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1 was sufficient to maintain a constant Mg(2+) activity coefficient.
2 fraction closely tracked changes in its bulk activity coefficient.
3 ythrocyte glutathione reductase (EC 1.6.4.2) activity coefficient.
4 irst-order approximation for the interfacial activity coefficient.
5  to the PET images to obtain time-integrated activity coefficients.
6  KBFF models) to calculate and decompose the activity coefficients.
7 he physical principles that give rise to the activity coefficients.
8  a statistical thermodynamic theory of molar activity coefficients.
9  and the concentration dependence of surface activity coefficients.
10 he lattice theory expression for the surface activity coefficients.
11 ichaelis-Menten scheme with a time-dependent activity coefficient analogous to fractal-like kinetics
12 o show that one of the parameters is a total activity coefficient and the other is an intrinsic const
13 e obtained from the observed time-integrated activity coefficients and a new generation of anthropomo
14  the forefield of a receding glacier yielded activity coefficients and soil-atmosphere fluxes well in
15 ncentration scales, the lack of knowledge of activity coefficients, and the validity of the mathemati
16 apor pressure of the odorant and because the activity coefficients are similar within these homologou
17 chemical potential) of KCl, raising the salt activity coefficient as high as approximately 1.5 its va
18 version of the Debye-Hueckel formula for the activity coefficients as a function of added salt, we in
19 , and it is likely that TMAO and urea affect activity coefficients as well.
20  a temperature interval and estimates of the activity coefficients at infinite dilution in the same t
21 olume ratio, high- and low-affinity binding, activity coefficients, background fluorescence and optic
22 t effects are taken into account through the activity coefficients calculated at the molecular level
23 e mathematical constructs are valid and when activity coefficients can be ignored.
24 m dilute to concentrated, we show that molar activity coefficients can be represented by simple but r
25 s towards trehalose, as seen in the elevated activity coefficient compared with its value in pure wat
26      Here we report experimental density and activity coefficient data for aqueous mixtures of TMAO w
27                       The analytical form of activity coefficients depends on the concentration units
28 thod relies on determining "effective linear activity coefficients" (ELAC) for the white light source
29                             Salts with lower activity coefficients exhibit greater accumulation of bo
30 sumption about the interrelationship between activity coefficients for monomer and polymer species.
31      Marmur has claimed that large values of activity coefficients for nonelectrolytes, particularly
32 e and temperature conditions and appropriate activity coefficients for the solutes to calculate the i
33 oped in this work can fit the adsorbed phase activity coefficients, gammai, better than RAST combined
34                   It is shown how to express activity coefficients in different concentration scales,
35 perties was then used to estimate KPDMSw and activity coefficients in PDMS.
36 approximations are necessary: (i) the Mg(2+) activity coefficient is independent of concentration dur
37             It is furthermore shown that the activity coefficient of Ca(2+) in yeast mitochondria is
38 smolality, and, therefore, conclude that the activity coefficient of cytoplasmic water increases with
39    Here, we report partial molar volumes and activity coefficients of glycerophosphocholine (GPC), ta
40 e binding constant through its effect on the activity coefficients of substrate, enzyme, and enzyme-s
41                             Solvent transfer activity coefficients of the carbon acids and their resp
42 in equilibrium equations and the ignoring of activity coefficients of the cosolvent.
43 her concentrations and mirror trends in mean activity coefficients of the electrolyte solutions.
44 cle theory is used for the estimation of the activity coefficients of the metabolites, and thereby fo
45                                          The activity coefficients of the osmolytes roughly display t
46                                              Activity coefficients of urea solutions are calculated t
47 icients were used: 1) assigning low physical activity coefficients (PA(low)), 2) calculating PAL valu
48 xpressions for the composition-dependence of activity coefficients predicted by excluded volume consi
49 re obtained by accounting for solubility and activity coefficient ratios accompanying the transfer of
50 ita assumption for composition-dependence of activity coefficients reveal potential shortcomings for
51 osa rugosa Thunb.) was expressed as Standard Activity Coefficients (SACs), which are relative measure
52 action coefficients, excess free energy, and activity coefficients show a nonmonotonic variation as a
53                         We show further that activity coefficients such as that for nitromethane solu
54                          The time-integrated activity coefficient (TIAC) for stress was obtained by s
55 Poisson-Nernst-Planck (GPNP) system where an activity coefficient to account for steric effects of io
56 e PDMS-water partition constants, KPDMSw, or activity coefficient to be known.
57 ocyte alanine and aspartate aminotransferase activity coefficients to predepletion baseline values wa
58                              Time-integrated activity coefficients were calculated and used as input
59                          The time-integrated activity coefficients were derived from the fetal radioa
60                              Time-integrated activity coefficients were determined from multiexponent
61                 Three variations of physical activity coefficients were used: 1) assigning low physic

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