Nonlinear Dynamics in Polymeric Systems by John A. Pojman and Qui Tran-Cong-Miyata (Eds.)

By John A. Pojman and Qui Tran-Cong-Miyata (Eds.)

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Köhler, J. C. J. Phys. , 1995, 99, 980-983. 9. ; Endoh, K. Chaos, 1999, 9, 298-307. 10. Pearson, J. E. Science, 1993, 261, 189-192. 11. Mullins, W. F. Phys. 1964, 35, 444-451. 12. Lefever, R. Workshop on Dissipative Structures and Non-Equilibrium Assisted Self-Assembly, Foundation des Treilles, Tourtour, 2000. 13. Yamaguchi, T. Chem. Chem. Ind, 2001, 54, 1363-1367 (in Japanese). 14. Phys. , 2002, 191, 67-76. 15. ; Shimomura, M. Chem. , 1996, 821-822. 16. jp/products/electronics/. 17. Shimomura, M .

X X\ + ΧιΦ y proposed by Hirotsu (/ 7). Transport of water into and out of the hydrogel membrane causes its thickness, L, to change at a rate that is proportional to the difference in chemical potential of water between the membrane and Cell I and Cell II. ; ACS Symposium Series; American Chemical Society: Washington, DC, 2003. 50 3. Enzymatic conversion of glucose to gluconic acid is assumed to be instantaneous. This assumption is valid when the concentration of enzyme in Cell II is sufficiently high that transport of glucose into Cell II is rate limiting regardless of the permeability of the membrane.

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