An Introduction to Environmental Biophysics

An Introduction to Environmental Biophysics

Author: Gaylon S. Campbell

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 296

ISBN-13: 1461216265

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From reviews of the first edition: "well organized . . . Recommended as an introductory text for undergraduates" -- AAAS Science Books and Films "well written and illustrated" -- Bulletin of the American Meteorological Society


Momentum, Heat, and Mass Transfer Fundamentals

Momentum, Heat, and Mass Transfer Fundamentals

Author: Robert Greenkorn

Publisher: CRC Press

Published: 1999-02-23

Total Pages: 1066

ISBN-13: 9780824719722

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"Presents the fundamentals of momentum, heat, and mass transfer from both a microscopic and a macroscopic perspective. Features a large number of idealized and real-world examples that we worked out in detail."


Transport Phenomena

Transport Phenomena

Author: Robert S. Brodkey

Publisher: Brodkey Publishing

Published: 2003-02

Total Pages: 522

ISBN-13: 9780972663588

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Part II covers applications in greater detail. The three transport phenomena--heat, mass, and momentum transfer--are treated in depth through simultaneous (or parallel) developments.


Heat and Mass Transfer in Capillary-Porous Bodies

Heat and Mass Transfer in Capillary-Porous Bodies

Author: A. V. Luikov

Publisher: Elsevier

Published: 2014-05-12

Total Pages: 541

ISBN-13: 1483225682

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Heat and Mass Transfer in Capillary-Porous Bodies describes the modern theory of heat and mass transfer on the basis of the thermodynamics of irreversible processes. This book provides a systematic account of the phenomena of heat and mass transfer in capillary-porous bodies. Organized into 10 chapters, this book begins with an overview of the processes of the transfer of heat and mass of a substance. This text then examines the application of the theory to the investigation of heat and mass exchange in walls and in technological processes for the manufacture of building materials. Other chapters consider the thermal properties of building materials by using the methods of the thermodynamics of mass transfer. The final chapter deals with the method of finite differences, which is applicable to the solution of problems of non-steady heat conduction. This book is a valuable resource for scientists, post-graduate students, engineers, and students in higher educational establishments for architectural engineering.


Convective Heat & Mass Transfer W/ Engineering Subscription Card

Convective Heat & Mass Transfer W/ Engineering Subscription Card

Author: William Kays

Publisher: Palgrave Macmillan

Published: 2005

Total Pages: 584

ISBN-13: 9780072990737

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Published April 2004 The 4th edition Convective Heat and Mass Transfer continues the trend of encouraging the use of a numerically based, computational approach to solving convective heat and mass transfer problems, in addition to classical problem-solving approaches. This best-selling text also presents a strong theoretical basis for the subject of convective heat and mass transfer by focusing on boundary layer theory and provides optional coverage of the software teaching tool TEXSTAN.


Introduction to Engineering Heat Transfer

Introduction to Engineering Heat Transfer

Author: G. F. Nellis

Publisher: Cambridge University Press

Published: 2020-07-30

Total Pages: 1027

ISBN-13: 110717953X

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Equips students with the essential knowledge, skills, and confidence to solve real-world heat transfer problems using EES, MATLAB, and FEHT.


INTRODUCTION TO TRANSPORT PHENOMENA

INTRODUCTION TO TRANSPORT PHENOMENA

Author: BODH RAJ

Publisher: PHI Learning Pvt. Ltd.

Published: 2012-01-19

Total Pages: 224

ISBN-13: 8120345185

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This introductory text discusses the essential concepts of three funda-mental transport processes, namely, momentum transfer, heat transfer, and mass transfer. Apart from chemical engineering, transport processes play an increasingly important role today in the fields of biotechnology, nanotechnology and microelectronics. The book covers the basic laws of momentum, heat and mass transfer. All the three transport processes are explained using two approaches—first by flux expressions and second by shell balances. These concepts are applied to formulate the physical problems of momentum, heat and mass transfer. Simple physical processes from the chemical engineering field are selected to understand the mechanism of these transfer operations. Though these problems are solved for unidirectional flow and laminar flow conditions only, turbulent flow conditions are also discussed. Boundary conditions and Prandtl mixing models for turbulent flow conditions are explained as well. The unsteady-state conditions for momentum, heat and mass transfer have also been highlighted with the help of simple cases. Finally, the approach of anology has also been adopted in the book to understand these three molecular transport processes. Different analogies such as Reynolds, Prandtl, von Kármán and Chilton–Colburn are discussed in detail. This book is designed for the undergraduate students of chemical engineering and covers the syllabi on Transport Phenomena as currently prescribed in most institutes and universities.