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1 h thereby facilitates the rate-limiting O(2)-dissociation reaction.
2 c product formation reaction and the product dissociation reaction.
3 so observed for the first time in the phenol dissociation reaction.
4 e the volume change associated with the acid-dissociation reaction.
5 r a low-affinity site that is coupled to the dissociation reaction.
6 y and with a reversal of these steps for the dissociation reaction.
7 on primarily during the actual ATP-dependent dissociation reaction.
8 (6) M-1 s-1) as are the several terms of the dissociation reaction.
9 measured immediately after initiation of the dissociation reaction.
10 r evidence that the primary defect is in the dissociation reaction.
11 population of a kinetic intermediate in the dissociation reaction.
12 periments on a well-characterized DNA strand dissociation reaction.
13 lteration in the deltaH of subsequent ligand dissociation reactions.
14 importance of different K effects on the CO dissociation reactions.
15 lyte models for various structural or strand-dissociation reactions.
16 fragment ions obtained by collision-induced dissociation reactions.
17 scovered a dramatic difference in dominating dissociation reactions, activation barriers, and reactio
18 by the proximal accessory region, while the dissociation reaction and specificity of binding are con
19 ESI FAIMS HRMS, we were able to prevent ion dissociation reactions and obtained high quality spectra
20 es are carbon-carbon bond cleavage reaction, dissociation reaction, and hydrogen abstraction and addi
21 and thermal "on" (recombination) and "off" (dissociation) reactions are the different processes invo
23 that has traversed the early portion of the dissociation reaction coordinate through endothermic bon
25 For many protein multimers, association and dissociation reactions fail to reach the same end point;
26 Arrhenius plots for both the association and dissociation reactions for the equilibrium binding step
27 experiments to reverse an endothermic domain-dissociation reaction hypothesized to gate binding to Se
28 ble-order form of the Marcus equation to the dissociation reactions in correlating the enthalpy of re
29 Dna2 mutant, we reconstituted the sequential dissociation reactions in the proposed RPA/Dna2/FEN1 pat
30 the direct protein substitution and assisted dissociation reactions indicate that these two unique pr
32 e kinetics of the individual association and dissociation reactions is hampered by the fact that forw
33 information from protein-protein association/dissociation reactions is particularly valuable for reve
35 ly predict the equilibrium for the effective dissociation reaction of [C4mim][NTf2] ions, in excellen
36 ation methods, we found that the association-dissociation reaction of ApoE can be modeled with a mono
39 ectroscopy) and the results suggest that the dissociation reaction of the SfiI-DNA complex has a sing
40 has recently been discovered in unimolecular dissociation reactions of isolated molecules in the gas
41 ort results of a study of the characteristic dissociation reactions of pseudouridine-containing oligo
43 valuate (in a model-free manner) association/dissociation reactions of solvent components (e.g., prot
44 endence of the rate constants of binding and dissociation reactions of two structurally different bet
50 en 300 and 3000 K indicate that the proposed dissociation reactions should be important in the decomp
52 This turnover results from association and dissociation reactions that are mediated by each of the
53 kMech into a set of fundamental association-dissociation reactions that are translated by Cellerator
54 kMech into a set of fundamental association-dissociation reactions that are translated by Cellerator
56 f the data from the coupled unfolding/ligand dissociation reaction to obtain the sulfate dissociation
58 erefore, the kinetics of the association and dissociation reactions were studied in this work using t
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