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Titlebook: Cooperativity Theory in Biochemistry; Steady-State and Equ Terrell L. Hill Book 1985 Springer-Verlag New York Inc. 1985 biochemistry.biolog

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978-1-4612-9555-6Springer-Verlag New York Inc. 1985
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B. Chiplin,M. M. Curran,C. J. Parsleyo method can also be applied to one- and three-dimensional steady-state lattices; a few results for one-dimensional systems will be presented in Section 45. Almost all of the chapter will be concerned with lattices of two-state enzyme molecules, but one-way three-state enzyme molecules are considere
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Simple Equilibrium Bindinge consider in this chapter; in fact, the main results are already contained in Eqs. (3.4)–(3.14) and were obtained by thermodynamic methods. However, with the background acquired here, we shall see that the grand partition function approach converts the more complicated and interesting problems in C
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Introduction to Steady-State Systemsuce simple steady-state systems. Chapters 4 and 5 will continue with somewhat more complicated equilibrium and steady-state systems, but without explicit introduction of interaction free energies. Then, in Parts II and III, we turn to the main theme of the book: systems of both classes comprised of
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Steady-State Systems without Explicit Interactionslibrium and steady-state systems. In this chapter we deal with several kinds of perturbation of steady-state enzyme activity, but we do not introduce intermolecular interaction free energies explicitly. In the models of Sections 17, 18, and 19, such interactions are present, but they are considered
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