOU], [84BOU/GUI], [84BOU/PET] [2004BOU/REI] [36BOU], [36BOU2] [60BOU/MAR] [71GUI/BOU] [91BOU/PHI] [2002TIT/WIE], [2003BAE/BRA], [2004TIT/WIE] [79BRA/PIT] [53BRA/COT] [70BRA/LEP] [68EBE/SCH] [84BRE/SKR] [63BRE/CLA2], [64BRE/CLA] [57BRI/PAR] [75BRI/STU] [84BRI/LAG] [74HUB/HUS], [76HUB/HUS] [42BRI/HES], [43BRI/THI] [70BAR/BRI] [70ASC/BRI], [84MED/DOM], [95CHI/DOM] [76BRI/ELD], [76BRI/ELD2], [76BRI/ELD3], [77BRI/ELD] [36BRI/JAR]
LIST OF CITED A UTHORS
1041
Author
Reference
Bronikowski, M. G.
[98POK/BRO], [99BRO/POK], [2001BOR/MOO], [2001CHO/BON] [22BRO], [22BRO2] [77BRO/PET] [82AVD/KEA] [2005BRO/CUR] [75BRU/KIR] [69BRU/NAN] [86BRU], [97ALL/BAN] [70GRE/BRY2] [90BIA/BUC], [92BIA/BUC] [96BES/KRO] [67BUD/HAA] [2005GAM/BUG] [95KIS/BUG], [2000BUG/KIS] [84VAS/GRE] [70GEL/BLO2] [89ROS/DIT] [90ROS/REI] [74BUL] [79BUL/SAC] [81BUE/AND] [98BUR/FAH] [67BUR/POR] [81 BUR/FIN] [87THE/BUS] [92POG/KAP] [74BYK/PET2], [88BYK/KUZ2] [2000LEN/CAB] [51 CAB] [83CAC/CHO], [87CAC/NEC], [89STO/CAC] [08KOP/CAH] [63KYR/CAL], [64CAL], [64CAL/KYR] [80ARE/CAL] [88CAM/MUN], [93ATZ/FIL] [64CAM/OST] [75DEY/CAN] [38CAN/KIB] [76NOW/CAN] [92CAP], [93GIF/VIT2], [94CAP/VIT], [95CAP/VIT] [86CAP/ROB] [98MOR/ALM] [56CAR/STA] [67CAR/MAR], [68CAR/MAR], [70KUG/CAR] [52CAR/MAR], [53CAR/MAR], [54CAR/MAR] [98ALM/NOV]
Bronsted, J. N. Brookes, G. Brown, J. A. Brown, P. L. Briicher, E. Brunetti, A. P. Bruno, J. Bryzgalova, R. V. Bucci, R. Budantseva, N. A. Budesinsky, B. Bugajski, J. Buglyo, P. Bugrova, N. Y. Bukhtiyarova, T. N. Buklanov, G. V. Buklanov, V. Bulatov, M. I. Bulos, B. A. Bttrgi, H. B. Burnett, M. G. Burney, G. A. Burns, J. R. Bush, J. F. Butina, E. A. Bykhovskii, D. N. Cabaniss, S. E. Cabell, M. J. Caceci, M. S. Cahn, M. Caletka, R. Cali, R. Caminiti, R. Campi, E. Canals, E. Cannan, R. K. Canonne, J. Capdevila, H. Capone, S. Cardin, C. J. Care, R. A. Carey, G. H. Carini, F. F. Carpenter, S. A.
1042
Author Carr, J. D. Carson, A. S. Caruso, T. Casan-Pastor, N. Casassas, E. Case, G. N. Cassol, A. Castet, S. Castetbon, A. Castro, I. Cauchetier, P. Cecconi, F. Cerda, V. Cervone, E. Chabard, J. L. Chackraburtty, D. M. Chakravorti, M. C. Chamberlin, R. M. Chambers, A. V. Chandel, C. P. S. Chander, K. Chang, C. A. Chang, C.-T. Chapin, E. M. Chappel, F. P. Charan Das, P. Charkin, D. O. Charles, R. G. Charles, Y. Charushnikova, I. A. Chashin, A. Chatterjee, K. P. Chaturvedi, G. K. Chaubal, A. M. Chawla, K. L. Chechetkin, R. M. Chemotti, Jr., A. R. Chen, J.-F. Chen, M. Chen, X.-M. Chen, Y.-T. Cheneau, G. Cheng, K. L. Chernyaev, 1.1.
LIST OF CITED A UTHORS
Reference [73CAR/SWA], [75CAR/SWA] [67ADA/CAR] [2000FER/IUL], [2000VAS/CAR], [2002CUR/TEN] [86GOM/JAM] [81CER/CAS] [76MCD/KEL] [72MAG/BIS] [91 AND/CAS] [2002MAK/MER] [88CAS/FAU] [73CAU/GUI], [75CAU/GUI] [97BAR/CEC] [81CER/CAS] [62FUR/CER] [70BES/CHA] [63CHA], [72JAY/CHA], [73JAY/DIA], [75JAY/SIN] [78CHA/BHA] [2001BER/BAU] [2000ASK/CHA] [82SAC/CHA], [83GUP/CHA] [94HAS/KHE], [95HAS/KHE] [94KUM/CHA] [71CHA/LIA], [71CHA/LIA2] [31CHA/BEL] [58CHA/HOA] [73CHA/RAO] [98MAR/SHL] [54CHA2] [98MOT/CHA] [96GRI/CHA2], [97GRI/CHA], [98CHA/KRO] [65BOT/CHA] [24CHA/DHA] [77JAI/KUM], [78JAI/SHA], [79KUM/CHA], [80MIS/MIT] [79MAY/CHA] [97DAH/CHA2] [68PRI/FAZ] [82AVD/KEA] [96CHO/CHE], [99CHE/CHO], [2001BOR/MOO], [2001CHO/BON] [93CHE/REI] [88LIN/GU] [87LIN/GU], [88LIN/GU], [90LIN/GU] [71CHE2] [77PAS/WHI] [61CHE/GOL], [66CHE]
LIST OF CITED A UTHORS
Author Chhapru, G. C. Chhotray, N. Chinea, E. Chinnusamy, A. Chiozzone, R. Chis, E. Chistyakova, G. V. Chmutova, M. K. Cho, H. Cho, H. M. Choppin, G. R.
Christensen, H. H. Christensen, J. J. Christie, G. L. Chu, S.-K. Chubakova, E. I. Chuklanova, E. B. Chulkaratana, S. Chupakhina, L. E. Churikova, I. M. Churney, K. L. Ciano, M. Ciavatta, L.
Claudel, B. Clayton, W. J. Clemente, M. Cleveland, J. M. Coburn, J. Colani, A. Cole, A. Colmanet, S. F. Comite International des Poids et des Mesures
1043
Reference [83CHH/GOP] [82RAO/AGA] [84MED/DOM], [95CHI/DOM], [97BAR/CEC] [86RAO7PIU] [98GON/KRE] [80MAC/CHI] [81VAS/VAS], [85VAS/KOZ], [86VAS/KOZ], [87VAS/KOZ], [90KOZ/VAS] [59ERM/BEL2] [2003CHO/RAI] [2003RAI/HES] [71OLI/CHO], [76CHO/UNR], [77CHO/GOE], [77GRI/GOE], [83CAC/CHO], [83CHO/BOK], [84RAO/CHO], [86CHO/DAD], [87CAC/NEC], [89RIZ/SUL], [89STO/CAC], [94ERT/MOH], [95LIS/CHO], [96BOR/LIS], [96CHO/CHE], [96CHO/ERT], [97POK/CHO], [98POK/BRO], [99BRO/POK], [99CHE/CHO], [99MIZ/BON], [2000BOR/CHO], [2001BOR/MOO], [2001CHO/BON], [2003BOR/CHO] [77CHR/BOR] [67CHR/IZA], [69CHR/IZA] [91CHR/CUM] [66MOE/CHU] [73CHU/SKO2] [95MIS/SER] [71CHU/REE] [95ISU/TAR] [72KER/CHU], [78KER/CHU] [82WAG/EVA] [89NES/HOF] [65BOT/CIA], [70CIA/GRI], [80CIA], [87CIA/IUL], [88CIA], [90CIA], [99CIA/IUL], [2000CIA/IUL], [2001 CIA/TOM], [2001CIA/TOM2] [63BRE/CLA2], [64BRE/CLA] [37CLA/VOS] [2000FER/IUL] [79CLE] [75FIE/COB] [16COL], [16COL2], [17COL], [17COL2], [25COL], [34COL] [82HUA/ALF] [87COL/WIL], [88BAL/COL], [90BAL/COL], [91BAL/COL] [69COM]
1044
Author Condike, G. F. Connick, R. E. Contescu, A. Contescu, C. Contino, A. Conway, B. E. Cook, G. P. Cook, Jr., C. M. Coombes, L. C. Cooper, J. N. Coops, J. Coppens, P. Corbetta, M. Cordes, S. M. Cordfunke, E. H. P. Coronado, E.
Corrie, A. M. Cosgrove, A. Costa-Bauza, A. Cotson, S. Couderc, J.-P. Coutinho, P. Couturier, Y. Covington, A. K. Cox, E. G. Cox, J. D. Craggs, A. Crea, F. Creamer, L. K. Crisponi, G. Cristiani, F. Cromack, Jr., K. Cromer, D. T. Cross, J. E. Crow, D. R. Cruickshank, D. W. J. Cruywagen, J. J. Cucinotta, V. Cummins, D. Cunningham, B. B. Curely, J. Curini, R. Curti, E. Cvitas, T.
LIST OF CITED A UTHORS
Reference [69CON/MAR] [49CON/MCV], [51CON/REA], [54CON], [56ZIE/CON] [96SCH/CON] [96SCH/CON] [90ARE/CON] [66CON/VER] [58COO/FOR] [51COO/LON], [58COO/LON] [70COO/MAR] [78COO/WOO] [26VER/HAR] [69COP/SAB], [69COP/SAB2] [93MAZ/DAN] [69SUB/COR] [90COR/KON2] [84MOS/GAL], [86COR/DRI], [86DRI/COR], [86GOM/JAM], [89COR/DRI], [92SAP/COR], [95BOR/COR] [76COR/WAL] [82JAC/COS] [92VEL/SOH], [93SOH/COS] [53BRA/COT] [76LAG/AUB] [92TUR/SAN] [70COU/FAU] [83COV/BAT] [52COX/DOU] [89COX/WAG] [79CRA/MOO] [2004CRE/ROB] [75PEA/CRE] [96ARA/ARC] [96ARA/ARC] [77GRA/CRO] [56STA/CRO3] [89CRO/EWA] [88CRO] [53AHM/CRU] [83CRU/HEY], [86CRU/HEY], [86CRU/WAT] [79AMI/DAN], [81CUC/DAN] [91CHR/CUM] [54CUN], [65FUG/CUN] [86DRI/COR], [95BOR/COR] [2002CUR/TEN] [2002HUM/BER], [2005BRO/CUR] [93MIL/CVI]
LIST OF CITED A UTHORS
Author Da Costa, E. Da Silva, J. J. R. F. Dabos-Seignon, S. Dadgar, A. Dahale, N. D. Dahlgren, A. Dalidovich, S. V. Dallavalle, F. Dalman, L. H. D'Angelantonio, M. Daniel, F. B. D. Daniel, S. R. Daniele, P. G.
Daniele, S. D'Ans, J. Darken, L. S. Das, B. B. Dash, U. N. Dass, N. N. Datta, S. P. David, D. J. Davidge, O. T. Davidson, N. Davies, C. W. Davies, G. Davis, J. A. Davis, J. M. De Bruin, H. J. De Filippo, D. De Graaf, W. De Jongh, L. J. De Kruif, C. G. De Lorenzi, A. De Paoli, G.
1045
Reference [34HAS/MCL] [68SIL/SIM], [69SIL/SIM], [70SIL/SIM], [70SIL/SIM2], [83LUR/GON], [84GON/MOT] [90RIZ/NEC] [86CHO/DAD] [97DAH/CHA2] [90AHR/DAH] [85DAL/GUS] [70BRA/LEP] [37DAL] [89NES/HOF] [2000ASK/CHA] [84REE/DAN] [75DAN/OST], [76DAN/OST], [79AMI/DAN], [80DAN/RIG], [81 AMI/DAN], [81CUC/DAN], [81DAN/RIG], [82AMI/DAN], [82DAN/MAR], [83DAN/RIG], [83DAN/RIG2], [84DAN/OST], [85DAN/RIG], [85DAN/ROB], [85DAN/SON], [88DAN/OST], [90DAN/ROB], [90DAN/ROB2], [92DAN/ROB] [93MAZ/DAN] [77ANS/SUR] [41DAR] [89DAS/DAS] [88DAS/KAL], [89DAS/DAS], [96DAS/MOH] [96DEB/BAR] [65TAT/GRZ], [70GRZ/TAT] [64DAV] [52AMP/DAV] [60YAM/DAV] [27DAV], [31BAN/RIG], [32MON/DAV], [53DAV/HOY], [55DAV/HOY], [62DAV] [70DAV/WAT] [78DAV/LEC] [78RAJ/MAI], [81RAJ/MAI] [62BRU/KAI] [93ATZ/FIL] [82KRU/MIL] [86DRI/COR], [89COR/DRI] [82KRU/MIL] [93MAZ/DAN] [73POR/PAO]
1046
Author De Robertis, A.
De Silveira, A. A. De Stefano, C.
De Tommaso, G. De Wit, H. G. M. Deakin, S. Deb, N. Debayle, P. Decnop-Weever, L. G. Decock, P. Deganello, S. Delaplane, R. G. Delgado, R. Delle Site, A. Dellien, I. Deneux, M. Derissen, J. L. Desnoyers, J. E. Devi, C. S. Devyatov, F. V. Dewaele, D. DeWitt, R. Dey, A. K. Deyrieux, R. Dhar, N. R. Di Bernardo, P. Di Giacomo, P. Diamond, H. Dias, R. M. A. Dinsdale, A. T. Dischino, D. D. Dittner, P. E. Dittrich, S. Dmitrieva, N. G. Do Carmo Figueira, M. Dobrogowska, C. Dobrynina, N. A. Dodgson, J. W. Dolgashova, N. V.
LIST OF CITED A UTHORS
Reference [85DAN/ROB], [85ROB/STE], [86CAP/ROB], [88DAN/OST], [90DAN/ROB], [90DAN/ROB2], [90ROB/STE], [92DAN/ROB], [92ROB/STE], [95ROB/GIA], [95ROB/GIA2], [99ROB/STE], [2000ROB/STE], [2004CRE/ROB] [1820DUB/SIL] [85ROB/STE], [86CAP/ROB], [90DAN/ROB], [90DAN/ROB2], [90ROB/STE], [92ROB/STE], [99ROB/STE], [99STE/GIA], [2000ROB/STE], [2001STE/FOT] [2001 CIA/TOM], [2001CIA/TOM2] [82KRU/MIL] [09DEA/SCO] [96DEB/BAR] [91SIN/YEB] [83KRA/DEC] [95KIS/BUG], [2001LAK/BAN] [81DEG/PIR] [69COP/SAB2] [97DEL/FIG], [97DEL/QUI] [69DEL/BAY] [77DEL2] [68DEN/MEI] [74DER/SMI], [78DER/SMI] [66CON/VER] [91RED/DEV] [84SAL/DEV] [95KIS/BUG] [60WAT/DEW] [76YAD/GHO] [70DEY/PEN], [73DEY/BER], [75DEY/CAN] [24CHA/DHA] [2002RAO/JIA] [95ROB/GIA] [52SAT/DIA] [73JAY/DIA] [91 DIN] [94KUM/CHA] [76MCD/KEL] [89ROS/DIT] [82VAS/VAS] [97DEL/FIG] [90DOB/HEP] [68SPI/MAR], [89SVE/DOB], [92MIL/DOB] [11DOD] [63FRI/VER]
LIST OF CITED A UTHORS
Author Dolidze, M. S. D'Olieslager, W. Dollimore, D. Domalski, E. S. Domeneghetti, C. Dominguez, S. Dornberger, E. Dorough, G. D. Dos Santos, M. M. C. Dougill, M. W. Dov, M. Drabkina, L. E. Drever, J. I. Drew, M. G. B. Dreyer, R. Drillon, M. Drugman, J. Du Toit, J. Dubes, J. P. Dubois, F. DuBois, L. Dubovenko, L. I. Due, G. Dudakov, V. G. Duffield, J. R.
Diiker, A. Dunitz, J. D. Dunsmore, H. S. Durst R. A. Dutt, N. K. Dutta, R. L. Duval, C. Duyckaerts, G. Dvofakova, E. Dyatlova, N. M.
Dzombak, D. A. Dzyubenko, V. I. Ebelmen, M. Eberle, J.
Reference [75KOR/PAT] [71OLI/CHO] [87DOL] [72DOM], [96DOM/HEA] [80TAZ/DOM] [84MED/DOM], [95CHI/DOM] [86KAN/KIM] [58DOR] [92TUR/SAN] [52COX/DOU] [95APE/DOV], [95APE/DOV2] [58DRA/MOS2], [58GEL/DRA2], [58GEL/DRA3], [59DRA/GEL] [82DRE] [98MOR/ALM] [89ROS/DIT], [90ROS/REI] [81BEL/DRI], [82BEL/ESC], [84MOS/GAL], [86COR/DRI], [86DRI/COR], [89COR/DR1] [13HAR/DRU] [91JAC/TOI] [75BAR/DUB] [1820DUB/SIL] [73FIN/ROT] [57BAB/DUB], [60BAB/DUB] [77DUC/BER] [73DUD/SHT], [74DUD/SHT], [74DUD/SHT2], [76DUD] [82HUA/ALF], [84DUF/MAY], [87FIN/DUF], [87RAY/DUF], [90FIN/DUF], [91CHR/CUM], [91DUF/MAR] [2002HAG/DUK] [47DUN/ROB] [72ARM/DUN], [73ARM/DUN] [83COV/BAT] [57DUT/SUR] [56DUT/RAY] [47PEL/DUV] [75MER/GAT], [76GAT/MER], [78MER/GAT] [81SIR/KAL] [69FRI/DYA], [72BAR/FRI], [73BAR/DYA], [73BAR/FRI], [81SYS/AGR], [86SYS/AGR], [87LEO/FRI] [90DZO/MOR], [98EVA/DZO] [88NIK/DZY] [1842EBE] [86VIO/ROD]
1047
1048
Author Eberle, S. H. Eckert, P. Edwards, H. G. M. Efremov, V. A. Egorov, A. M. Egunov, V. P. Eichelberger, L. Ekberg, C. Ekberg, S. Ekelund, R. Ekstrom, L.-G. El Dessouky, M. A. El Ezaby, M. S. El Makhfouk, M. El Meray, M. Elesin, A. A. Ellenbogen, E. El-Nady, A. M. El-Nady, A.-B. M. Emsley, J. Enomoto, H. Ephraim, J. H. Eremenko, V. I. Ermakov, A. N. Ermakova, T. A. Ermolaev, N. P. Erten, H. N. Escriva, E. Evanko, C. R. Evans, D. A. Evans, D. M. Evans, N. Evans, R. Evans, W. H. Evans, W. J. Evenson, L. Evseev, A. M. Evstaf eva, O. N. Evteev, L. I. Evtikova, G. A. Ewart, F. T. Fabian, I. Faharty, C.
LIST OF CITED A UTHORS
Reference [68EBE/SCH], [70EBE/WED], [71EBE/PAU], [72EBE/MOA] [2002TIT/WIE] [91BIC/EDW] [80AGR/SYS] [84REK/GAL] [89VAS/KAL], [90VAS/KAL2] [34HAS/MCL] [2003EKB/EKB], [2004EKB/EKB] [2003EKB/EKB], [2004EKB/EKB] [79LIE/EKE] [79EKS/OLI] [79ELE/ELD] [79ELE/ELD] [2002MAK/MER] [2002MAK/MER] [71ELE/ZAI] [52ELL2] [93AZ A/HAS] [92AZA/ELN] [81 EMS/JON] [89ISH/ENO] [97ALL/BAN] [71VAS/KOC2] [58ERM/BEL], [59ERM/BEL2], [60RYA/ERM], [64RYA/MAR], [66ERM/MAR] [57BOL/KOR3] [62KRO/ERM], [63ERM/KRO], [67ERM/KRO2] [94ERT/MOH], [96CHO/ERT] [82BEL/ESC], [84ESC/FUE], [86ESC/FUE] [98EVA/DZO] [87FIN/DUF] [62EVA/HOA] [2003WAR/EVA], [2004WAR/EVA] [58IRV/SHE] [82WAG/EVA] [85MAR/EVA], [86MAR/EVA] [63WAT/TRO] [87THU/KUP], [88EVS/SMI], [89SVE/DOB], [92MIL/DOB] [64KHA/ZAI2] [58GRI/PET2], [59GRI/PET], [60GRI/PET] [66ERM/MAR] [89CRO/EWA] [2000BUG/KIS] [98BUR/FAH]
LIST OF CITED A UTHORS
Author Falin, V. A. Fallon, L. D. Fanghanel, T. Far, G. Farrar, J. M. Faucherre, J. Faus, J. Fazlullina, L. S. Fedorov, V. A. Feistel, G. R. Feldman, I. Felmy, A. R. Feltz, A. Fernelius, W. C. Ferri, D. Ferrus, R. Field, T. B. Filippov, E. L. Filippova, T. V. Fina, E. Findlow, J. A. Finlayson, B. Fischer, A. Fischer, R. FitzGerald, P. L. Flottmann, F. Flowers, G. C. Flyantikova, G. V. Folgado, J. V. Follner, H. Fomin, V. V. Font-Altaba, M. Fontanella, C. Font-Bardia, M. Foote, H. W. Foreman, J. K. Foti, C. Francesconi, L. C. Francis, A. J. Francis, K. E. Frankova, G. Fredholm, H. Free, S. J. Freeman, R. D.
Reference [88ALL/BOL] [39HAR/FAL] [97KON/FAN], [2003GUI/FAN] [85GRA/FAR] [69KUR/FAR] [70COU/FAU] [88CAS/FAU] [68PRI/FAZ] [77FED/KHO] [65MOE/MAR] [60FEL/NOR] [98RAI/FEL] [89FEL/TOP] [77FER] [83FER/GRE], [85FER/GRE], [98FER/MAN], [2000FER/IUL] [65MOE/MAR] [74FIE/MCC], [75FIE/COB] [68GOR/FIL] [86POL/FIL] [98FER/MAN] [87FIN/DUF], [90FIN/DUF] [73FIN/ROT], [73FIN/SMI], [81BUR/FIN] [60SCH/FIS], [2002SZA/FIS] [67FIS2] [2000ASK/CHA] [28FLO] [81HEL/KIR] [74NAZ/FLY2], [78FLY/KOR] [86ESC/FUE] [70FOL/KAN] [56FOM/KAR], [58FOM/VOR] [93FON/SOL] [2000FER/IUL], [2000VAS/CAR], [2002CUR/TEN] [93FON/SOL] [05FOO/AND], [33FOO/VAN] [57FOR/SMI], [57FOR/SMI2], [58COO/FOR] [95ROB/GIA], [97FOT/GIA], [99ROB/STE], [2000ROB/STE], [2001STE/FOT] [94KUM/CHA] [2005KAN/GIL] [61MAN/FRA] [97SOH/KRO] [34FRE] [2000BOR/CHO] [84FRE]
1049
1050
Author Freiser, H. Freitag, E. Fridman, A. Y. Fridman, Y. D. Fried, M. Friedman, D. Friedman, H. A. Friedman, S. Fritz, J. S. Fromage, F. Frost, R. L. Fuentes, J. Fuertes, A. Fuger, J. Funahashi, S. Furlani Donda, A. Furlani, C. Furnival, C. Furusawa, M. Gtab, S. Galateanu-Titieni, M., Gable, H. S. Gadenne, E. Gajda, T. Gal'chenko, G. L. Gallagher, P. K. Galy, J. Gambino, D. Gammons, C. H. Gampp, H. Gamsjager, H. Gandhe, S. P. Gane, R. Garcia Montelongo, F. Garcia, M. C. Gardhammar, G. Gardner, G. L. Garland, M. T. Garnov, A. Y. Garribba, E. Garvin, D. Gasche, W. Gatez, J. M.
LIST OF CITED A UTHORS
Reference [69SUB/COR], [78STA/FRE] [51SCH/FRE] [69FRI/DYA], [72BAR/FRI], [73BAR/DYA], [73BAR/FRI], [79FRI/SYC], [80AGR/SYS], [81SYS/AGR], [86SYS/AGR], [87LEO/FRI] [63FRI/VER], [68FRI/VER], [69FRI/DYA] [81NAS/MUL] [58HEI/FRI] [85FRI] [75FRI/PIZ] [77MOY/FRI] [87JOA/BIG] [2003FRO/WEI], [2004FRO/ADE], [2004FRO/WEI] [89FUE/REB], [89FUE/REB2] [84ESC/FUE], [86COR/DRI], [86ESC/FUE] [58FUG], [65FUG/CUN], [92FUG/KHO], [92GRE/FUG], [2001LEM/FUG], [2003GUI/FAN] [96AIZ/NAT] [63FUR/GIU] [62FUR/CER] [82HUA/ALF] [2001 TAN/FUR] [92GLA/HUL], [93GLA/MAJ] [72MAN/VAR] [31 GAB] [27SCH/GAD] [2005GAM/BUG] [84REK/GAL] [96KOC/GAL] [84MOS/GAL], [85LEC/MOS], [86COR/DRI] [96REY/TER] [2000GAM/WOO] [87GAM] [2005GAM/BUG] [79KUS/GAN] [31G AN/ING] [81CER/CAS] [82GAR/RAM] [69GRE/GAR] [74NAN/GAR], [75GAR], [75GAR/NAN] [97BAG/GAR], [97BAG/GAR2] [2002RAO/JIA], [2004RAO/GAR] [2000BUG/KIS] [87GAR/PAR] [83AND/GAS] [75MER/GAT], [76GAT/MER], [78MER/GAT]
LIST OF CITED A UTHORS
Author
Reference
Gelb, R. I. Gelles, E. Gel'man, A. D.
[71 GEL] [58GEL/HAY] [57GEL/MAT2], [57GEL/MAT3], [57GEL/MOS], [58DRA/MOS2], [58GEL/DRA2], [58GEL/DRA3], [58GEL/MAT], [58GEL/MOS2], [58GEL/SOK], [58GEL/ZAI3], [58MOS/GEL], [58MOS/GEL3], [59DRA/GEL], [59GEL/ART], [59GEL/MEF], [60KON/GEL], [60MOS/KHA], [60SOK/GEL], [62KRO/ERM], [64GEL/ZAI], [67ERM/KRO2], [67GEL/MOS], [67KRO/MEF2], [67MEF/GEL2], [68MAT/KRO], [69MEF/KRO2], [69PER/KRO], [70GEL/BLO2], [70PER/KRO], [70SHI/KRO], [71MEF/GEL2], [73ZAI/ALE], [76MEF/BLO] [86DRI/COR] [74VAN/GEN] [86DRI/COR], [89COR/DRI], [95BOR/COR] [01GER] [64HOC/GER], [65GER/WAT], [65HOC/WAT], [68GER/WAT] [95CHI/DOM] [2003ZHE/MAU] [59VIN/GET] [88GHA/MAN] [97BAR/CEC] [76YAD/GHO] [89YAD/GHO] [74SIN/GHO], [81SIN/GHO], [89YAD/GHO] [90DAN/ROB], [90DAN/ROB2], [95ROB/GIA2], [97FOT/GIA], [99STE/GIA], [2000ROB/STE] [91 SAL/BOO] [39PAR/GIB] [52GIB/GRU] [93GIF/VIT2], [94GIF] [2005KAN/GIL] [2001STE/FOT] [63FUR/GIU] [92BAN/BLI] [99LOO/GLA], [99VER/GLA], [99VER/GLA2], [2001VER/GLA], [2004LOO/GLA] [33MAL/GLU] [69GLU/MIN] [74HUB/HUS] [77CHO/GOE], [77GRI/GOE] [58HEI/FRI] [84SAL/DEV] [61CHE/GOL]
Genicon, J. L. Gennaro, M. C. Georges, R. Gerard Gerard, N. Germain, G. Getahun, G. Getskina, L. L. Ghandour, M. A. Ghilardi, C. A. Ghose, A. K. Ghosh, A. K. Ghosh, J. C. Gianguzza, A. Gibadullina, K. V. Gibbons, R. C. Gibson, G. Giffaut, E. Gillow, J. B. Giuffre, O. Giuliani, A. M. Glaser, J. Glaus, M. A. Gluschakoff, A. J. Glusker, J. P. Goby, G. Goedken, M. P. Goldschmidt, J. M. E. Golodnitskaya, D. V. Golovnya, V. A.
1051
1052
Author Gomez-Romero, P. Goncalves, M. L. Goncalves, M. L. S. Goncalves, S. S. Gonzalez, R. Gopinath, N. Gorbunova, Y. E. Gordienko, V. I. Gordievskii, A. V. Gordon, N. E. Gorel'skii, S. I. Gorog, S. Gorski, B. Gosset, S. Gougoutas, J. Z. Goulden, T. P. Govindarajan, S. Grabowska, A. Grabowski, Z. R. Grambow, B. Grant, P. M. Grases, F. Grasso, M. Grauer, R. Graustein, W. C. Grebenshchikova, V. I. Grechina, N. K. Greenfield, B. F.
Gregor, J. E. Grenthe, I.
Grigor'ev, M. S. Griko, Y. V. Grimaldi, M. Grimbergen, R. F. P. Grimes, J. H. Grinberg, A. A.
Gritmon, T. F.
LIST OF CITED A UTHORS
Reference [86GOM/JAM] [92TUR/SAN] [84GON/MOT] [83LUR/GON] [98GON/KRE] [83CHH/GOP] [96MIK/GOR2], [2000MIK/GOR2] [71GOR/MIK], [73GOR/KHU] [68GOR/FIL] [36PIT/GOR] [98MAR/SHL] [59BEC/GOR], [59BEC/GOR2], [60BEC/GOR] [69GOR/KOC], [70GOR/KOC] [87BER/VAS] [94KUM/CHA] [46HIL/GOU] [86GOV/PAT], [94SAR/SIV] [56GRA/GRA] [56GRA/GRA] [2005BRO/CUR] [91BEI/GRA] [85GRA/FAR], [92MIL/GRA] [80ARE/CAL], [80GRA/MUS] [97ALL/BAN] [77GRA/CRO] [70GRE/BRY2] [84VAS/GRE] [89CRO/EWA], [92GRE/MOR], [93GRE/HAR], [94GRE/HUR], [94GRE/LIN], [95GRE/HOL], [97GRE/HUR] [86GRE/POW] [69GRE/GAR], [83FER/GRE], [84GRE/WIK], [85FER/GRE], [87RIG/VIT], [92GRE/FUG], [95GRE/PUI], [97ALL/BAN], [97GRE/PLY], [97GRE/PLY2], [97PUI/RAR], [2000GRE/WAN], [2003GUI/FAN], [2003VAL/MOL] [81MEF/GRI], [91GRI/BAT], [91GRI/BES], [96GRI/CHA2], [97GRI/CHA] [99GRI] [70CIA/GRI] [95STR/GRI] [63GRI/HUG] [56GRI/PET2], [56GRI/PTI], [58GRI/PET2], [59GRI/PET], [60GRI/PET], [61GRI/AST], [63GRI/PET], [72GRI/PET2] [77CHO/GOE], [77GRI/GOE]
LIST OF CITED A UTHORS
Author Grocott, S. C. Grossmann, B. Gruen, D. M. Grzybowski, A. K. Gu, Z.-X. Gudi, N. M. Guggenheim, E. A. Guichard, C. Guillaumont, R. Guo, Y.-F. Gupta, C. M. Gupta, N. Gupta, P. C. Gur'eva, Z. M. Gusev, E. A. Gut, R. Gutowski, M. Guzman-Miralles, C. Haas, D. J. Haas, K. Hadermann, J. Haeberli, A. Hagberg, J. Hakem, N. Hala, J. Hall, J. L. Hall, T. Halow, I. Hamann, S. D. Hammarsten, G. Hancock, R. D. Hangartner, M. Hansen, E. H. Hansen, H.-J. Hansen, L. D. Hardacre, C. Hardcastle, J. Harju, L. Harned, H. S. Harper-Arabie, R. Harries, R. J. N. Harris, W. E. Harris, W. R. Harrison, W. N.
Reference [93BEC/GRO] [77MUN/GRO] [52GIB/GRU], [53GRU/KAT], [54GRU/HUT] [65TAT/GRZ], [70GRZ/TAT] [87LIN/GU], [88LIN/GU], [90LIN/GU] [79KUS/GAN] [35GUG], [66GUG] [73CAU/GUI], [75CAU/GUI] [68GUI], [71GUI/BOU], [72MET/GUI3], [73HUB/HUS], [74HUB/HUS], [76HUB/HUS], [84BOU/GUI], [84BOU/PET], [2003GUI/FAN] [2001GUO/LIA] [82SAC/CHA], [83GUP/CHA] [83GUP/CHA] [83GUP/CHA] [66KOR/SHE2] [85DAL/GUS] [54SCH/GUT] [95RAK/SKU] [93ROM/GUZ] [64HAA] [67BUD/HAA] [97ALL/BAN] [94MUL/HAE] [97HAG], [2002HAG/DUK] [98ALM/NOV] [2001HAL/NAV] [34HAS/MCL] [2003WAR/EVA], [2004WAR/EVA] [82WAG/EVA] [82HAM] [29HAM] [96SUN/AND] [75AND/POD] [73HAN/RUZ] [62AXT/HAN] [67CHR/IZA], [69CHR/IZA] [98BUR/FAH] [2001JAN/HAR] [99KAR/HAR] [39HAR/FAL] [2005KAN/GIL] [68HAR] [46KOL/HAR] [76HAR/MAR] [93GRE/HAR]
1053
1054
Author Hartley, D. W. Hartley, H. Hartman, H. Hasegawa, Y. Hasilkar, S. P. Hassan, A. Hastings, A. B. Hatano, K. Hatton, E. Hauss, L. Havel, J. Havlicek, J. Hay, R. W. Hearing, E. D. Hedlund, T. Hedstrom, H. Hedwig, G. R. Heidt, L. J. Heijnen, W. M. M. Heinz, E. Heitner, C. Heitner-Wirguin, C. Heleeson, H. C.
Henderson, W. N. Hendricks, S. B. Hepler, L. G. Herbstein, F. H. Hernandez Padilla, M. Herz, W. Hess, N. J. Hesse, G. Heubel, P.-H. C. Heyns, J. B. Heyns, J. B. B. Hicks Jr, J. F. G. Hietanen, S. Higginson, W. C. E. Hill, L. M. Hille, R. Hindman, J. C. Hiralal, I. D. K. Hirokawa, T. Hironaka, H.
LIST OF CITED A UTHORS
Reference [91HAR/SMI] [13HAR/DRU] [26VER/HAR] [67HAS/MAK] [94HAS/KHE], [95HAS/KHE] [92AZA/ELN], [93AZA/HAS] [34HAS/MCL] [96AIZ/NAT] [46HIL/GOU] [37LED/HAU] [69HAV], [80MIK/HAV], [86BAR/HAV], [2002HAV/SOT] [70PRA/HAV] [58GEL/HAY] [96DOM/HEA] [88HED] [77HED/OLI] [80HED/LID] [42HEI] [81BLO/KAN], [82HEI] [51HEI] [54HEI/BOB] [58HEI/FRI] [74HEL/KIR], [81HEL/KIR], [88SHO/HEL], [88TAN/HEL], [89SHO/HEL], [89SHO/HEL2], [90OEL/HEL], [92SHO/OEL] [16HEN/TAY] [35HEN] [86HOV/HEP], [88HOV/HEP2], [90DOB/HEP] [2000HER] [84MED/DOM] [03HER/MUH], [23HER/NEU] [98RAI/FEL], [2003CHO/RAI], [2003RAI/HES] [42BRI/HES] [79HEU/POP] [86CRU/HEY] [83CRU/HEY] [33LAT/SCH] [85FER/GRE] [70HIG/SAM] [46HIL/GOU] [96XUE/TRA] [54HIN] [95STR/GRI] [82HIR/KIS] [75MAT/HIR]
LIST OF CITED A UTHORS
Author Hoard, J. L. Hoare, F. E. Hocart, R. Hodgkinson, A. Hodgson, D. J. Hoffman, M. Z. Hoffmann, H. Hogfeldt, E. H0iland, H. Hojo, Y. Hokari, N. Holloway, J. H. Holt, K. Holtom, G. J. Homann, K. Honeyman, B. D. Hoover, A. A. Hoshi, M. Hostettler, J. D. Hovey, J. K. Howard, L. O. Hoyle, B. E. Hseu, T. M. Hsu, L. Y. Hu, H. Huang, Z.-X. Hubert, S. Huggard, A. J. Hughes, V. L. Hulanicki, A. Hummel, W. Hunter, H. B. Hurdus, M. H. Hurford, S. R. Hussain, A. Hussonnois, M. Hutchison, Jr., C. A. Hynes, M. J. Ibberson, R. M. Ibers, J. A. Iguchi, A. Ingold, C. K. Inoue, Y. Intorre, B. J. Ionashiro, M.
Reference [59SMI/HOA] [58CHA/HOA], [62EVA/HOA] [64HOC/GER], [65HOC/WAT] [80HOD] [69HOD/IBE] [89NES/HOF] [24HOF/MAR] [88MEL/BAR] [75HOI] [77HOJ/SUG] [96YUC/HOK] [65WRI/HOL] [75PAK/OHA] [95GRE/HOL], [2000ASK/CHA] [93MIL/CVI] [2000LEN/CAB], [2005KAN/GIL] [45HOO/WIJ] [72HOS/UEN], [77HOS/UEN], [77HOS/UEN2] [84HOS] [85HOV/TRE], [86HOV/HEP], [88HOV/HEP2] [70SCH/HOW] [53DAV/HOY], [55DAV/HOY] [69REC/HSE] [61 PAL/HSU] [87SUE/HU] [82HUA/ALF] [73HUB/HUS], [74HUB/HUS], [76HUB/HUS] [63GRI/HUG] [53HUG/MAR] [92GLA/HUL], [93GLA/MAJ] [97ALL/BAN], [2002HUM/BER], [2003BAE/BRA] [60FEL/NOR] [94GRE/HUR], [95GRE/HOL], [97GRE/HUR] [91CHR/CUM] [80TAQ/HUS], [88TAQ/HUS] [73HUB/HUS], [74HUB/HUS], [76HUB/HUS] [54GRU/HUT] [87HYN/ODO] [94LEH/LUG] [69COP/SAB2], [69HOD/IBE] [58YOS/IGU], [59IGU/YOS] [31G AN/ING] [82INO/TOC], [83INO/TOC], [92TOC/INO], [92TOC/INO2], [92TOC/INO3], [94TOC/SIR] [64INT/MAR] [93SPI/RIB]
1055
1056
Author Ionnikova, N. I. Irving, H. Irving, H. M. Isaia, F. Ishibashi, S. Ishikawa, M. Ishimori, T. Israel, K. Isupov, V. P. Itoh, T. Iuliano, M.
LIST OF CITED A UTHORS
Reference [89NIK/ION2] [58IRV/SHE] [67IRV/MIL] [96ARA/ARC] [61ISH/YOK] [89ISH/ENO] [62ISH/NAK] [36VOS/ISR] [95ISU/TAR] [87KIT/ITO] [87CIA/IUL], [99CIA/IUL], [2000CIA/IUL], [2000FER/IUL], [2000VAS/CAR], [2001 CIA/TOM], [2001CIA/TOM2] Ivakin, A. A. [69VOR/IVA] Ivanova, E. V. [82TER/IVA] Ivantsov, A. I. [66SOL/IVA], [67SOL/TSV], [71SOL/IVA2], [72SOL/IVA] Ivaska, A. [99KAR/HAR] Izatt, R. M. [67CHR/IZA], [69CHR/IZA] Izmalkov, A. N. [89VAS/KAL], [90VAS/KAL2] Jackobs, N. E. [67JAC/MAR] Jackson, G. E. [82JAC], [82JAC/COS], [91JAC/TOI] Jadhav, A. V. [83CHH/GOP], [94HAS/KHE], [95HAS/KHE] Jahn, H. [1889JAH] Jain, A. K. [78JAI/SHA] Jain, B. D. [69MAN/BHA] Jain, H. C. [94HAS/KHE], [95HAS/KHE] Jain, U. [77JAI/KUM] Jakob, A. [97ALL/BAN] Jameson, G. B. [86GOM/JAM] Janjic, T. J. [79JAN/PFE] Jano, I. [2001JAN/HAR] Jano, L. A. [2001JAN/HAR] Janos, P. [93JAN] Jarrett, M. E. D. [36BRI/JAR] Jawaid, M. [78JAW], [80JAW] Jayadevan, N. C. [72JAY/CHA], [73JAY/DIA], [75JAY/SIN], [97DAH/CHA2] Jeannin, Y. [76LEG/JEA] Jeffrey, G. A. [52COX/DOU], [54JEF/PAR] Jenkins, I. L. [65JEN/MOO], [65JEN/MOO2] Jensen, K. A. [71 JEN] [96KIS/JEZ] Jezowska-Bojczuk, M. Jezowska-Trzebiatowska, B. [63JEZ] [2002RAO/JIA] Jiang, J. Jiao, R.-Z. [2001GUO/LIA]
LIST OF CITED A UTHORS
Author Joao, A. Johansen, E. S. Johnson, J. W. Johnson, K. S. Jokl, V. Jones, D. Jones, D. C. Jones, D. J. Jones, Jr., E. R. Jones, M. M. Jons, O. Jordan, J. Jorissen, W. J. Jorissen, W. P. Joseph, N. R. Julve, M. Justus, N. L. Kfivankova, I. Kabanova, O. L. Kairaitis, D. Kalachev, E. N. Kalevich, E. S. Kalia, S. P. Kalina, M. Kallay, N. Kallen, T. W. Kanellakopulos, B. Kanishcheva, A. S. Kankare, J. J. Kantar, C. Kanters, J. A. Kapshukov, 1.1. Kapustyanskaya, Z. V. Karacheva, G. A. Karago, L. V. Karaoglanov, Z. Karapiperis, T. Karelin, A. I. Karhu, J. Karlsson, S. Karlysheva, K. F. Kartushova, R. E. Katkov, A. P. Katser, S. B. Katz, J. J. Kawaizumi, F.
Reference [87JOA/BIG] [84JOH/JON] [92SHO/OEL] [79JOH/PYT] [65JOK/MAJ] [80WIL/JON] [82HUA/ALF] [81 EMS/JON] [72JON/STO] [75PRA/JON] [84JOH/JON] [45BOB/JOR], [57JOR/ALL], [85BAR/PAR] [1895JOR/STA] [10JOR] [46JOS] [88CAS/FAU] [56MOR/JUS] [92MIL/GRA] [61KAB] [62BRU/KAI] [81VAS/VAS], [85VAS/KOZ] [89VAS/KAL], [90VAS/KAL2] [88DAS/KAL] [81SIR/KAL] [93MIL/CVI] [76KAL] [86KAN/KIM] [85MIK/LOB], [85SHC/ORL], [93MIS/MIK] [72KAN] [2005KAN/GIL] [70FOL/KAN], [72ROE/KAN], [81BLO/KAN] [84TOM/VOL] [92POG/KAP] [58YAT/KAR], [59YAT/KAR] [70PET/STE2], [72GRI/PET2] [42KAR] [97ALL/BAN] [91MAT/KAR] [99KAR/HAR] [2002HAG/DUK] [78STR/KAR] [56FOM/KAR] [88ALL/BOL] [98CHA/KRO] [52GIB/GRU], [53GRU/KAT], [86WEI/KAT] [92TAN/NOM]
1057
1058
Author Kazakova, L. V. Kearney, D. L. Keller, Jr., O. L. Kemp, E. F. Kennard, C. H. L. Kereichuk, A. S. Kettler, R. M. Khalil, I. Khalil, M. M. Khalkin, V. A. Khalturin, G. V. Khanzada, A. W. K. Kharitonov, Y. Y. Khedekar, N. B. Khodakovsky, I. L. Khodary, M. Khokhlova, A. I. Khudyakova, L. P. Kiba, Y. Kibrick, A. Kiiko, N. I. Killa, H. M. Kim, J. I. Kim, J. J. Kim, Y. K. Kirakosyan, A. K. Kiraly, R. Kirillova, M. I. Kirkham, D. H. Kirsch, T. Kir'yanov, Y. A. Kiselev, V. P. Kiso, Y. Kiss, E. Kiss, E. E. Kiss, T. Kita, E. Kitaigorodskii, I. A. Kitamura, Y. Kleber, C. Klemm, W. Klotz, P. Klygin, A. E. Knappwost, A.
LIST OF CITED A UTHORS
Reference [72BEL/KAZ] [82AVD/KEA] [76MCD/KEL] [58COO/FOR] [91HAR/SMI] [72KER/CHU], [78KER/CHU] [91KET/PAL], [98KET/WES] [73KHA/PET], [74PET/KHA] [98KHA/RAD] [89ROS/DIT], [90ROS/REI] [60MOS/KHA], [84KHA/AND] [96SAE/KHA] [64KHA/BOC2], [64KHA/ZAI2], [73KHA/MOS2] [94HAS/KHE], [95HAS/KHE] [92FUG/KHO] [88GHA/MAN] [77FED/KHO] [73GOR/KHU] [2001 TAN/FUR] [38CAN/KIB] [74SHA/KII] [85KIL] [84BER/KIM], [86KAN/KIM], [97KON/FAN], [2001 NEC/KIM] [74PIT/KIM] [82WIL/SUL] [59KIR/TAN] [75BRU/KIR] [84 AND/KIR] [74HEL/KIR], [81HEL/KIR] [96KIR/MAU] [88EVS/SMI] [96MIR/PAS] [82HIR/KIS] [2000BUG/KIS] [96KIS/JEZ] [94KIS/SOV], [95KIS/BUG], [96KIS/JEZ], [2000BUG/KIS], [2001LAK/BAN] [88KIT] [92POG/KAP] [87KIT/ITO] [1889STO/KLE] [42KLE/RAD] [70ADI/KLO], [72MAR/KLO] [59KLY/SMI3], [59KLY/SMI4] [73KNA/MAT]
LIST OF CITED A UTHORS
Author Knox, S. Knyazeva, N. N. Kobzev, V. V. Koch, H. Kochergin, S. M. Kochergina, L. A. Kociba, K. J. Koenders, B. G. Kohlrausch, F. Kohlschutter, V. Kojima, M. Kojima, N. Kolafik, Z. Kol'ba, V. I. Kolthoff, I. M. Kondratova, P. I. Konigsberger, E. Konings, R. J. M. Konnecke, T. Konopik, N. Konunova, T. B. Kopajtic, Z. Kopnyshev, S. B. Koppel, J. Korablin, E. V. Korenman, I. M. Korin, E. Kornev, V. I. Kornienko, I. V. P. Korolenko, L. I. Korovin, S. S. Korpusov, G. V. Korsse, J. Kostromina, N. A. Kozhenkova, V. N. Kozlicka, M. Kozlov, A. G. Kozlovskii, E. V. Kragten, J. Krajcikova, D. Krasnobaeva, N. A. Kraus, K. A. Kravchenko, T. I.
Reference [92TUR/SAN] [74MYA/LOG], [76MYA/LOG] [72KUK/KOB] [69GOR/KOC], [70GOR/KOC] [87PAZ/KRI] [71VAS/KOC2], [73VAS/KOC], [73VAS/SHE2], [74VAS/KOC], [76VAS/KOC], [76VAS/SHE], [78VAS/KOC], [79VAS/KOC], [98KOC/VAS] [96KOC/GAL] [95STR/GRI] [03KOH], [08KOH] [01KOH], [01KOH/ROS] [58YOS/IGU] [88TOG/KOJ] [59OKA/KOL] [79ZHI/KOL], [80KOL/ZHI] [28KOL/BOS], [33KOL/SAN], [46KOL/HAR] [60KON/GEL] [97KON/TRA], [98STR/TRA] [90COR/KON2], [92GRE/FUG] [97KON/FAN] [67MES/VIN] [75TER/SHE], [77KOS/SHE] [91LOO/KOP] [88VAS/BOR] [08KOP/CAH] [77ZAK/KOR] [66KOR/SHE2] [2004MEN/APE] [78KOR/VAL] [56KOR/PET] [78FLY/KOR] [57BOL/KOR3], [57BOL/KOR4], [58BOL/KOR] [75KOR/PAT] [83KOR/PRO] [75TER/SHE], [77KOS/SHE], [77KUB/NIK] [65ZAI/BOC] [68KOZ] [60KOZ/KRO] [81VAS/VAS], [85VAS/KOZ], [86VAS/KOZ], [87VAS/KOZ], [90KOZ/VAS] [83KRA/DEC] [85LAN/KRA] [82TER/IVA] [50KRA/NEL] [71PYA/KRA2]
1059
1060
Author Kremer, C. Kremer, E. Kriege, O. H. Krishna Iyer, R. Krishna Prasad, N. S. Krishnamurthy, M. Krivokhatskii, A. S. Krivoshein, A. S. Kroon, J. Krot, N. N.
Kroupa, M. Kryukov, E. B. Kuca, L. Kublanovskii, V. S. Kucher, A. A. Kuchitsu, K. Kuempel, J. R. Kuentzler, R. Kugler, G. C. Kukushkin, Y. N. Kula, R. J. Kulkarni, N. K. Kumar, A. Kumar, K. Kumari, V. Kumok, V. N. Kuppers, H. Kupriyanova, G. N. Kurakane, K. Kuroda, R. Kurz, J. L. Kusumakumari, K. M. Kuzmina, M. A. Kyrs, M. Ladd, M. F. C. Laffitte, M.
LIST OF CITED A UTHORS
Reference [96REY/TER], [98GON/KRE] [96REY/TER], [98GON/KRE] [55MAC/KRI] [67BHA/KRI] [64BAS/KRI] [63BHA/KRI], [64BHA/KRI] [87PAZ/KRI] [68GOR/FIL] [70FOL/KAN] [60KOZ/KRO], [62KRO/ERM], [63ERM/KRO], [67ERM/KRO2], [67KRO/MEF2], [68MAT/KRO], [69MEF/KRO2], [69PER/KRO], [70GEL/BLO2], [70PER/KRO], [70SHI/KRO], [73ZAK/ORL], [74KRO/MEF], [74NIK/SHI], [74SHI/NIK2], [76MEF/BLO], [79SHI/STE2], [81ZUB/KRO], [82ZUB/KRO], [83ZUB/KRO], [83ZUB/KRO2], [83ZUB/KRO3], [84ZUB/KRO], [87MEF/KRO], [91GRI/BAT], [91GRI/BES], [96BES/KRO], [96GRI/CHA2], [97GRI/CHA], [98CHA/KRO] [92VEL/SOH], [97SOH/KRO] [81MEF/GRI] [76VAN/KUC], [80VAN/KUC] [75LIT/NIK], [77KUB/NIK] [83PER/MIS] [93MIL/CVI] [68KUE/SCH] [92SAP/COR] [70KUG/CAR] [72KUK/KOB] [66KUL], [66KUL/RAB], [66KUL/REE] [83CHH/GOP] [92THA/KUM] [94KUM/CHA] [77JAI/KUM], [79KUM/CHA] [67KUM/SER], [67SKO/KUM], [69SKO/KUM], [70MER/KUM], [71SKO/KUM] [72KUP] [87THU/KUP] [76MUR/KUR] [81 EMS/JON] [69KUR/FAR] [79KUS/GAN] [88BYK/KUZ2] [63KYR/CAL], [64CAL/KYR] [73LAD/POV], [74LAD/POV] [82LAF]
LIST OF CITED A UTHORS
Author
Reference
Lagrange, J. Lagrange, P. Laguerie, C. Laitinen, H. A. Lajunen, L. H. J. Lakatos, A. Langbein, H. Langfelderova, H. Laniepce, J. Lapitskii, A. V. Larson W. D. Larsson, E. Latimer, W. M. Laye, P. G. Le Van, M. Lebedev, I. A.
[72LAG/LAG], [75LAG/LAG], [84BRI/LAG] [72LAG/LAG], [75LAG/LAG], [84BRI/LAG] [76LAG/AUB] [54SCH/LAI] [95PII/LAJ] [2001LAK/BAN] [1889STO/KLE] [85LAN/KRA] [64WAL/LAN] [64PAN/VLA], [66LAP/PAN] [41LAR/TOM] [24LAR] [33LAT/SCH], [52LAT] [67ADA/CAR] [69VAN/PER], [71VAN] [60LEB/PIR], [60LEB/PIR2], [62LEB/PIR2], [67LEB/MAK] [82VAS/VAS] [36MUU/LEB] [85LEC/MOS] [78DAV/LEC] [37LED/HAU] [57LEF], [57LEF4] [76LEG/JEA] [94LEH/LUG] [94LEH/LUG] [92SEI/MUE] [90LEI] [92GRE/FUG], [2001LEM/FUG], [2005GAM/BUG] [2000LEN/CAB] [96REY/TER], [98GON/KRE] [87LEO/FRI] [82LEP/TAW] [70BRA/LEP] [79LET/MAR] [83KOR/PRO] [55LEV] [89MAN/APE] [23LEW/RAN], [61LEW/RAN] [68LEY/WHI] [66LHE/MAR] [91LI/ZHA] [57LI/WES], [59LI/LIN], [61LI/TAN] [2001GUO/LIA] [71CHA/LIA], [71CHA/LIA2] [80HED/LID]
Lebedeva, N. A. Lebel, H. Lecante, P. Leckie, J. O. Ledrut, J. Lefebvre, J. Legros, J. P. Lehmann, A. Lehmann, C. W. Leibnitz, P. Leigh, G. J. Lemire, R. J. Lenhart, J. J. Leon, A. Leont'eva, M. V. Lepage, L. Leporati, E. Letkeman, P. Leurs, G. Levien, B. J. Levy, O. Lewis, G. N. Leyden, D. E. L'Heureux, G. A. Li, J. Li, N. C. Liang, J.-F. Liaw, C.-F. Liddle, J. R.
1061
1062
Author Liem, D. H. Lin, H.-K. Lin, Y. Lin, Z. F. Lindenbaum, A. Lingaiah, P. Linklater, C. M. Lis, S. Litchinsky, D. Litovchenko, K. I. Liu, B.-R. Liu, S. C. Liu, X.-Q. Lobanova, G. M. Logvinenko, V. A. Long, F. A. Losev, V. Y. Louguinine, W. Louwrier, P. W. F. Lowe, J. Lozhkina, G. S. Lucansky, J. Lu,Q. Lubal, P. Lukomski, P. Luerkens, D. W. Luff, B. B. Luger, P. Lukachina, V. V. Lund, W. Luque, A. Lurdes, M. L'vov, B. V. Lyle, S. J. Lymar, V. P. Lynn, M. Lytkin, A. I. Macarovici, C. G. MacCarthy, P. Mackay, M. F. MacKellar, W. J. MacNevin, W. M. Maffia, M. C. Magon, L.
LIST OF CITED A UTHORS
Reference [71LIE], [79LIE/EKE] [87LIN/GU], [88LIN/GU], [90LIN/GU] [96SCH/CON] [68REC/LIN] [52SCH/LIN], [57LI/WES], [59LI/LIN] [84VEN/SWA], [85VEN/SWA] [94GRE/LIN] [95LIS/CHO], [96BOR/LIS], [2001CHO/BON] [69LIT/PUR] [75LIT/NIK], [77KUB/NIK] [2001GUO/LIA] [64 YEN/LIU] [2001GUO/LIA] [85MIK/LOB], [85SHC/ORL] [74MYA/LOG], [76MYA/LOG] [51COO/LON], [58COO/LON], [62MCD/LON] [96MIK/GOR2] [1886LOU] [83KOR/PRO] [2002LOW/OGD] [72GRI/PET2] [78NOV/LUC] [95LU/MOT] [2002HAV/SOT] [93GLA/MAJ] [83LUE] [82LUF/REE] [94LEH/LUG] [70LUK] [82OVE/LUN] [93ROM/GUZ] [83LUR/GON] [2000LVO] [66LYL/NAQ], [68AZI/LYL] [77LYM/VAS], [77VAS/LYM], [77VAS/LYM2], [78VAS/LYM], [78VAS/LYM2] [63WAT/TRO] [77LYM/VAS], [77VAS/LYM], [77VAS/LYM2], [78VAS/LYM], [78VAS/LYM2] [80MAC/CHI] [2000LEN/CAB] [87COL/WIL], [88BAL/COL] [71ROR/MAC] [55MAC/KRI] [2001MAF/MEI] [72MAG/BIS], [73POR/PAO]
LIST OF CITED A UTHORS
Author Magri, A. D. Mainer, S. Mair, B. J. Majer, J. Majumdar, R. Maj-Zurawska, M. Makar, G. K. R. Makarova, T. P. Maki, K. Makioka, K. Maksimov, V. F. Maksimova, A. M. Maksimova, I. N. Mali, B. D. Malik, S. Malik, S. C. Maljaroff, K. L. Malkova, N. N. Malkowa-Janowski Malley, M. F. Mallon, J. M. Mamynova, A. A. Mandleberg, C. J. Manfredi, C. Manku, G. S. Manning, P. G. Manohar, H. Manok, F. Mansour, H. Manzurola, E. Marangella, M. March, J. G. Margerum, D. W. Marier, J. R. Marini, M. A. Mark, H. Markin, T. L. Markovits, G. Marov, I. N.
Marshall, W. L. Marsicano, F.
Reference [90BIA/BUC], [92BIA/BUC] [78RAJ/MAI], [81RAJ/MAI] [29RIC/MAI] [65JOK/MAJ], [78NOV/LUC] [99MAJ/SAR] [93GLA/MAJ] [76MAK/TOU] [65STE/MAK], [65STE/MAK2], [67STE/MAK2], [69STE/MAK2], [76MAK/STE] [67HAS/MAK] [61ISH/YOK] [88BYK/KUZ2] [67LEB/MAK] [66MAK/YUS], [67MAK2] [81MAL/SEN] [70AND/MAL], [70AND/MAL2] [76AND/MAL] [33MAL/GLU] [88NIK/DZY] [27BOB/MAL] [94KUM/CHA] [98BUR/FAH] [69SKO/MAM] [61MAN/FRA] [98FER/MAN], [2000FER/IUL], [2000VAS/CAR] [69MAN/BHA] [73RAM/MAN2], [75RAM/MAN] [86GOV/PAT] [72MAN/VAR] [88GHA/MAN] [87APE/MAN], [89MAN/APE], [90APE/MAN] [82DAN/MAR], [85DAN/SON] [85GRA/FAR] [60OLS/MAR], [67JAC/MAR], [70COO/MAR] [60BOU/MAR] [85MAR/EVA], [86MAR/EVA] [24HOF/MAR] [58MAR2] [72MAR/KLO], [89MAN/APE] [58ERM/BEL], [59ERM/BEL2], [60RYA/ERM], [61MOS/MAR], [61ZOL/MAR2], [62MAR/RYA2], [62RYA/MAR], [64RYA/MAR], [66ERM/MAR] [84MAR/MES] [91DUF/MAR]
1063
1064
Author Martell, A. E.
Marti, F. B. Martin, D. F. Martin, R. B. Martinez-Tamayo, E. Martynenko, L. I. Maslov, E. I. Masson, J. I. O. Materazzi, S. Mathur, B. K. Mathur, R. Matkovskaya, T. A. Matorina, N. N. Matouschek E. Matsuda, H. Matsushima, Y. Matsushita, H. Matula, D. Matusevich, L. A. Matyukha, V. A. Matzapetakis, M. Mauerhofer, E. Maurer, G. May, P. M. Mayadeo, M. S. Mayorga, G. Mazzocchin, G. A. McAuley, A. McBryde, W. A. E. McCaffrey, C. F. McComas, Jr., W. H. McCourt, J. L. McCreary, H. E. McDougall, A. O. McDowell, W. J.
LIST OF CITED A UTHORS
Reference [52CAR/MAR], [52MAR/PLU], [53CAR/MAR], [53HUG/MAR], [54CAR/MAR], [56MAR], [60BOH/MAR], [64INT/MAR], [64SIL/MAR], [65RAJ/MAR], [66LHE/MAR], [67CAR/MAR], [67RAJ/MAR], [68CAR/MAR], [69CON/MAR], [71SIL/MAR], [76HAR/MAR], [77MAR/SMI], [79LET/MAR], [82MAR/SMI], [84MOT/MAR], [85SMI/MOT], [95LU/MOT], [95SUN/MOT], [96SUN/AND], [98SUN/MAR], [2003SMI/MAR] [69BOS/MAR] [65MOE/MAR] [94KIS/SOV] [86ESC/FUE] [68SPI/MAR], [87THU/KUP], [89SVE/DOB], [98MAR/SHL] [62SHV/MAS2] [12MAS] [2002CUR/TEN] [78CHA/BHA] [61 LI/TAN] [88ALL/BOL] [57GEL/MAT2], [57GEL/MAT3], [58GEL/MAT], [60MAT/SAF] [73KNA/MAT] [77OYA/MAT] [63MAT] [75MAT/HIR] [86BAR/HAV] [86MAT/PAS] [68MAT/KRO], [88NIK/DZY], [91MAT/KAR], [94ZHI/MAT2], [94ZHI/MAT3], [94ZHI/MAT4] [98MAT/RAP] [2003ZHE/MAU] [96KIR/MAU], [2004SCH/MAU] [78BER/MAY], [82HUA/ALF], [84DUF/MAY] [79MAY/CHA] [73PIT/MAY], [74PIT/MAY] [93MAZ/DAN] [60MCA/NAN], [61 MCA/NAN] [74FIE/MCC], [75FIE/COB] [01RIC/MCC] [42MCC/RIE] [74FIE/MCC], [75FIE/COB] [2001JAN/HAR] [62MCD/LON] [76MCD/KEL]
LIST OF CITED A UTHORS
Author McKinnon, A. McLean, F. C. McVey, W. H. Mechelynck, P. Mederos, A. Medvedev, V. A. Mefod'eva, M. P.
Meilleur, R. Meirelles, A. J. A. Meirone, M. Meites, L. Melia, T. P. Meloun, M. Menczel, B. Mentre, I. Merciny, E. Merel, P. Merkusheva, S. A. Mesmer, R. E. Meszaros, P. Metivier, H. Meyer, J. L. Mezhonova, E. A. Mianowski, A. Micera, G. Midollini, S. Migal, P. K. Mikan, A. Mikhailov, V. A. Mikhailov, Y. N.
Mikhailyuk, Y. I. Mikhlin, A. L. Mikolaev, V. M Milad, N. E. Milanov, M. Miles, M. G. Millan, A. Miller, C. F. Millero, F. J. Mills, I.
Reference [2002LOW/OGD] [34HAS/MCL] [49CON/MCV] [58MEC/SCH] [84MED/DOM], [95CHI/DOM], [97BAR/CEC], [98ALD/BIA] [89COX/WAG], [92FUG/KHO] [59GEL/MEF], [67GEL/MOS], [67KRO/MEF2], [67MEF/GEL2], [69MEF/KRO2], [71MEF/GEL2], [74KRO/MEF], [76MEF/BLO], [81MEF/GRI], [87MEF/KRO] [68DEN/MEI] [2001MAF/MEI] [64CAM/OST] [50MEI], [50MEI2] [62EVA/HOA] [88MEL/BAR] [2004MEN/APE] [72MEN] [75MER/GAT], [76GAT/MER], [78MER/GAT] [98MOT/RIC] [70MER/KUM] [76BAE/MES], [84MAR/MES], [91 AND/CAS] [67MES/VIN] [72MET/GUI3] [74MEY] [92MIL/DOB] [2001 MIA] [95KIS/BUG], [2000BUG/KIS] [97BAR/CEC], [98ALD/BIA] [58MIG/SYC] [80MIK/HAV] [69MIK] [83SHC/MIK], [85MIK/LOB], [85SHC/ORL], [93MIS/MIK], [95MIS/SER], [96MIK/GOR2], [2000MIK/GOR2] [71GOR/MIK] [88ALL/BOL] [74SHA/KII] [63TOB/MIL], [64TOB/MIL] [89ROS/DIT], [90ROS/REI] [67IRV/MIL] [92MIL/GRA] [52SPE/MIL] [79MIL] [93MIL/CVI]
1065
1066
Author Miloserdova, N. A. Milovanov, S. V. Minkin, J. A. Mironov, I. V. Mironov, V. E. Mishchenko, V. T. Mishra, M. K. Misra, A. Mistryukov, V. E. Mital, S. Mitic, S. S. Mitrofanova, R. P. Miyake, C. Mizera, J. Mizumachi, K. Moattar, F. Moeller, T. Mohammed, A. K. Mohanty, B. K. Mohanty, S. R. Molina, S. Moll, H. Money, R. W. Mongay, C. Monnin, C. Moo, N. Moody, G. J. Moore, D. A. Moore, F. H. Moore, R. C.
Moorhead, E. G. Morales, M. Morel, F. M. M. Moreton, A. D. Morgan, J. J. Morgan, L. O. Moriguchi, H. Moriya, H. Morozova, L. P. Morris, C. R. Morris, S.
LIST OF CITED A UTHORS
Reference [92MIL/DOB] [98MAR/SHL] [69GLU/MIN] [89MIR], [95MIR/SAD] [96MIR/PAS] [83PER/MIS] [89DAS/DAS] [80MIS/MIT] [93MIS/MIK], [95MIS/SER] [80MIS/MIT] [98OBR/MIT] [95ISU/TAR] [67MIY/NUR] [99MIZ/BON], [2001CHO/BON] [58YOS/IGU] [72EBE/MOA] [65MOE/MAR], [66MOE/CHU] [94ERT/MOH] [96DAS/MOH] [55MOH/SIN] [96REY/TER] [2003VAL/MOL] [32MON/DAV] [82GAR/RAM] [90MON] [98MAT/RAP] [79CRA/MOO] [98RAI/FEL], [98RAI/RAO] [65JEN/MOO], [65JEN/MOO2], [71MOO/POW] [98POK/BRO], [99CHE/CHO], [99MIZ/BON], [2000BOR/CHO], [2001BOR/MOO], [2001CHO/BON], [2003BOR/CHO], [2003RAI/HES], [2004BON/MOO], [2004RAO/GAR] [66MOO/SUT] [62ASA/MOR] [90DZO/MOR] [92GRE/MOR], [93MOR], [94GRE/LIN] [81STU/MOR], [96STU/MOR] [56MOR/JUS] [80TAN/MOR] [74MOR/SEK] [72KUK/KOB] [91CHR/CUM] [98MOR/ALM]
LIST OF CITED A UTHORS
Author Moskvin, A. I.
Mosset, A. Mota, A. M. A. Motekaitis, R. J.
Motellier, S. Moyers, E. M. Mozhaev, A. P. Muenze, R. Mufti, A. T. Muhammed, M. Muhs, G. Mukhopadhyay, M. R. Mulac, W. Mulazzani, Q. G. Miiller, A. Muller, A. B. Miiller, M. Muller, U. Munoz Roca, C. Munoz, J. L. Miinze, R. Murai, R. Murty, J. G. K. Musumeci, S. Muus, J. Myachina, L. I. Naarova, M. Nagar, R. Nagata, K. Nagypal, I. Nakagawa, N. Nakamura, E. Nancollas, G. H.
Reference [57GEL/MAT2], [57GEL/MAT3], [57GEL/MOS], [58DRA/MOS2], [58GEL/DRA2], [58GEL/MAT], [58GEL/MOS2], [58MOS/GEL], [58MOS/GEL3], [59GEL/ART], [59MOS], [59MOS/ART], [59MOS/ZAK], [60MOS/KHA], [60ZAK/MOS], [61MOS/MAR], [61ZOL/MAR2], [67GEL/MOS], [68MOS2], [69MOS], [71MOS6], [73KHA/MOS2], [73MOS], [78MOS/POZ], [79MOS/POZ], [79MOS/POZ4] [84MOS/GAL], [85LEC/MOS], [86COR/DRI] [83LUR/GON], [84GON/MOT] [84MOT/MAR], [85SMI/MOT], [95LU/MOT], [95SUN/MOT], [96SUN/AND], [98SUN/MAR], [2003 SMI/MAR] [98MOT/CHA], [98MOT/RIC] [77MOY/FRI] [92MIL/DOB] [81MUE], [92SEI/MUE] [96SAE/KHA] [98PLY/ZHA] [03HER/MUH] [99MAJ/SAR] [81NAS/MUL] [89NES/HOF] [57BER/MUL] [85MUL], [92GRE/FUG] [94MUL/HAE] [43BRI/THI] [88CAM/MUN] [86NOR/MUN] [77MUN], [77MUN2], [77MUN/GRO] [76MUR/KUR] [55MOH/SIN] [78ARE/MUS], [80ARE/CAL], [80GRA/MUS], [83ARE/MUS], [90ARE/CON] [36MUU/LEB] [74MYA/LOG], [76MYA/LOG] [68NAA/POD] [89NAG/SHA], [94NAG] [65NAG/UMA] [75BRU/KIR], [90BEC/NAG] [2000YOS/OKA] [62ISH/NAK] [60MCA/NAN], [61MCA/NAN], [69BRU/NAN], [74NAN/GAR], [75GAR/NAN], [79TOM/NAN], [79TOM/NAN2], [80TOM/NAN]
1067
1068
Author Naqvi, S. J. Narita, S. Nash, K. Nass, G. Natarajan, P. R. Natsume, T. Navratil, J. D. Nazarenko, V. A. Nebel, D. Neck, V. Nectoux, F. Negita, H. Neher-Neumann, E. Nelson, F. Nemukhin, A. V. Nerad, I. Neshvad, G. Nesterova, Y. M. Neu, M. P. Neukirch, E. Nevskaja, E. M. Newkirk, A. E. Newman, L. Nguyen-Trung, C. Nicholson, A. J. C. Niemann, H. Nigam, P. C. Nikiforova, E. V. Nikitenko, S. I. Nikitenko, V. N. Nikolaev, V. M. Nikolaeva, E. M. Nikolaeva, L. S. Nikolaeva, N. M. Nikolaevskii, V. B. Nikol'skaya, N. A. Nikonenko, E. A. Nissen, D. A. Nitsche, H. Nolang, B. Nomura, H. Noon, M. Nordbo, R. Nordstrom, D. K. Norrestam, R. Norris, W. H. H.
LIST OF CITED A UTHORS
Reference [66LYL/NAQ], [68AZI/LYL] [92TOC/INO], [92TOC/INO2], [92TOC/INO3] [81NAS/MUL] [1894NAS] [83CHH/GOP], [86RAO/PIU] [96AIZ/NAT] [92FUG/KHO], [2001HAL/NAV] [74NAZ/FLY2], [78NAZ/ANT] [66NEB], [66NEB2], [66NEB/URB], [75NEB/AND] [2001NEC/KIM], [2003GUI/FAN] [87CAC/NEC], [89STO/CAC], [90RIZ/NEC] [80TAN/NEG] [85FER/GRE] [50KRA/NEL] [68SPI/MAR] [88NER/VIT], [91NER/PRO] [89NES/HOF] [84NES/POR2] [2004BOU/REI] [23HER/NEU] [78NAZ/ANT] [64SIM/NEW] [70ADI/KLO], [72MAR/KLO] [92GRE/FUG], [92NGU/BEG], [95PAL/NGU2] [39PAR/NIC] [27SCH/GAD] [70COO/MAR] [74TER/NIK], [74TER/NIK2] [88NIK/DZY], [89NIK/ION2] [75LIT/NIK], [77KUB/NIK] [75ZAI/NIK] [88EVS/SMI] [92MIL/DOB] [72NIK/ANT], [79NIK], [82NIK], [82NIK2] [74NIK/SHI], [74SHI/NIK2] [59KLY/SMI3], [59KLY/SMI4] [82NIK/SHA] [80NIS] [2001LEM/FUG] [2005OLI/NOL] [92TAN/NOM] [81NAS/MUL] [39NOR] [86NOR/MUN] [68NOR/WER], [69WER/NOR] [51NQR]
LIST OF CITED A UTHORS
Author Norris, W. P. North, C. A. Novak, C. F. Novak, V. Novikov, G. S. Novotny, P. Nowack, B. Nowicka, U. Nowogrocki, G. Nugteren, P. R. Nurchi, V. M. Niirnberg, H. W. Nuttall, R. L. Nydahl, F. Obradovic, M. V. O'Connor, E. A. O'Connor, P. Oda, J. O'Dowd, M. Oelkers, E. H. Offermann, W. Ogden, M. Ogino, H. O'Hare, P. A. G. Ohata M. Ohman, L.-O. Ohtaki, H. Ohyoshi, A. Ohyoshi, E. Okac, A. Okazaki, M. O'Kelly, N. Olikov, 1.1. Olin, A. Olmstead, M. M. Olson, D. C. Oomen, V. Orlandini, A. Orlov, N. A. Orlova, I. M. Orlova, M. M. Orlova, T. D. Ormerod, R. M. Osadchii, E. G.
Reference [52SAT/DIA] [60FEL/NOR] [98ALM/NOV] [78NOV/LUC], [81SIR/KAL] [88BYK/KUZ2] [85SOH/NOV] [2002NOW] [92GLA/HUL] [76NOW/CAN] [86DRI/COR], [89COR/DRI] [96ARA/ARC] [67MIY/NUR] [82WAG/EVA] [51NYD] [98OBR/MIT] [19RIV/OCO] [44OCO2] [75OHY/ODA] [87HYN/ODO] [90OEL/HEL], [92SHO/OEL] [42PFE/OFF] [2002LOW/OGD] [65OGI] [77OHA] [75PAK/OHA] [83OHM/SJO], [83OHM/SJO2], [85SJO/OEH2], [2005OLI/NOL] [77OYA/MAT] [71OHY/OHY], [75OHY], [75OHY/ODA] [71OHY/OHY], [75OHY/ODA] [59OKA/KOL] [2000YOS/OKA] [95GRE/HOL] [82NIK/SHA] [77HED/OLI], [79EKS/OLI], [83OLI/WIK], [2005OLI/NOL] [81REE/OLM] [60OLS/MAR] [88TAQ/HUS] [97BAR/CEC] [02ORL] [83SHC/MIK], [85SHC/ORL] [67ZAK/ORL2], [73ZAK/ORL] [76VAS/KOC], [78VAS/KOC], [79VAS/KOC] [98BUR/FAH] [2005OLI/NOL]
1069
1070
Author Ostacoli, G. Osthols, E. Ouweltjes, W. Ovchinnikova, I. V. Overvoll, P. A. Oyama, N. Ozerova, G. P. Paetzold, R. Pages, M. Pajeau, T. S. Pak, C. Y. C. Palaty, V. Palavit, G. Palei, P. N. Pall, D. B. Palladino, G. Palmer, D. A. Pambid, E. R. Panda, T. Pandit, S. C. Pani, S. Pankratova, L. N. Paoletta, G. Papaefthymiou, V. Papanastasiou, G. Paramonova, V. I. Parker, G. H. Parker, V. B. Parkinson G. Parry, G. S. Parsons, R. Parton, H. N. Pashina, N. M. Pashkov, G. L. Passer, E. Patil, K. C. Patil, S. K. Patnaik, R. K. Patrusheva, E. N. Patterson, A. L.
LIST OF CITED A UTHORS
Reference [64CAM/OST], [75DAN/OST], [76DAN/OST], [84DAN/OST], [88DAN/OST] [99WAN/OST], [2000GRE/WAN], [2000OST/WAN], [2000WAN/OST] [90COR/KON2] [89SAL/BOO] [82OVE/LUN] [77OYA/MAT] [88EVS/SMI] [66PAE] [87CAC/NEC], [89STO/CAC], [90RIZ/NEC] [96SUN/AND] [75PAK/OHA] [63PAL] [87BER/VAS] [60PAL/UDA], [61 PAL/HSU] [40SHE/PAL] [2000PAL], [2002CUR/TEN] [91KET/PAL], [92NGU/BEG], [95PAL/NGU2], [97BEN/PAL], [98KET/WES], [2003GUI/FAN] [91SIN/YEB] [89DAS/DAS] [78CHA/BHA] [57PAT/PAN2], [61PAT/PAN], [65PAT/PAN], [65PAT/PAN2] [64PAN/VLA], [66LAP/PAN] [70CIA/GRI] [98MAT/RAP] [89PAP/ZIO], [95PAP/ZIO] [63PAR/BAR] [57BRI/PAR] [82WAG/EVA], [87GAR/PAR] [2002LOW/OGD] [54JEF/PAR] [74PAR], [85BAR/PAR] [39PAR/GIB], [39PAR/NIC] [86MAT/PAS] [96MIR/PAS] [77PAS/WHI] [86GOV/PAT] [76BAG/RAM3], [77RAM/RAM], [77RAM/RAM2], [79KUS/GAN] [57PAT/PAN2], [61PAT/PAN], [65PAT/PAN], [65PAT/PAN2] [75KOR/PAT] [69GLU/MIN]
LIST OF CITED A UTHORS
1071
Author
Reference
Patterson, B. A. Patton, R. L. Paul, M. T. Paulsen, P. J. Pavasars, I. Pazukhin, E. M. Pearce, K. N. Pearson, F. J. Pedersen, B. F Pedersen, K. J. Peltier, S. Peneloux, A. Perec, M. Peretrukhin, V. F. Perfil'ev, V. A. Perinet, G. Persson, I. Peters, D. Peters, H. Peterson, J. R. Petit, J. Petit-Ramel, M.
[2001 PAT/WOO] [49PAT], [49PAT2] [71EBE/PAU] [58SAW/PAU], [59SAW/PAU] [99PAV] [70STE/PAZ], [71PAZ/STE], [87PAZ/KRI] [75PEA/CRE], [80PEA] [2002HUM/BER] [68PED] [39PED], [39PED2], [49PED] [47PEL/DUV] [70DEY/PEN], [73DEY/BER] [97BAG/GAR], [97BAG/GAR2] [69PER/KRO], [70PER/KRO] [80PER/POL], [83PER/MIS] [69VAN/PER] [90AHR/DAH] [97BAR/CEC] [59PET/WIE] [78PIT/PET] [70BES/CHA] [73KHA/PET], [74PET/KHA], [84BOU/PET], [97VAZ/ATB], [97VAZ/ATB2] [70PET/STE2] [56KOR/PET] [88PET/TSY] [74BYK/PET2] [56GRI/PET2], [58GRI/PET2], [59GRI/PET], [60GRI/PET], [63GRI/PET], [72GRI/PET2] [67IRV/MIL], [77BRO/PET], [2002PET/POW] [42PFE/OFF], [43PFE/SIM], [49PFE/SCH] [79JAN/PFE] [91BOU/PHI] [99STE/GIA], [2000ROB/STE] [95PII/LAJ] [94GRE/HUR], [95GRE/HOL], [2000ASK/CHA] [48PIN/BAT], [49BAT/PIN] [81DEG/PIR] [60LEB/PIR], [60LEB/PIR2], [62LEB/PIR2] [36PIT/GOR] [73PIT], [73PIT/MAY], [74PIT/KIM], [74PIT/MAY], [75PIT], [76PIT/SIL], [78PIT/PET], [79BRA/PIT], [79PIT], [91PIT] [86RAO/PIU] [75FRI/PIZ]
Petrazhak, G. I. Petrenko, V. V. Petropavlov, N. N. Petrova, I. K. Petrzhak, G. I. Pettit, L. D. Pfeiffer, P. Pfendt, L. B. Philipponneau, G. Piazzese, D. Piispanen, J. Pilkington, N. J. Pinching, G. D. Piro, 0 . E. Pirozhkov, S. V. Pitzer, E. C. Pitzer, K. S.
Pius, I. C. Pizer, R.
1072
Author Plumb, R. C. Plyasunov, A. V. Plyasunova, N. V. Plyushchev, V. E. Poczynajlo, A. Podder, N. G. Podlaha, J. Podlahova, J. Pogrebnaya, V. L. Pokrovsky, O. S. Poluektov, N. S. Polynova, T. N. Poojary, M. D. Popa, V. T. Popov, A. I. Popov, V. Porai-Koshits, M. A. Portanova, R. Porter, J. A. Porto, R. Pospelova, L. A. Postel, M. Potter, P. E. Povey, D. C. Powell, H. K. J. Powell, K. J. Power, L. F. Pozhidaev, A. I. Poznyakov, A. N. Prabhakar, B. K. Prasad, B. Prasilova, J. Pratt, T. H. Preis, W. Pribylov, E. P. Priestley, P. T. Prijs, B. Proks, I. Pronk, L. A. Ptitsyn, B. V. Puigdomenech, I. Purdie, N. Purrello, R.
LIST OF CITED A UTHORS
Reference [52MAR/PLU] [97ALL/BAN], [97GRE/PLY], [97GRE/PLY2], [97PUI/RAR] [98PLY/ZHA] [57BOL/KOR3] [89POC], [91POC] [75AND/POD] [68NAA/POD] [68NAA/POD] [92POG/KAP] [97POK/CHO], [98POK/BRO], [99BRO/POK], [2001BOR/MOO], [2001CHO/BON] [80PER/POL], [83PER/MIS] [74POZ/POR], [86POL/FIL] [86GOV/PAT] [96SCH/CON] [79HEU/POP] [79JAN/PFE] [74POZ/POR], [84NES/POR2], [86POL/FIL] [73POR/PAO] [64POR], [67BUR/POR] [87CIA/IUL], [99CIA/IUL] [68POS/ZAI2] [69POS/VED] [2001LEM/FUG] [73LAD/POV], [74LAD/POV] [86GRE/POW] [2002PET/POW] [71MOO/POW] [74POZ/POR] [78MOS/POZ], [79MOS/POZ], [79MOS/POZ4] [89PRA/RAO] [74SIN/GHO], [81SIN/GHO] [61STA/PRA], [70PRA/HAV] [75PRA/JON] [2005GAM/BUG] [68PRI/FAZ] [65PRI/SEB] [82SIG/SCH] [88NER/VIT], [91NER/PRO] [83KOR/PRO] [56GRI/PTI], [59PTI/TEK], [59TEK/VIN2] [95GRE/PUI], [95SIL/BID], [97ALL/BAN], [97PUI/RAR] [69LIT/PUR] [83ARE/MUS], [90ARE/CON]
LIST OF CITED A UTHORS Author Pursiainen, J. Pyatnitskii, I. V. Pyne, G. T. Pytkowicz, R. M. Qing, Z. Quintino, S. Raad, J. S. Raaflaub, J. Rabenstein, D. L. Radalla, A. M. Radchenko, V. M. Raddatz, K.-H. Radhamma, D. Rafailoff, R. Rai, D. Rais, J. Rajan, K. S. Rajan, N. L. Rak, J. Ram, K. Ramachandraiah, G. Ramakrishna, V. V. Ramamoorthy, S. Ramanujam, A. Ramis, G. Rand, M. H. Randall, M. Randall, W. J. Rao, G. S. Rao, L. Rao, L. F. Rao, M. V. R. Rao, P. S. Rao, V. B. M. Rao, V. K. Raptopoulou, C. P. Rard, J. A. Ray, P. Ray, U. Raymond, D. P. Razbitnoi, V. M.
Reference [94KIS/SOV] [71PYA/KRA2] [48PYN] [79JOH/PYT], [79PYT] [87SUE/HU] [97DEL/FIG], [97DEL/QUI] [89SIJ/ROS] [60RAA] [66KUL/RAB] [98KHA/RAD] [89VAS/KAL], [90VAS/KAL2] [42KLE/RAD] [65BHA/RAD] [57BOB/RAF] [98RAI/FEL], [98RAI/RAO], [98RAI/RAO2], [2003CHO/RAI], [2003RAI/HES], [2004RAO/GAR] [64CAL/KYR] [65RAJ/MAR], [67RAJ/MAR], [78RAJ/MAI], [81 RAJ/MAI] [81 RAJ/MAI] [95RAK/SKU] [89RED/RAM] [88TAQ/HUS] [76BAG/RAM3], [77RAM/RAM], [77RAM/RAM2], [79KUS/GAN] [73RAM/MAN2], [75RAM/MAN] [77RAM/RAM], [77RAM/RAM2], [79KUS/GAN] [82GAR/RAM] [95GRE/PUI], [95SIL/BID], [99RAR/RAN], [2001LEM/FUG], [2003GUI/FAN] [23LEW/RAN], [61LEW/RAN] [65MOE/MAR] [73CHA/RAO] [98RAI/RAO], [98RAI/RAO2], [2002RAO/JIA], [2003CHO/RAI], [2003RAI/HES], [2004RAO/GAR] [84RAO/CHO] [82RAO/AGA] [89PRA/RAO] [85RED/RAO], [86RED/RAO] [86RAO/PIU] [98MAT/RAP] [97ALL/BAN], [97PUI/RAR], [99RAR/RAN] [56DUT/RAY] [99MAJ/SAR] [87RAY/DUF] [60LEB/PIR2], [62LEB/PIR2]
1073
1074
Author Reas, W. H. Reboso, R. Rebstockova, T. Rechnitz, G. A. Reck, G. Reddy, C. V. R. Reddy, G. Reddy, K. V. Reddy, M. G. R. Reddy, M. S. Reddy, P. R. Redoute, J.-P. Reed, D. A. Reed, D. T. Reed, G. H. Reed, R. B. Rees, J. H. Rees, T. F. Reeves, R. D. Regel', L. L. Reibenspies, J. J. Reichert, D. E. Reid, R. S. Reilley, C. N. Reilly, S. D. Reimann, T. Rekharskii, M. V. Rey, A. Reynolds, C. A. Ribas, X. Ribeiro, C. A. Rice, D. A. Richard, P. Richards, M. P. Richards, T. W. Richens, D. T. Richet, C. Rieman III, W. Rigano, C.
Righellato, E. C. Riglet, C. Riley, P. I.
LIST OF CITED A UTHORS
Reference [49REA], [51CON/REA] [89FUE/REB], [89FUE/REB2] [77REB/BAR] [64REC/ZAM], [68REC/LIN], [69REC/HSE] [92SEI/MUE] [91RED/DEV], [94RED/SHI] [90RED/SAT] [90RED/SAT] [89RED/RAM], [91RED/DEV], [94RED/SHI] [89RED/RAM] [85RED/RAO], [86RED/RAO] [73BAR/RED] [81REE/OLM] [98REE/WYG] [66KUL/REE] [82LUF/REE] [2000ASK/CHA] [84REE/DAN] [80HED/LID], [83BAK/BAK] [91GRI/BAT] [95LU/MOT] [96SUN/AND] [93CHE/REI] [56SCH/REI], [65WRI/HOL] [2004BOU/REI] [90ROS/REI] [84REK/GAL] [96REY/TER] [51BAR/ARG] [89RIB/SAL], [89RIB/SAL2] [93SPI/RIB] [98MOR/ALM] [67RIC] [2001BER/BAU] [01RIC/MCC], [29RIC/MAI] [97RIC] [98MOT/RIC] [42MCC/RIE] [80ARE/CAL], [80DAN/RIG], [81 AMI/DAN], [81CUC/DAN], [81DAN/RIG], [82AMI/DAN], [83DAN/RIG], [83DAN/RIG2], [84DAN/OST], [85DAN/RIG], [85DAN/ROB], [90ROB/STE], [92ROB/STE] [31 BAN/RIG] [87RIG/VIT], [89RIG/ROB], [90RIG] [91CHR/CUM]
LIST OF CITED A UTHORS
Author Ringbom, A. Rivero, M. Rivett, A. C. D. Rivin, K. N. Rivina, Z. M. Rizkalla, E. N. Rizzarelli, E. Robertson, G. P. Robertson, J. M. Robinson, R. A. Robouch, P. Rodatz, P. Rodier, N. Rodriguez, A. Roelofsen, G. Rogozin, Y. M. Roman, P. Romanetti, R. Ronnquist, O. Ronzani, M. Roos, J. T. H. Rorabacher, D. B. Rosch, F. Rose, S. J. Rosen, E. Rosevear, A. Rossi, A. Rossi, H. Rossotti, F. J. C. Rossotti, H. Roth, R. Roth, W. A. Rudenko, T. I. Ruff, O. Rumbaut, N. A. Rumyantseva, T. A. Rundcrantz, E. Russel, J. D. Ruzicka J. Ryabchikov, D. I. Rydberg, J. Rykova, G. A. Sabine, T. M. Sachan, N. P.
Reference [57RIN/SII], [68WIK/RIN] [98GON/KRE] [19RIV/OCO] [68SPI/MAR] [68SPI/MAR] [85RIZ/ANT], [86CHO/DAD], [89RIZ/SUL], [90RIZ/NEC] [78ARE/MUS], [79AMI/DAN], [80GRA/MUS] [93GRE/HAR] [47DUN/ROB] [59ROB/STO] [89RIG/ROB], [89ROB], [95SIL/BID] [1884STO/REC] [86VIO/ROD] [89FUE/REB], [89FUE/REB2], [98ALD/BIA] [72ROE/KAN] [70GRE/BRY2] [93ROM/GUZ] [73BAR/RED], [75BAR/DUB] [69WER/NOR] [85DAN/SON] [77ROO/WIL] [71ROR/MAC] [89ROS/DIT], [90ROS/REI], [2003ZHE/MAU] [91BIC/EDW] [2005OLI/NOL] [95GRE/HOL] [88CAM/MUN], [93ATZ/FIL] [01KOH/ROS] [61ROS/ROS] [61ROS/ROS], [69ROS] [73FIN/ROT] [34BEC/ROT] [56FOM/KAR] [30RUF] [71 RUM] [73SHI/RUM2] [69GRE/GAR] [80WIL/JON] [73HAN/RUZ] [60RYA/ERM], [62MAR/RYA2], [62RYA/MAR], [64RYA/MAR] [2001LEM/FUG] [70VOR/RYK], [73RYK/SHT] [69COP/SAB], [69COP/SAB2] [82SAC/CHA]
1075
1076
Author Sacktor, B. Sadofeev, I. G. Saeeduddin Safonova, N. D. Sagatys, D. S. Saini, G. Salifoglou, A. Sal'nikov, Y. I. Saltan, N. P. Salvado, V. Salvatore, F. Sammartano, S.
Samuel, B. Sanchez, A. Sandell, E. B. Sandino, M. C. A. Sankaran, P. S. Sanna, D. Sansoni, B. Sapifia, F. Saravanan, N. Sari, H. Sarkar, P. Sartori, G. Sato, T. R. Satoh, S. Satyanarayana, S. Saunders, G. C. Sausova, S. Savitskii, A. P. Sawyer, D. T. Saxena, S. Scaife, D. E. Scarcella, R. Scatchard, G.
LIST OF CITED A UTHORS
Reference [79BUL/SAC] [95MIR/SAD] [96SAE/KHA] [60MAT/SAF] [91HAR/SMI] [64CAM/OST] [98MAT/RAP] [84SAL/DEV], [86SAL/BOO], [86SAL/ZHU], [89SAL/BOO], [91 SAL/BOO], [98SAL/BOO], [98SAL/BOO2] [94ZHI/MAT2], [94ZHI/MAT3], [94ZHI/MAT4] [89RIB/SAL], [89RIB/SAL2] [83FER/GRE], [85FER/GRE], [98FER/MAN] [78ARE/MUS], [79AMI/DAN], [80ARE/CAL], [80DAN/RIG], [80GRA/MUS], [81AMI/DAN], [81CUC/DAN], [81DAN/RIG], [82AMI/DAN], [83ARE/MUS], [83DAN/RIG], [83DAN/R1G2], [84DAN/OST], [85DAN/RIG], [85DAN/ROB], [85ROB/STE], [86CAP/ROB], [88DAN/OST], [90DAN/ROB], [90DAN/ROB2], [90ROB/STE], [92DAN/ROB], [92ROB/STE], [95ROB/GIA2], [97FOT/GIA], [99STE/GIA], [2000ROB/STE], [2001STE/FOT], [2004CRE/ROB] [70HIG/SAM] [95CHI/DOM] [33KOL/SAN] [95GRE/PUI] [83CHH/GOP] [95KIS/BUG], [2000BUG/KIS] [62AXT/HAN] [92SAP/COR] [94SAR/SIV] [2001SAR] [99MAJ/SAR] [34SAR] [52SAT/DIA] [39SAT/SOG] [90RED/SAT] [98BUR/FAH] [91NER/PRO] [89SVE/DOB] [58SAW/PAU], [59SAW/PAU] [97ALL/BAN] [53ALL/SCA] [85ROB/STE] [36SCA], [76SCA]
LIST OF CITED A UTHORS
Author Schaap, W. B. Schaefer, J. B. Schaible, A. Scheller, K. H. Schietecatte, W. Schmahl, N. G. Schmid, R. W. Schmitz, E. Scholder, R. Schott, J. Schriver, L. Schubert, J. Schumm, R. H. Schunk, A. Schupp, III, O. E. Schutz, P. W. Schwartz, L. M. Schwarz, H. Schwarz, J. A. Schwarzenbach, G.
Scott, M. Seaborg, G. T. Sebborn, W. S. Seekamp, W. Seifert, S. Sekine, T. Selman, R. F. W. Sen, D. N. Serebrennikov, V. V. Serezhkin, V. N. Serezhkina, L. B. Sergeev, A. V. Sergeyeva, E. I. Sesha Sayi, Y. Sevost'yanova, E. P. Shakhrai, T. A. Shakirova, N. L. Shalimov, V. V. Shalinets, A. B. Shamir, J. Shandakov, V. A.
Reference [54SCH/LAI], [68KUE/SCH] [68EBE/SCH] [2002TIT/WIE] [82SIG/SCH] [58MEC/SCH] [61BAR/BEC] [56SCH/REI] [49PFE/SCH] [27SCH2], [27SCH3], [27SCH/GAD] [91 AND/CAS] [76TRI/SCH] [52SCH/LIN], [57LI/WES] [82WAG/EVA] [2004SCH/MAU] [68WAT/SCH] [33LAT/SCH] [70SCH/HOW] [57BER/MUL] [96SCH/CON] [47SCH/ACK], [47SCH/WIL], [48SCH/ACK], [51SCH/FRE], [54SCH/GUT], [57BJE/SCH], [57SCH/AND], [60SCH/FIS] [09DEA/SCO] [86WEI/KAT] [65PRI/SEB] [1862SEE] [92SEI/MUE] [64SEK], [65SEK], [65SEK2], [65SEK3], [65SEK4], [67HAS/MAK], [74MOR/SEK], [76MUR/KUR] [65PRI/SEB] [81MAL/SEN] [65SKO/SER], [66SKO/SER], [67KUM/SER], [67SKO/KUM], [69SKO/MAM], [70MER/KUM] [93MIS/MIK], [96MIK/GOR2], [2000MIK/GOR2] [93MIS/MIK], [96MIK/GOR2], [2000MIK/GOR2] [83SHC/MIK], [85MIK/LOB], [85SHC/ORL], [95MIS/SER] [92FUG/KHO] [83CHH/GOP] [85SEV] [92POG/KAP] [91 SAL/BOO] [74SHA/KII], [75ZAI/NIK] [67LEB/MAK], [71SHA], [72SHA] [58HEI/FRI] [85DAL/GUS]
1077
1078
Author Shankar, J. Sharma, H. D. Sharma, K. R. Sharma, R. C. Sharna, H. S. Sharov, V. A. Shastri, N. K. Shchelokov, R. N. Shehyn, H. Sheka, I. A. Shekhanova, L. D. Shelest, V. P. Shelton, R. Shesterikov, N. N. Sheyanova, F. R. Shiao, D. Shilin, I. V. Shilov, V. P. Shimbarev, E. V. Shimizu, S. Shishkina, O. V. Shivaraj Shlyakhtin, O. A. Shmidt, V. S. Shock, E. L. Shterman, V. S. Shternina, E. B. Shtokalo, M. I. Shu, F. R. Shuaib, N. M. Shubina, T. M. Shubochkin, L. K. Shvedov, V. P. Sidorenko, V. I. Sigel, H. Siitonen, S. Sijpkes, A. H. Sillen, L. G. Silva, R. J. Silvester, L. F.
LIST OF CITED A UTHORS
Reference [65BHA/RAD] [64BAN/SHA], [69SUB/SIN] [2002SHA] [77JAI/KUM], [78JAI/SHA], [89NAG/SHA] [83CHH/GOP] [82NIK/SHA] [69SHA/AMI] [61CHE/GOL], [67SHC/BEL], [67SHC/BEL2], [68SHC/BEL], [69SHC/BEL], [83SHC/MIK], [85MIK/LOB], [85SHC/ORL], [95MIS/SER] [40SHE/PAL] [78STR/KAR] [73VAS/SHE2], [76VAS/SHE] [75TER/SHE], [77KOS/SHE] [58IRV/SHE] [84 AND/KIR] [66KOR/SHE2] [64WIL/SHI] [73SHI/RUM2] [70SHI/KRO], [74NIK/SHI], [74SHI/NIK2], [79SHI/STE2], [85SHI] [89VAS/KAL] [77SHI/TAN], [80TAN/MOR] [2000MIK/GOR2] [94RED/SHI] [98MAR/SHL] [84 AND/KIR] [88SHO/HEL], [89SHO/HEL], [89SHO/HEL2], [92SHO/OEL] [68GOR/FIL] [70VOR/RYK], [73DUD/SHT], [73RYK/SHT], [74DUD/SHT], [74DUD/SHT2] [61BAB/SHT] [71ROR/MAC] [79ELE/ELD] [67ZAI/SHU2] [57ZAI/SHU2] [62SHV/MAS2] [71GOR/MIK] [82SIG/SCH] [57RIN/SII] [89SIJ/ROS] [57BJE/SCH], [64SIL/MAR], [69SIL/WAR2], [71SIL/MAR] [92SIL], [95SIL/BID] [76PIT/SIL], [78PIT/PET]
LIST OF CITED A UTHORS
Author Simms, H. S. Simoes, M. L. S. Simons, E. L. Simons, H. Simpson, R. B. Singh Mudher, K. D. Singh, D. Singh, R. N. Singh, R. P. Singh, S. Singh, S. P. Sinha, A. K. Sircar, J. K. Siregar, C. Sirotkova, L. Sivasankar, B. N. Sjoberg, S. Sjoblom, R. Skorik, N. A.
Skrifvars, B. Static, D. Skurski, P. Skvortsova, L. I. Smirnov, A. N. Smirnova, I. D. Smirnova, N. S. Smirnova, T. V. Smit, P. H. Smith, A. Smith, G. Smith, G. L. Smith, G. S. Smith, P. N. Smith, R. Smith, R. M. Smith, T. D. Smith, W. H. Smith, W. M. Smyshlyaev, S. I. Sochevanov, V. G. Sogabe, T. Sohnel, O.
1079
Reference [28SIM], [28SIM2] [68SIL/SIM], [69SIL/SIM], [70SIL/SIM], [70SIL/SIM2] [64SIM/NEW] [43PFE/SIM] [61 SIM] [75JAY/SIN] [55MOH/SIN] [69SUB/SIN] [89SIN], [91SIN/YEB] [85SIN/YAD] [74SIN/TAN], [75SIN/TAN] [74SIN/GHO], [78SIN], [81SIN/GHO] [84SIR] [94TOC/SIR] [81SIR/KAL] [94SAR/SIV] [83OHM/SJO], [83OHM/SJO2], [85SJO/OEH2] [78COO/WOO] [65SKO/SER], [66SKO/SER], [67SKO/KUM], [69SKO/KUM], [69SKO/MAM], [70MER/KUM], [71SKO/KUM], [72BEL/KAZ], [73CHU/SKO2] [57RIN/SII] [84BRE/SKR] [95RAK/SKU] [95ISU/TAR] [88BYK/KUZ2] [59KLY/SMI3], [59KLY/SMI4] [87THU/KUP], [88EVS/SMI], [89SVE/DOB] [67KRO/MEF2], [69MEF/KRO2] [74DER/SMI], [78DER/SMI] [73FIN/SMI], [81 BUR/FIN] [91HAR/SMI] [82HUA/ALF] [59SMI/HOA] [69BRU/NAN] [61MAN/FRA] [77MAR/SMI], [82MAR/SMI], [85SMI/MOT], [2003 SMI/MAR] [57FOR/SMI], [57FOR/SMI2], [59SMI], [60ADA/SMI] [2004BOU/REI] [65BAU/SMI] [72SMY] [69SOC/VOL] [39SAT/SOG] [85SOH/NOV], [92MIL/GRA], [92VEL/SOH], [93SOH/COS], [97SOH/KRO]
1080
Author Sokhina, L. P. Soklovskaya, T. M. Solans, X. Sollins, P. Solntseva, L. V. Solovkin, A. S. Somers, P. J. Somsen, G. Sonego, S. Song, C.-L. Sorochan, R. I. Soto-Guerrero, J. Soto-Guerrero, J. A. Sovago, I. Spahiu, K. Spedding, F. H. Spindler, M. W. Spirandeli Crespi, M. Spitsyn, V. I. Sprenkels, A. J. J. Stace, B. C. Stach, J. Staritzky, E. Stary, I. Stary, J. Staveley, L. A. K. Steele, B. D. Stepanov, A. V.
Stepanova, E. S. Stepanova, L. N. Sterlyadkina, G. V. Stevens, G. Still, E. R. Stober, H. Stohmann, F. Stokes, R. H. Stone, J. A. Stout, B. E. Strain, H. H. Streit, J.
LIST OF CITED A UTHORS
Reference [58GEL/SOK], [60SOK/GEL], [84AND/KIR] [92POG/KAP] [93FON/SOL] [77GRA/CRO] [88BYK/KUZ2] [66SOL/IVA], [67SOL/TSV], [71SOL/IVA2], [72SOL/IVA], [74SOL] [93GRE/HAR] [89SIJ/ROS] [85DAN/SON] [2001GUO/LIA] [63FRI/VER] [2002HAV/SOT] [2002SOT] [94KIS/SOV] [83SPA], [97ALL/BAN], [97GRE/PLY2], [2001LEM/FUG] [52SPE/MIL] [92GRE/MOR], [93GRE/HAR], [94GRE/HUR], [94GRE/LIN], [95GRE/HOL], [97GRE/HUR] [93SPI/RIB] [68SPI/MAR], [83ZUB/KRO3] [82KRU/MIL] [74LAD/POV] [92SEI/MUE] [56STA/CRO3] [66STA] [60STA3], [61STA/PRA], [62STA/BAL], [63STA], [78STA/FRE] [56CAR/STA], [58TIL/STA] [09DEA/SCO] [65STE/MAK], [65STE/MAK2], [67LEB/MAK], [67STE/MAK2], [69STE/MAK2], [70STE/PAZ], [71STE], [76MAK/STE] [79SHI/STE2] [70PET/STE2] [71PAZ/STE] [82KRU/MIL] [80STI/WIK], [84GRE/WIK] [72STO] [1884STO/REC], [1885STO], [1889STO/KLE] [59ROB/STO] [72JON/STO] [87CAC/NEC], [89STO/CAC] [52SAT/DIA] [98STR/TRA]
LIST OF CITED A UTHORS
Author
Reference
Strizhakova, N. G. Strom, C. S. Struchkov, Y. T. Stuehr, J. E. Stumm, W. Stimzi, H. Stupko, T. V. Subba Rao, M. Subbaraman, P. R. Subbarao, M. Subramanian, M. S. Sue, Z. Sugiura, Y. Sukhanov, L. P. Sullivan, J. C.
[78STR/KAR] [95STR/GRI] [91GRI/BES], [96GRI/CHA2], [97GRI/CHA] [75BRI/STU] [81STU/MOR], [96STU/MOR] [75AND/POD] [96MIR/PAS] [83CHH/GOP] [69SUB/COR] [86RAO/PIU] [69SUB/SIN] [87SUE/HU] [77HOJ/SUG] [79ZHI/KOL], [80KOL/ZHI] [78COO/WOO], [81NAS/MUL], [89RIZ/SUL], [2001LEM/FUG] [82WIL/SUL] [95SUN/MOT], [96SUN/AND], [98SUN/MAR] [98OBR/MIT] [57DUT/SUR] [77ANS/SUR] [83BAR/SUS] [66MOO/SUT] [77HED/OLI] [89SHO/HEL2], [92SHO/OEL] [89SVE/DOB] [78NOV/LUC] [84VEN/SWA], [85VEN/SWA] [73CAR/SWA], [75CAR/SWA] [75MER/GAT] [58MIG/SYC] [79FRI/SYC] [77ANS/SUR] [80AGR/SYS], [81SYS/AGR], [86SYS/AGR], [87LEO/FRI] [2002SZA/FIS], [2003VAL/MOL] [73BAR/RED], [75BAR/DUB] [82INO/TOC] [59KIR/TAN] [77HOJ/SUG], [80TAN/NEG] [92TAN/NOM] [63TAN/TER] [74SIN/TAN], [75SIN/TAN] [61 LI/TAN] [88TAN/HEL] [77SHI/TAN], [80TAN/MOR], [2001 TAN/FUR]
Sullivan, J. M. Sun, Y. Sunaric, S. M. Sur, B. Surawski, H. Sustacek, V. Sutin, N. Svanstrom, P. Sverjensky, D. A. Svetlova, I. E. Svicekova, M. Swamy, S. J. Swartzfager, D. G. Swennen, L. Sychev, A. Y. Sycheva, G. M. Synowietz, C. Sysoeva, T. F. Szabo, Z. Tachoire, H. Takahashi, T. Tanaev, I. V. Tanaka, H. Tanaka, M. Tananaev, I. V. Tandon, J. P. Tang, P. Tanger, IV, J. C. Taniguchi, M.
1081
1082
Author Taqui Khan, M. M. Tarasov, K. A. Tarrant, J. R. Tate, S. S. Tawashi, R. Taylor, H. S Taylor, J. R. Tazzoli, V. Tebelev, L. G. Teixeira, M. Tekster, E. N. Temple, R. B. Tentolini, U. Ter Meer, N. Teran, M. Terao, H. Tereshin, G. S. Ternovaya, T. V. Teslenko, L. A. Teterin, E. G. Thakur, S. The, P. J. Thiele, H. Thoenen, T. Thomas, J. D. R. Thomas-David, G. Thomason, H. P. Thompson, L. C. Thomsen, J. Thomson, T. Thrierr-Sorel, A. Thuan, L. B. Tikhonova, L. I. Tillotson, M. J. L. Timberlake, C. F. Tits, J. Tobia, S. K. Tochiyama, O. Togashi, H. Tomat, G. Tomazic, B. Tomilin, S. V. Tomsicek W. J. Tomson, M. B.
LIST OF CITED A UTHORS
Reference [80TAQ/HUS], [88TAQ/HUS] [95ISU/TAR] [76MCD/KEL] [65TAT/GRZ], [70GRZ/TAT] [82LEP/TAW] [16HEN/TAY] [82TAY] [80TAZ/DOM] [74SHA/KII] [97DEL/QUI] [56GRI/PTI], [59PTI/TEK], [59TEK/VIN2] [62BRU/KAI] [2002CUR/TEN] [67WEI/MEE] [96REY/TER] [96YUC/HOK] [63TAN/TER], [74TER/NIK], [74TER/NIK2], [82TER/IVA] [75TER/SHE], [77KOS/SHE] [88PET/TSY] [84 AND/KIR] [92THA/KUM] [87THE/BUS] [43BRI/THI] [2002HUM/BER] [79CRA/MOO] [77DUC/BER] [97GRE/HUR] [65MOE/MAR] [1882THO] [1808THO] [65HOC/WAT], [68GER/WAT] [87THU/KUP] [67TIK], [67TIK2] [58TIL/STA] [64TIM] [2002TIT/WIE], [2004TIT/WIE] [63TOB/MIL], [64TOB/MIL] [82INO/TOC], [83INO/TOC], [92TOC/INO], [92TOC/INO2], [92TOC/INO3], [94TOC/SIR] [88TOG/KOJ] [72MAG/BIS] [79TOM/NAN], [79TOM/NAN2], [80TOM/NAN] [84TOM/VOL] [41LAR/TOM] [69LIT/PUR]
LIST OF CITED A UTHORS
Author Topfer, J. Torres, J. Toth, I. Touche, M. L. D. Traina, S. J. Trambouze, Y. Tran-Ho, L.-C. Trapp, H. Tremaine, P. R. Tribalat, S. Trifuoggi, M. Tripathi, S. Tripathi, S. R. Trosper, T. Trubnikova, A. I. Trunov, V. K. Tsohos, A. Tsuchiya, R. Tsujikawa, I. Tsunoda, Y. Tsvetkova, Z. N. Tsygankova, I. G. Turner, D. R. Tweedle, M. F. Uchtman, V. A. Udal'tsova, N. I. Ueno, K. Ullah, M. R. Ullman, W. J. Umayahara, A. Unmack, A. Unrein, P. J. Urban, G. Urbanska, J. Usseglio-Tomasset, L. Ustinskaya, V. I. Vanura, P. Vacca, A. Valiente, M. Valkiers, S. Vallet, V. Valyaeva, V. A. Valyasevi, A. Van Auken, T. V. Van de Stadt, E. Van de Water, R. F.
Reference [89FEL/TOP] [98GON/KRE] [92BAN/BLI] [76MAK/TOU] [96XUE/TRA] [63BRE/CLA2], [64BRE/CLA] [97KON/TRA], [98STR/TRA] [36TRA] [85HOV/TRE], [86HOV/HEP], [88HOV/HEP2] [76TRI/SCH] [98FER/MAN], [2000VAS/CAR] [92TRI/TRI] [92TRI/TRI] [63WAT/TRO] [75KOR/PAT] [80AGR/SYS], [81SYS/AGR], [86SYS/AGR] [98MAT/RAP] [65NAG/UMA] [88TOG/KOJ] [59IGU/YOS] [67SOL/TSV] [88PET/TSY] [92TUR/SAN] [94KUM/CHA] [79BAR/UCH] [60PAL/UDA] [72HOS/UEN], [77HOS/UEN], [77HOS/UEN2] [90ULL/BHA] [2001LEM/FUG] [65NAG/UMA] [29BJE/UNM] [76CHO/UNR] [66NEB/URB] [81URB/BIE], [81URB/BIE2] [78USS/BOS] [59VIN/GET] [76VAN/KUC], [80VAN/KUC] [97BAR/CEC], [98ALD/BIA] [89RIB/SAL], [89RIB/SAL2] [83CHO/BOK] [2003VAL/MOL] [78KOR/VAL] [71CHU/REE] [91 AUK] [1895JOR/STA] [86CRU/HEY], [86CRU/WAT]
1083
1084
Author Van den Berg, J. A. Van Eldik, R. Van Embden, C. Van Loon, L. R.
Van Miltenburg, J. C. Van Reen, R. Van Rossum, P. Vance, J. E. Vanni, A. Varhelyi, C. Vasca, E. Vasil'ev, V. I. Vasil'ev, V. P.
Vasil'ev, V. Y. Vasil'eva, V. N. Vast, P. Vasudeva Rao, P. R. Vaz, J. L. L. Vecher A. A. Vedel, J. Velich, V. Venkataramana, P. Venkatasubramanian, K. Venkatnarayana, G. Venturi, M. Venturini, M. Venugopal, V. Vercammen, K. Verenikin, V. B. Veresova, R. A. Verkade, P. E.
LIST OF CITED A UTHORS
Reference [76BRI/ELD], [76BRI/ELD2], [76BRI/ELD3], [77BRI/ELD] [76BRI/ELD], [76BRI/ELD2], [76BRI/ELD3], [77BRI/ELD] [83KOR/PRO] [91LOO/KOP], [99LOO/GLA], [99VER/GLA], [99VER/GLA2], [2001VER/GLA], [2003RAI/HES], [2004LOO/GLA] [82KRU/MIL] [71CHU/REE] [89SIJ/ROS] [33FOO/VAN] [74VAN/GEN], [75DAN/OST] [72MAN/VAR] [98FER/MAN], [2000FER/IUL], [2000VAS/CAR], [2002CUR/TEN] [89VAS/KAL], [90VAS/KAL2] [62VAS], [71VAS/KOC2], [73VAS/KOC], [73VAS/SHE2], [74VAS/KOC], [75VAS/BEL], [76VAS/BEL], [76VAS/BEL2], [76VAS/BEL3], [76VAS/KOC], [76VAS/SHE], [77LYM/VAS], [77VAS/LYM], [77VAS/LYM2], [78VAS/KOC], [78VAS/LYM], [78VAS/LYM2], [79VAS/KOC], [81VAS/VAS], [82VAS/BEL], [82VAS/VAS], [84VAS/GRE], [85VAS/KOZ], [86VAS/KOZ], [87VAS/KOZ], [88VAS/BOR], [90KOZ/VAS], [98KOC/VAS] [89VAS/KAL], [90VAS/KAL2] [81VAS/VAS], [82VAS/VAS] [87BER/VAS] [79KUS/GAN] [97VAZ/ATB], [97VAZ/ATB2] [85DAL/GUS] [69POS/VED] [92VEL/SOH], [93SOH/COS], [97SOH/KRO] [83CHH/GOP] [88TAQ/HUS] [84VEN/SWA], [85VEN/SWA] [89NES/HOF] [89VEN/BER] [97DAH/CHA2] [99LOO/GLA], [99VER/GLA], [99VER/GLA2], [2000VER], [2001VER/GLA], [2004LOO/GLA] [53AST/VER] [63FRI/VER], [68FRI/VER] [26VER/HAR]
LIST OF CITED A UTHORS
Author Verrall, R. E. Vesey, J. A. Vicedomini, M. Vinek, G. Vines, S. Vinogradova, L. I. Viossat, B. Visyashcheva, G. I. Vitiello, A. Vitkova, S. Vitorge, P. Vlasov, L. G. Vlieland, C. A. Vofisek, J. Voissiere, G. Volkov, O. N. Volkov, Y. F. Volkova, G. A. Von Glehn, M. Von Rechenberg, C. Vorob'ev, G. I. Vorob'ev, S. P. Voronova, E. M. Vosburgh, W. C. Votava, J. Wada, H. Wagman, D. D. Wahlgren, U. Walker, M. D. Walker, O. J. Wall, N. A. Walser, M. Walter-Levy, L. Wang, P. Wang, S. Wanner, H.
Warner, R. C. Warnquist, B. Warwick, P. Watanabe, S. Watelle-Marion, G.
1085
Reference [66CON/VER] [91CHR/CUM] [73BOT/VIC], [73BOT/VIC2] [67MES/VIN] [2003WAR/EVA], [2004WAR/EVA] [59TEK/VIN2], [59VIN/GET] [86VIO/ROD] [84TOM/VOL] [2000CIA/IUL] [88NER/VIT] [87RIG/VIT], [89RIG/ROB], [93GIF/VIT2], [94CAP/VIT], [95CAP/VIT], [2001LEM/FUG] [64PAN/VLA] [13HAR/DRU] [59VOR] [70BES/CHA] [92POG/KAP] [84TOM/VOL] [69SOC/VOL] [68NOR/WER] [1880REC], [1884STO/REC] [70VOR/RYK] [58FOM/VOR] [69VOR/IVA] [36VOS/ISR], [37CLA/VOS], [40VOS/BEC] [75VOT/BAR] [96YUC/HOK] [82WAG/EVA], [89COX/WAG] [2003VAL/MOL] [76COR/WAL] [25WAL] [2001CHO/BON] [61WAL] [64WAL/LAN] [90ARC/WAN] [90WAN/YAN] [88WAN], [91WAN], [92GRE/FUG], [95SIL/BID], [99RAR/RAN], [99WAN], [99WAN/OST], [2000GRE/WAN], [2000OST/WAN], [2000WAN/OST], [2001 LEM/FUG] [53WAR/WEB] [69SIL/WAR2] [2003WAR/EVA], [2003ZHE/MAU], [2004WAR/EVA] [63WAT/TRO] [64HOC/GER], [65GER/WAT], [65HOC/WAT], [68GER/WAT]
1086
Author Waterman, M. J. Watkins, K. O. Watters, J. I. Weber, I. Wede, U. Weier, M. L. Weigel, F. Welch, M. J. Wenk, F. Werner, P.-E. Wesolowski, D. J. Westfall, W. M. Whidby, J. F. Whiffen, D. H. Whistler, R. L. White, J. G. White, J. M. White, Jr., H. J. White, W. D. Whitfield, M. Wiedemann, H.-G. Wieland, E. Wijesinha, G. S. Wikberg, H. Wikberg, P. Wikmark, G. Wilford, S. P. Wilhoit, R. C. Willes, M. J. Willi, A. Williams, D. R.
Williams, G. A. Williams, S. J. Williard, J. W. Wilsing, H. Wilson, D. A. Wilson, M. J. Wisniak, J. Wood, S. A. Woods, M. Woodwark, D. R.
LIST OF CITED A UTHORS
Reference [65JEN/MOO], [65JEN/MOO2] [70DAV/WAT] [53WAT/AAR], [60WAT/DEW], [68WAT/SCH] [53WAR/WEB] [70EBE/WED] [2003FRG7WEI], [2004FRO/ADE], [2004FRO/WEI] [67WEI/MEE], [86WEI/KAT] [95SUN/MOT], [96SUN/AND], [98SUN/MAR] [71 AND/WEN] [68NOR/WER], [69WER/NOR] [91KET/PAL], [97BEN/PAL], [98KET/WES] [57LI/WES] [68LEY/WHI] [79WHI2] [63WHI/BEM] [77PAS/WHI] [57LI/WES], [59LI/LIN] [87GAR/PAR] [69LIT/PUR] [79WHI] [59PET/WIE] [2002TIT/WIE], [2004TIT/WIE] [45HOO/WIJ] [68WIK/RIN] [80STI/WIK], [84GRE/WIK] [83OLI/WIK] [63GRI/HUG] [64WIL/SHI] [83WIL/WIL] [47SCH/WIL] [76COR/WAL], [76MAK/TOU], [77ROO/WIL], [77WIL], [78ARE/MUS], [78BER/MAY], [82HUA/ALF], [83WIL/WIL], [84DUF/MAY], [87FIN/DUF], [87RAY/DUF], [90FIN/DUF], [91CHR/CUM], [91DUF/MAR] [87COL/WIL], [91BAL/COL] [92GRE/MOR], [94GRE/HUR], [94GRE/LIN], [95GRE/HOL] [82WIL/SUL] [1884STO/REC] [36PIT/GOR] [80WIL/JON] [95APE/DOV], [95APE/DOV2] [2000GAM/WOO] [78COO/WOO] [92GRE/MOR]
LIST OF CITED A UTHORS
Author Wooley, E. M. Woskressenskaja, N. Wozniak, M. Wrathall, D. P. Wright, D. L. Wygmans, D. G. Xia, Y. Xia, Y.-X. Xu, X.-L. Xue, S. Xue, Y. Yadav, J. Yadava, K. L. Yadava, P. C. Yakovlev, G. N. Yamane, T. Yang, J. Yanovskii, A. I. Yao, K.-M. Yastrebova, T. D. Yatsimirskii, K. B. Yeboah, Y. D. Yen, C. H. Yokoyama, H. Yoshimura, N. Yoshino, Y. Young, H. L. Yuchi, A. Yui, M. Yushkevich, V. F. Zabicky, J. Zahra, C. Zaitsev, A. A. Zaitsev, B. N. Zaitsev, L. M.
Zaitseva, V. P. Zakharova, F. A. Zakolupin, S. A. Zamochnick, S. B. Zanonato, P. Zerbinati, Q.
1087
Reference [2001 PAT/ WOO] [26WOS] [76NOW/CAN] [69CHR/IZA] [65WRI/HOL] [98REE/WYG] [98RAI/RAO2], [2003CHO/RAI], [2003RAI/HES], [2004RAO/GAR] [96CHO/ERT], [2001CHO/BON] [84ZHO/XU] [87SUE/HU] [96XUE/TRA] [89YAD/GHO] [76YAD/GHO], [85SIN/YAD], [92TRI/TRI] [76YAD/GHO], [85SIN/YAD] [60LEB/PIR], [60LEB/PIR2], [62LEB/PIR2] [60YAM/DAV] [90WAN/YAN] [91GRI/BES], [96GRI/CHA2], [97GRI/CHA] [62RYA/MAR] [73VAS/KOC], [74VAS/KOC] [54YAT/ZOL], [58YAT/KAR], [59YAT/KAR] [91SIN/YEB] [64 YEN/LIU] [61ISH/YOK] [2000YOS/OKA] [58YOS/IGU], [59IGU/YOS] [65BOT/CHA] [96YUC/HOK] [98RAI/FEL] [66MAK/YUS] [95APE/DOV], [95APE/DOV2] [73BAR/RED], [75BAR/DUB] [71ELE/ZAI] [74SHA/KII], [75ZAI/NIK] [57ZAI/SHU2], [58GEL/ZAI3], [62ZAI/BOC3], [64KHA/BOC2], [64KHA/ZAI2], [64ZAI2], [64ZAI3], [64ZAI/BOC2], [65ZAI/BOC], [66ZAI2], [67GEL/MOS], [67ZAI/SHU2], [68POS/ZAI2] [64GEL/ZAI], [73ZAI/ALE] [59MOS/ZAK], [60ZAK/MOS], [67ZAK/ORL2], [73ZAK/ORL] [77ZAK/KOR] [64REC/ZAM] [2002RAO/JIA] [88DAN/OST]
1088
Author Zhang, H.-L. Zhang, Y. Zhdanov, S. I. Zhdanovskikh, T. M. Zhernosekov, K. P. Zhiganov, A. N. Zhikharev, M. I. Zhou, X.-Y. Zhuravleva, N. E. Zielen, A. J. Ziogas, I. Zobnin, S. I. Zollinger, K. Zolotarev, E. K. Zolotov, Y. A. Zubarev, V. G. Zubavichus, Y.
LIST OF CITED A UTHORS
Reference [84ZHO/XU] [91LI/ZHA], [98PLY/ZHA] [60ALE/ZHD] [82NIK/SHA] [2003ZHE/MAU] [94ZHI/MAT2], [94ZHI/MAT3], [94ZHI/MAT4] [79ZHI/KOL], [80KOL/ZHI] [84ZHO/XU] [84SAL/DEV], [86SAL/ZHU] [56ZIE/CON] [89PAP/ZIO], [95PAP/ZIO] [78KOR/VAL] [83AND/GAS] [54YAT/ZOL] [61MOS/MAR], [61ZOL/MAR2], [63ZOL/ALI] [81ZUB/KRO], [82ZUB/KRO], [83ZUB/KRO], [83ZUB/KRO2], [83ZUB/KRO3], [84ZUB/KRO] [98MOR/ALM]