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1 re can result in substantial deviations from chemical equilibrium.
2 n in vitro systems, which consequently go to chemical equilibrium.
3 imilar to Le Chatelier's principle in common chemical equilibrium.
4 rated by ATP hydrolysis to shift the dynamic chemical equilibrium.
5 exchange of (18)O between CO(2) and water at chemical equilibrium.
6 e kinetics and isotopic exchange kinetics at chemical equilibrium.
7 lop a mathematical model of Yan occupancy at chemical equilibrium.
8 ess up to H(2):CO(2) = 3:1 upon shifting the chemical equilibrium.
9 composition(6) under the usual assumption of chemical equilibrium.
10 product composition under thermodynamic and chemical equilibrium.
11 governed by the La Chatelier's principle of chemical equilibrium.
12 sion, molecular dissociation as predicted by chemical equilibrium, a solar heavy-element abundance ('
13 l model of polymers associating to establish chemical equilibrium among higher-order species shows tr
14 ify the conjugate thermodynamic variables at chemical equilibrium and discuss the effective free ener
15 articularly true for systems that are out of chemical equilibrium and show complex dynamic behaviour,
16 ows one to focus on the impact of ESI on the chemical equilibrium and to avoid the other typical sour
17 ween two materials when they are not in bulk chemical equilibrium, and should be a common process in
18 gated under the assumptions of instantaneous chemical equilibrium, and that the dissipation of carbon
19 Exo-selectivity and shift of the reaction's chemical equilibrium are also encountered in the cage's
21 supplemented with 1 mM AMP signify a lack of chemical equilibrium attainment, those in buffer supplem
22 ginines help set the sensor's characteristic chemical equilibrium between activated and deactivated s
23 tion of weakly bound Mn is associated with a chemical equilibrium between adsorbed Mn species on the
24 olysulfides (S(x)(2-)) are formed due to the chemical equilibrium between H(2)S and sulfur (S(8)).
25 Herein, we report the utilization of the chemical equilibrium between low-abundance reaction inte
27 induced surface modification combined with a chemical equilibrium between the surface and residual ga
28 ate by stopped-flow spectrophotometry and at chemical equilibrium by the exchange of (18)O between CO
29 reaction) is "balanced," as dictated by the chemical equilibrium by the reverse reaction of pyrophos
31 for all CO(2) species at 25 mm and close to chemical equilibrium, conditions which approximate the p
32 dSe nanocrystals and octylamine ligands, the chemical equilibrium constant (K) of the CdSe-amine nano
36 ults reveal how an external field can impact chemical equilibrium in the vicinity of nanoscale magnet
37 pplicable to any biochemical reaction not in chemical equilibrium, including protein complex assembly
38 olled waves (where the binding process is at chemical equilibrium) into irreversible kinetic response
41 although under physiological conditions, the chemical equilibrium is strongly in the direction of pyr
42 absence of salt and external potential, the chemical equilibrium is the main driver for TOrC-transpo
43 leads to a reactor unconstrained by overall chemical equilibrium limitations, which can produce esse
44 s of magnitude compared to a solar-abundance chemical-equilibrium model at the expected temperatures.
45 nalysis by Flow Field-Flow Fractionation and chemical equilibrium modeling revealed that Fe from wetl
49 ive site changes could modulate the internal chemical equilibrium of a reaction that is central to ge
50 ochemical principles on diffusion and on the chemical equilibrium of Fa binding to carrier proteins C
53 robustness and accuracy, three more complex chemical equilibrium problems are solved using the Gibbs
54 thermodynamic models associated with solving chemical equilibrium problems for gaseous reacting mixtu
55 gests a novel mathematical model for solving chemical equilibrium problems for ideal gas mixtures.
56 Four challenging case studies related to chemical equilibrium problems have been performed by the
58 nd/or engineering of reversible (thermal and chemical equilibrium) self-assembly with knowledge of th
61 considerations are important for determining chemical equilibrium states in energetic materials that
64 ins challenged by the inherently unfavorable chemical equilibrium that dictates the efficiency of the
65 nevenly distributed chemicals and preserving chemical equilibrium tissue wide at any given moment.
67 nd "schooling", can be triggered by shift in chemical equilibrium upon the addition or removal of NH(
69 revealed that 10-formylTHF, which exists in chemical equilibrium with 5,10-methenylTHF, acts as a ti