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# Hardcover: 528 pages
# Publisher: Wiley; 6 edition (March 17, 2006)
# Language: English
# ISBN-10: 0471739324
# ISBN-13: 978-0471739326
# Product Dimensions: 9.7 x 8 x 1 inches
Product Description
Known for its accuracy, clarity, and applications, Meriam & Kraige's Engineering Mechanics: Statics has provided a solid foundation of mechanics principles for more than 50 years. Now in its new Sixth Edition, the book continues to help readers develop their problem-solving skills with an extensive variety of highly interesting problems related to engineering design. In the new edition, more than 50% of the homework problems are new. There are also many new sample problems. To help readers build necessary visualization and problem-solving skills, the book strongly emphasizes drawing free-body diagrams--the most important skill needed to solve mechanics problems.
From the Publisher
This update continues the same high standards set by previous editions and adds new features of help and interest to students. Explains how to construct and solve mathematical models which describe the effects of force and motion on a variety of structures and machines. Contains a vast amount of problems, ranging from simple to complex, which deal with principles and procedures inherent in the design of engineering structures and mechanical systems. Sample problems with detailed solutions include helpful observations of common errors and pitfalls to be avoided. --This text refers to an out of print or unavailable edition of this title.
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http://rapidshare.com/files/170450911/Instructors_manual_Statics_Meriam.rar.002
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# Paperback: 384 pages
# Publisher: Butterworth-Heinemann; 2 edition (January 13, 2004)
# Language: English
# ISBN-10: 0750657715
# ISBN-13: 978-0750657716
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# Paperback: 624 pages
# Publisher: Butterworth-Heinemann; 3 edition (February 9, 2005)
# Language: English
# ISBN-10: 0750661682
# ISBN-13: 978-0750661683
Written for all students of engineering, materials science and design, this book describes the procedures for material selection in mechanical design in order to ensure that the most suitable materials for a given application are identified from the full range of materials and section shapes available.
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