Showing posts with label Chemical Engineering. Show all posts
Showing posts with label Chemical Engineering. Show all posts

Advanced Strength and Applied Elasticity by Ugural A.C. and Fenster S.K

Advanced Strength and Applied Elasticity by Ugural A.C. and Fenster S.K



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Real Resumes for Engineering Jobs by Anne McKinney

Real Resumes for Engineering Jobs by Anne McKinney
Prep Publishing | 2004 | ISBN: 1885288425 | Pages: 181 | PDF | 5.23 MB


Those who seek jobs in the engineering field will find this book to be a valuable resource! Civil engineers, mechanical engineers, electrical engineers, software engineers, nuclear engineers, computer engineers, structural engineers, marine engineers, industrial engineers, chemical engineers, systems engineers,
and engineering support personnel have a lot of common when they create a resume, and this book shows resumes and cover letters of individuals who want to find work in the field. No matter what industry or type of work, this book will provide a competitive edge to those who seek employment which involves engineering responsibilities. For those who seek federal employment, there's a special section in the book showing how to create federal resumes and government applications.
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Mechanical Behavior of Materials by William F. Hosford

Mechanical Behavior of Materials by William F. Hosford 
Product DescriptionThis textbook is for courses on Mechanical Behavior of Materials taught in departments of Mechanical Engineering and Materials Science. The text includes numerous examples and problems for student practice. The book emphasizes quantitative problem solving. End of the chapter notes are included to increase students' interest. This text differs from others because the treatment of plasticity has greater emphasis on the interrelationship of the flow, effective strain and effective stress and their use in conjunction with yield criteria to solve problems.
The treatment of defects is new. Schmid's law is generalized for complex stress states. Its use with strains allows for prediction of R-values for textures. Another feature is the treatment of lattice rotations and how they lead to deformation textures. The chapter on fracture mechanics includes coverage of Gurney's approach. Much of the analysis of particulate composites is new. Few texts include anything on metal forming. Book DescriptionThis text for courses on Mechanical Behavior of Materials in Mechanical Engineering and Materials Science, includes numerous examples and problems and emphasizes quantitative problem solving. It considers numerous topics including mechanical testing to determine material properties, plasticity for FEM analyses, means of altering mechanical properties and several modes of failure.

Product Details
Hardcover: 446 pages
Publisher: Cambridge University Press (May 2, 2005)
Language: English
ISBN-10: 0521846706
ISBN-13: 978-0521846707
Product Dimensions: 10 x 7.1 x 1.2 inches

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Mechanical Behavior of Materials by Marc André Meyers, Krishan Kumar Chawla

Mechanical Behavior of Materials by Marc André Meyers, Krishan Kumar Chawla




880 pages | Cambridge University Press; 2 edition (December 8, 2008) | ISBN-10: 0521866758 | PDF | 15 Mb
A balanced mechanics-materials approach and coverage of the latest developments in biomaterials and electronic materials, the new edition of this popular text is the most thorough and modern book available for upper-level undergraduate courses on the mechanical behavior of materials.
To ensure that the student gains a thorough understanding the authors present the fundamental mechanisms that operate at micro- and nano-meter level across a wide-range of materials, in a way that is mathematically simple and requires no extensive knowledge of materials. This integrated approach provides a conceptual presentation that shows how the microstructure of a material controls its mechanical behavior, and this is reinforced through extensive use of micrographs and illustrations. New worked examples and exercises help the student test their understanding.
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Analysis, Synthesis, and Design of Chemical Processes by Richard Turton,Richard C. Bailie,Wallace B. Whiting and Joseph A. Shaeiwitz

Analysis, Synthesis, and Design of Chemical Processes by Richard Turton,Richard C. Bailie,Wallace B. Whiting and Joseph A. Shaeiwitz
Appropriate for all courses in chemical engineering process design.Analysis, Synthesis and Design of Chemical Processes, Second Edition moves chemical engineering students beyond neatly delineated classroom exercises and into the world of solving the open-ended process problems they will see in practice. The authors accomplish this by emphasizing design synthesis of the entire process-from equipment sizing to optimization, finances to operation. Drawing on over 30 years of teaching chemical engineering process design, they present design as a creative process that integrates the big picture with the small details, and relies on knowing which to stress, and why.

They show students how to apply key process design techniques to every aspect of the discipline, from the conceptual design of a plant to improving an existing process. This edition has been updated throughout, and contains extensive new coverage of environmental, health, and safety issues, green engineering, and engineering ethics. Coverage also includes: evolution and generation of multiple process configurations; estimating capital investment, manufacturing cost, and other economic factors; synthesis and optimization of chemical processes; performance analysis of existing processes and equipment; and more. The authors provide suggested curricula for both single-semester and year-long design courses, case studies and design projects with practical applications, and appendices with current equipment cost data and preliminary design information for four chemical processes. The accompanying CD-ROM contains powerful tools for helping students master chemical process design, including a thoroughly revised version of CAPCOST for evaluating fixed capital investments and full process economics; HENSAD for planning temperatures and heat exchange; a virtual plant tour of a simple chemical process; and additional student design projects. 
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