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Interfacial Transport Phenomena (Hardcover, 2nd ed. 2007): John C. Slattery, Leonard Sagis, Eun-Suok Oh Interfacial Transport Phenomena (Hardcover, 2nd ed. 2007)
John C. Slattery, Leonard Sagis, Eun-Suok Oh
R6,076 Discovery Miles 60 760 Ships in 10 - 15 working days

This is an extensively revised second edition of "Interfacial Transport Phenomena," a unique presentation of transport phenomena or continuum mechanics focused on momentum, energy, and mass transfer at interfaces. It discusses transport phenomena at common lines or three-phase lines of contact. The emphasis is upon achieving an in-depth understanding based upon first principles. It includes exercises and answers, and can serve as a graduate level textbook.

Interfacial Transport Phenomena (Paperback, Softcover reprint of the original 2nd ed. 2007): John C. Slattery, Leonard Sagis,... Interfacial Transport Phenomena (Paperback, Softcover reprint of the original 2nd ed. 2007)
John C. Slattery, Leonard Sagis, Eun-Suok Oh
R5,739 Discovery Miles 57 390 Ships in 10 - 15 working days

This is an extensively revised second edition of "Interfacial Transport Phenomena", a unique presentation of transport phenomena or continuum mechanics focused on momentum, energy, and mass transfer at interfaces. It discusses transport phenomena at common lines or three-phase lines of contact. The emphasis is upon achieving an in-depth understanding based upon first principles. It includes exercises and answers, and can serve as a graduate level textbook.

Advanced Transport Phenomena (Paperback): John C. Slattery Advanced Transport Phenomena (Paperback)
John C. Slattery
R3,550 Discovery Miles 35 500 Ships in 12 - 19 working days

The term "transport phenomena" describes the fundamental processes of momentum, energy, and mass transfer. The author provides a thorough discussion of transport phenomena, laying the foundation for understanding a wide variety of operations used by chemical engineers. The book is arranged in three parallel parts covering the major topics of momentum, energy, and mass transfer. Each part begins with the theory, followed by illustrations of the way the theory can be used to obtain fairly complete solutions, and concludes with the four most common types of averaging used to obtain approximate solutions. A broad range of technologically important examples, as well as numerous exercises, are provided throughout the text. Based on the author's extensive teaching experience, a suggested lecture outline is also included. This book is intended for first-year graduate engineering students; it will be an equally useful reference for researchers in this field. Solutions manual available.

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