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Unit operations of chemical engineering [SOLUTIONS MANUAL]

โœ Scribed by Warren L McCabe; Julian C Smith; Peter Harriott


Publisher
McGraw-Hill
Year
1985
Tongue
English
Leaves
511
Series
McGraw-Hill chemical engineering series
Edition
4th ed
Category
Library

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โœฆ Synopsis


A revised edition of a text on unit operations of chemical engineering, this work contains updated and new material reflecting in part the broadening of the chemical engineering profession into new areas such as food processing, electronics and biochemical applications. As in previous editions, separate chapters are devoted to each of the four principle unit operations - fluid mechanics, heat transfer, equilibrium stages and mass transfer, and operations involving particulate solids - and includes coverage of adsorption, absorption and membrane separation. There is also detailed treatment of solids-handling operations and solid-liquid separations. In this fifth edition, SI units are given greater emphasis and some two-third of the end-of-chapter problems have been revised. In addition, there is new material on membrane separations, flow measurement, dispersion operations, supercritical extraction, pressure-swing adsorption and sedimentation. Also available is a solutions manual (0-07-044845-0)

โœฆ Subjects


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๐Ÿ“œ SIMILAR VOLUMES


Solutions Manual to accompany Unit Opera
โœ McCabe W., Smith J.C., Harriot P. ๐Ÿ“‚ Library ๐ŸŒ English

6 edition. โ€” McGraw Hill., 2001. โ€” 403 p.<div class="bb-sep"></div>This sixth edition of the text on the unit operations of chemical engineering has been extensively revised and updated, with much new material and considerable condensation of some sections. Its basic structure and general level of t

Unit Operations of Chemical Engineering
โœ Warren L. McCabe, Julian C. Smith, Peter Harriott ๐Ÿ“‚ Library ๐Ÿ“… 1993 ๐Ÿ› McGraw Hill ๐ŸŒ English

Chemical engineering has to do with industrial processes in which raw materials are changed or separated into useful products. The chemical engineer must develop, design, and engineer both the complete process and the equipment used; choose the proper raw materials; operate the plants efficiently