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Vector Mechanics for Engineers Statics and Dynamics Ferdinand Beer

Description: About this productProduct InformationA primary objective in a first course in mechanics is to help develop a student's ability first to analyze problems in a simple and logical manner, and then to apply basic principles to their solutions. A strong conceptual understanding of these basic mechanics principles is essential for successfully solving mechanics problems. This edition of Vector Mechanics for Engineers will help instructors achieve these goals. Continuing in the spirit of its successful previous editions, this edition provides conceptually accurate and thorough coverage together with a significant refreshment of the exercise sets and online delivery of homework problems to your students. This edition has undergone a complete rewrite to modernize and streamline the language through the text. Over 650 of the homework problems in the text are new or revised. One of the characteristics of the approach used in this book is that mechanics of particles is clearly separated from the mechanics of rigid bodies. This approach makes it possible to consider simple practical applications at an early stage and to postpone the introduction of the more difficult concepts. McGraw-Hill's Connect, is also available as an optional, add on item. Connect is the only integrated learning system that empowers students by continuously adapting to deliver precisely what they need, when they need it, how they need it, so that class time is more effective. Connect allows the professor to assign homework, quizzes, and tests easily and automatically grades and records the scores of the student's work. Problems are randomized to prevent sharing of answers an may also have a "multi-step solution" which helps move the students' learning along if they experience difficulty.Product IdentifiersPublisherMcGraw-HillISBN-100073398241ISBN-139780073398242eBay Product ID (ePID)209725182Product Key FeaturesAuthorDavid Mazurek, E. Russell Johnston Jr., Ferdinand P. Beer, Brian Self, Phillip J. CornwellPublication NameVector Mechanics for Engineers: Statics and DynamicsFormatHardcoverLanguageEnglishPublication Year2015TypeTextbookNumber of Pages1472 PagesDimensionsItem Length10.2in.Item Height2.2in.Item Width8.6in.Item Weight86.5 OzAdditional Product FeaturesLc Classification NumberTa350.B3552 2016Grade fromCollege FreshmanGrade toCollege FreshmanEdition Number11Table of Content1) Introduction 2) Statics of Particles 3) Rigid Bodies: Equivalent Systems of Forces 4) Equilibrium of Rigid Bodies 5) Distributed Forces: Centroids and Centers of Gravity 6) Analysis of Structures 7) Internal Forces and Moments 8) Friction 9) Distributed Forces: Moments of Inertia 10) Method of Virtual Work 11) Kinematics of Particles 12) Kinetics of Particles: Newton's Second Law 13) Kinetics of Particles: Energy and Momentum Methods 14) Systems of Particles 15) Kinematics of Rigid Bodies 16) Plane Motion of Rigid Bodies: Forces and Accelerations 17) Plane Motion of Rigid Bodies: Energy and Momentum Methods 18) Kinetics of Rigid Bodies in Three Dimension 19) Mechanical Vibrations Appendix: Fundamentals of Engineering Examination Answers to Problems Photo CreditsCopyright Date2016Target AudienceCollege AudienceTopicMechanics / Statics, Mechanics / Dynamics, Aeronautics & AstronauticsLccn2014-041301Dewey Decimal620.1/05Dewey Edition23IllustratedYesGenreTechnology & Engineering, Science

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Vector Mechanics for Engineers Statics and Dynamics Ferdinand Beer

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Updated ISBN2: 9781259977206

Updated ISBN1: 9781259638091

Book Title: Vector Mechanics for Engineers: Statics and Dynamics

Artist: Beer, Ferdinand; Johnston, E.; Mazurek, David; Cornwell, Phillip;

Item Length: 10.2in

Item Height: 2.2in

Item Width: 8.6in

Author: David Mazurek, E. Russell Johnston Jr., Ferdinand P. Beer, Brian Self, Phillip J. Cornwell

Publication Name: Vector Mechanics for Engineers: Statics and Dynamics

Format: Hardcover

Language: English

Publisher: McGraw-Hill

Publication Year: 2015

Type: Textbook

Item Weight: 86.5 Oz

Number of Pages: 1472 Pages

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