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Колебания и бегущие полны в химических системах - Филд Р.

Филд Р. , Бургер М. Колебания и бегущие полны в химических системах. Под редакцией д-ра физ.-мат. наук, проф. А.М. Жаботинского — M.: Мир, 1988. — 720 c.
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216. De Kepper P., Epstein I. R., Kuslin K. (1981a), Systematic Design of Chemicat Oscillators. 2. A Systematically Designed Homogeneous Oscillating Chemical Reaction. The Arsenite-Iodate-Chlorite System. J. Am. Chem. Soc. 103, 2133.

217. De Kepper P., Epstein I. R., Kustin K. (1981b), Systematic Design of Chemical Oscillators. 3. Bislability in the Oxidation of Arsenite by lodate in a Stirred Flow Reactor, J. Am. Chem. Soc, 103, 6121.

218. De Kepper P., Epstein I. R. (1982), A Mechanistic Study of Oscillations and Bistability in the Briggs-Rauscher Reaction, J. Am. Chem. Soc, 104, 49.

219. De Kepper P., Epstein I. R., Kuslin K-, Orbdn M. (1982) Systematic Design of Chemical Oscillators, Pari 8. Batch Oscillations and Spatial Wave Patterns in Chlorite Oscillating Systems, J. Phys. Chem. 86, 170.

220. De Kepper P., Bur-Eli K (1983), Dynamical Properlies of the Belousov-/liabotinsku Reaction in a Flow System. Theoretical and Experimental Analysis, J. Phys. Chem., 87, 480.

221. De Kepper P., Dulos E. (1984), Bistability in the Autocatalytic Oxidation 999 nJ,tZZnZmM[eny, ,Hydr°K™ Peroxide in a CSTR, to be published.

222. DelleDonne M Orloleva P. (1978), Turbulent Spatio-Temporal Dynamics

forsch A 33 MS5"4 У RCSU"S f°r " S°'Uble M°dd' Z NatUr"

m mlca1w^?n6','°^ P- ('?79)' Cr»"=al Fluctuation University in Che-20 47? Osc,1U,0r5' Systems: A Soluble Master Equation, J. Stat. Phys.,

^fete'ffl^^ -e ¦a reduction

ment of inverse Pr„bk-ms for'nm>' ^T' *°**<>Р Numerical Treat-berg, Aug 30-Sent ІТад? nPlIfr'e"tal and Integral Equations. Heidel-Birkhauser Cambrir g ' r°BreSS in Sci™»'ic Computing Series, v. 2,

928 Dickens I' О. (195СІ), В. A. Thesis, University of Oxford.

999' Dickens P. 0.. Dove. J. Linnet I 1. W. (1964), Explosion Limits of the

Dry Carbon Monoxide + Oxygen Reaction, Trans. Faraday Soc., 60, 539. 230 Dixon II. TS- (1880), On the Influence of Water on the Union of Carbonic

Oxide with Oxygen at High Temperatures, Brit. Assoc. Rep., 503.

231. Dixon H. B. (1884), Conditions of Chemical Change in Gases: Hydrogen, Carbonic Oxide and Oxygen. Phil. Trans. Roy. Soc. A, 175, 617.

232. Dixon-Lewis G., Linnell 1. W. (1935), The Oxidation of Mixtures of Hydrogen and Carbon Monoxide, Trans. Faraday Soc, 49, 756.

233. Dixon-Lewis G., Williams D. 1. (1977), The Oxidation of Hydrogen and Carbon Monoxide, in Bamford С. H. and Tipper C. F. H., Eds., Comprehensive Chemical Kinetics, Vol. 17, p. 1.

234 Dorawala T. G., Douglas J. M. (1971), Complex Reactions in Oscillating Reactors, AIChE J., 17, 974.

235 Douglas J. M.. Rippin D. W. T. (1966), Unsteady State Process Operation, Chem. Eng. Sci.. 21, 305.

236. Douglas J. M. (1967), Periodic Reactor Operation, Chem. Proc. Des. Devel., 6, 43.

237. Douglas J. Af.. Gaitonde N. Y. (1967), Analytical Estimates of the Performance of Chemical Oscillators, Ind. Eng. Chem. Fund., 6, 265.

238. Dove J. E. (1956), Ph. D. Thesis, University of Oxford.

239. Duffy M. R. Britton N. P., Murray ]. D. (1980), Spiral Wave Solutions of Practical Reaction-Diffusion Systems, SIAM J. Appl. Math., 39, 8.

240. Dulos ?., De Kepper P., Marchand A. (1979), Entrainement d'une reaction chimique oscillante par des excitations lumineuses periodiques de frequences, variables, Compt. Rend. Sceances Acad. Sci.. Ser. C, 289, 113.

241. Dulos E. (1981a), Oscillations chimiques et biologiques; Quelques analogies. Thesis, Bordeaux.

242. Dulos E. (1981b), Synchronization of a Chemical Oscillation by Periodic Light Pulses, in Vidal C. and Pacault A., Eds., Nonlinear Phenomena in Chemical Dynamics, Synergetics, Vol. 12, Springer-Verlag, Berlin, p. 140.

243. Dulos E., De Kepper P. (1983), Experimental Study of Synchronization Phenomena under Periodic Light Irradiation of a Nonlinear System. Bio-phys. Chem., 18, 211.

244. Dushman S. (1904), The Rate of the Reaction Between Iodic and Hydri-odic Acids, J. Phys. Chem., 8, 453.

245. Dutt A. K, Banerjee R. S. (1980), Iodine Clock Oscillating Reaction, J. Ind. Chem. Soc, 57, 751.

246. Dutton I. (1968), A Study of Oscillatory Processes in a Continuous ^System, Ph. D. Thesis, Loudon.

, 247. Dynnili V. V., Sel'kov E. E., Ovchinnikov I. (1977). Self-oscillations in ^ the Lower Part of the Glycolytic System. Two Alternative Mechanisms, Stud. Biophys., 63, 9.

248. Eckmann J. P. (1981), Roads to Turbulence in Dissipative Dynamical Systems, Rev. Mod. Phys., 53, 643.

249. Edelson D.. Field R. 1.. Noyes R. M. (1975). Mechanistic Details of the Belousov — Zhabotinskii Oscillations, Int. J. Chem. Kinet., 7, 417.

250. Edelson D. (1976), A Simulation Language and Compiler to Aid Computer Solution of Chemical Kinetic Problems. Coniput. Chem., 1, 29.

251. Edelson D.. Schryer N. L (1978), Modeling Chemically Reacting Flow Systems, Part I. A Comparison of Finite Difference and Finite Element Methods for One-Dimensional Reactive Diffusion. Cornput. Chem., 2. 71,

252. Edelson D. (1979), Mechanistic Details of the Belousov — Zhabotinskii Oscillations, Part 3. The Induction Period. Int. J. Chem. Kinet. 11, 1231.
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