Advances in Chemical Physics: Index: Volumes I-LV, Volume 59

The Advances in Chemical Physics sequence presents the chemical physics and actual chemistry fields with a discussion board for serious, authoritative reviews of advances in each sector of the self-discipline. packed with state-of-the-art learn said in a cohesive demeanour no longer came upon in different places within the literature, every one quantity of the Advances in Chemical Physics sequence serves because the ideal complement to any complicated graduate classification dedicated to the learn of chemical physics.

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A Stochastic Model for Neutron Scattering by Simple Liquids,” 15: 129. McQuame, D. , “Stochastic Theory of Chemical Rate Processes,” 15:149. Montroll, E. , “Enzyme Cascades and Their Control in Blood Plasma,” 26: 145. Montroll, E. W. and Shuler, K. , “The Application of the Theory of Stochastic Processes to Chemical Kinetics,” 1:361. , “Probabilistic and Dynamic Approaches to the Theory of Stochastic Processes,” 15: 1. Ree, F. , Ree, T. , “Random Walk and Related Physical Problems,” 4: 1. van Kampen, N.

Bearman, R. , Kirkwood, J. , ”Statistical-Mechanical Theory of Transport Processes. X. The Heat of Transport in Binary Liquid Solutions,” 1: 1. Berne, B. and Harp, G . , “On the Calculation of Time Correlation Functions,” 17:63. Boon, J. , “Light Scattering from Nonequilibrium Fluid Systems,” 32:87. , ‘‘ On the Comparison 29 between Generalized Boltzmann Equations,” 11:3 17. Collins, F. C. , “Transport Processes in Liquids,’’ I : 135. , “Theory of Quantum Brownian Motion,” 16:1. Dahler, J. S. , “The Kinetic Theory of Dense Polyatomic Fluids,” 31:155.

On a Unified Thermodynamic Approach to a Large Class of Instabilities of Dissipative Continua,” 32: 13. Bird, R. , see Curtiss, C. , 3 5 3 1. , “Microwave Pressure Broadening and Its Application to Intermolecular Forces,” 12:487. , “Theory of Collision - Induced Line Shapes-Absorption and Light Scattering at Low Density,” 51:49. , 52: 181. , Bloch, A. , see Rice, S. , 27543. Bloom, M. , “Intermolecular Forces Determined by Nuclear Magnetic Resonance,” 12:549. Blum, L. and Narten, A. , “Diffraction by Molecular Liquids,” 34:203.

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