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Eyring rate process theory

The adhesion theories of rubber friction fall into two main groups - molecular and macroscopic. The molecular theories are associated with the names of Schallamach , Bartenev >, and Rieger, and have much in common. The basic idea is that bonds are formed at the interface, strained and then broken, and one form or another of Eyring s rate-process theory is applied. In effect one finds that the theories end with two main factors multiplied together. [Pg.16]

S. Glasstone, K. J. Laidler, and H. Eyring, The Theory of Rate Processes, McGraw-Hill, New York, 1941. [Pg.748]

Giasstone S, Laidier K J and Eyring Fi 1941 The Theory of Rate Processes (New York McGraw-Fiiii)... [Pg.797]

Glasstone, S. Laidler, K.J. Eyring, H. The Theory of Rate Processes McGraw-Hill New York, 1948 pp 472-3. [Pg.304]

According to the theory of rate processes (Eyring et al., 1941), reaction rate constants are determined by the expression... [Pg.240]

Glasstone, S., Laidler, K. J., and Eyring, H. (1941), Theory of Rate Processes, McGraw Hill, New York. Langevin, M. P. (1905), J. Chim. Phys. 5, 245. English translation in McDaniel, E. W. (1964), Collision Phenomena in Ionized Gases, app. 1, Wiley, New York. [Pg.143]

Caldwell, D. and Eyring, H. (1971) Quantum-mechanical rate processes,in Yourgrau, W. and van der Merwe, A.(eds.), Perpectives in quantum theory, Dover Publications,Inc., New York,pp. 117-138. [Pg.350]


See other pages where Eyring rate process theory is mentioned: [Pg.189]    [Pg.111]    [Pg.73]    [Pg.561]    [Pg.708]    [Pg.172]    [Pg.65]    [Pg.63]    [Pg.165]    [Pg.125]    [Pg.177]    [Pg.120]    [Pg.345]   


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