By D. D. Eley, Herman Pines, Paul B. Weisz
(from preface)The various efforts of authors and the broad scope of insurance undertaken in Advances in Catalysis—indeed, the breadth of catalysis itself—are good characterised via the seven chapters of this quantity. those chapters have been written via authors from departments of chemistry, chemical engineering, inorganic and analytical chemistry, fabrics technology, and physics; from a number of universities; from significant commercial laboratories; and from at the least 3 institutes committed particularly to catalysis!
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Additional resources for Advances in Catalysis, Vol. 39
197. Academic Press, New York, 1972.
Proc. Cambridge Philos. Soc. 53, 629 ( 1957). 8. Shante, V. K . , Adv. Phys. 20, 315 (1971). 9. Kirkpatrick, S . , Rev. Mod. Phys. 45, 574 (1973). 10. Essam, J. , in “Phase Transitions and Critical Phenomena” (C. Domb and M. S. ), Vol. 2, p. 197. Academic Press, New York, 1972.
31)]. If, for example, voids are spherical, we have r 3 f ( r )d r / [ V o ( r p )= r 3 f ( r ) dr (45) ‘P wheref(r) is the void radius distribution (Fig. 13). The other approach (Section II1,E) yields / F (rp) (46) where F(r,) is the fraction of voids with r > rp [Eq. (33)], and the parameter z,q is given by Eq. (23). The results of simulations demonstrating the effect of various factors on mercury intrusion into porous solids are shown in Figs. 24-26. All the intrusion curves presented have been calculated for the same void radius distribution [Eq.
Advances in Catalysis, Vol. 39 by D. D. Eley, Herman Pines, Paul B. Weisz