Designed to give chemical engineers background for managing chemical reactions, this text examines the behavior of chemical reactions and reactors; conservation equations for reactors; heterogeneous reactions; fluid-fluid and fluid-solid reaction systems; heterogeneous catalysis and catalytic kinetics; diffusion and heterogeneous catalysis; and analyses and design of heterogeneous reactors. 1976 edition.
This book presents an authoritative progress report that will remain germane to the topic and prove to be a substantial inspiration to further progress. It is valuable to academic and industrial practitioners of the art and science of chemical reaction and reactor engineering.
The riveting true story of decadence, deception, and murder among British aristocrats in colonial Kenya In 1941, with London burning in the Blitz, a group of hedonistic English nobles partied shamelessly in Kenya. Far removed from falling bombs, the wealthy elites of “Happy Valley” indulged in morphine, alcohol, and unrestricted sex, often with their friends’ spouses. But the party turned sinister in the early hours of a January morning for Josslyn Hay, Lord Erroll, who had been enjoying the favors of the beautiful young wife of a middle-aged neighbor. Hay was found dead, a bullet in his brain. The murder shocked the close-knit community of wealthy expatriates in Nairobi and shined a harsh light on their louche lifestyle. Three decades later, author James Fox researched the slaying of Lord Erroll, an unsolved crime still sheathed in a thick cloud of rumor and innuendo. What he discovered was both unsettling and luridly compelling. White Mischief is a spellbinding true-crime classic, a tale of privileged excess and the wages of sin, and an account of one writer’s determined effort to crack a cold and craven killing.
This book sets out the principles of engineering practice, knowledge that has come to light through more than a decade of research by the author and his students studying engineers at work. Until now, this knowledge has been almost entirely unwritten, passed on invisibly from one generation of engineers to the next, what engineers refer to asexpe
Undergraduates in engineering and the physical sciences receive a thorough introduction to perturbation theory in this useful and accessible text. Students discover methods for obtaining an approximate solution of a mathematical problem by exploiting the presence of a small, dimensionless parameter — the smaller the parameter, the more accurate the approximate solution. Knowledge of perturbation theory offers a twofold benefit: approximate solutions often reveal the exact solution's essential dependence on specified parameters; also, some problems resistant to numerical solutions may yield to perturbation methods. In fact, numerical and perturbation methods can be combined in a complementary way. The text opens with a well-defined treatment of finding the roots of polynomials whose coefficients contain a small parameter. Proceeding to differential equations, the authors explain many techniques for handling perturbations that reorder the equations or involve an unbounded independent variable. Two disparate practical problems that can be solved efficiently with perturbation methods conclude the volume. Written in an informal style that moves from specific examples to general principles, this elementary text emphasizes the "why" along with the "how"; prerequisites include a knowledge of one-variable calculus and ordinary differential equations. This newly revised second edition features an additional appendix concerning the approximate evaluation of integrals.
Written by one of the foremost historians of American Catholicism, this book presents a comprehensive history of the Roman Catholic Church in America from colonial times to the present. Hennesey examines, in particular, minority Catholics and developments in the western part of the United States, a region often overlooked in religious histories.
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