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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Maskinteknik och material

    Mechanics Of Materials 8th Edition, Si Units

    AvFerdinand Beer,E. Johnston

    Häftad, Engelska, 2020

    789 kr

    Beställningsvara. Skickas inom 3-6 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Mechanics of Materials provides a precise presentation of subjects illustrated with numerous engineering examples that students both understand and relate to theory and application. The tried and true methodology for presenting material gives students the best opportunity to succeed in this course. From the detailed examples to the homework problems to the carefully developed solutions manual instructors and students can be confident the material is clearly explained and accurately represented. McGraw Hill Education'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.

    Produktinformation

    • Utgivningsdatum:2020-12-02
    • Mått:203 x 253 x 32 mm
    • Vikt:1 645 g
    • Format:Häftad
    • Språk:Engelska
    • Antal sidor:896
    • Upplaga:8
    • Förlag:McGraw-Hill Education
    • ISBN:9789813158979

    Utforska kategorier

    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    Born in France and educated in France and Switzerland, Ferdinand Beer held an M.S. degree from the Sorbonne and an Sc.D. degree in theoretical mechanics from the University of Geneva. He came to the United States after serving in the French army during the early part of World War II and taught for four years at Williams College in the Williams-MIT joint arts and engineering program. Following his service at Williams College, Beer joined the faculty of Lehigh University, where he taught for thirty-seven years. He held several positions, including the University Distinguished Professors Chair and Chairman of the Mechanical Engineering and Mechanics Department. In 1995, Beer was awarded an honorary Doctor of Engineering degree by Lehigh University. Born in Philadelphia, Russ holds a B.S. degree in civil engineering from the University of Delaware and an Sc.D. degree in the field of structural engineering from The Massachusetts Institute of Technology (MIT). He taught at Lehigh University and Worchester Polytechnic Institute (WPI) before joining the faculty of the University of Connecticut where he held the position of Chairman of the Civil Engineering Department and taught for twenty-six years. In 1991 Russ received the Outstanding Civil Engineer Award from the Connecticut Section of the American Society of Civil Engineers. John T. DeWolf, Professor of Civil Engineering at the University of Connecticut, joined the Beer and Johnston team as an author on the second edition of Mechanics of Materials.  John holds a B.S. degree in civil engineering from the University of Hawaii and M.E. and Ph.D. degrees in structural engineering from Cornell University.  His research interests are in the area of elastic stability, bridge monitoring, and structural analysis and design.  He is a registered Professional Engineer and a member of the Connecticut Board of Professional Engineers.  He was selected as the University of Connecticut Teaching Fellow in 2006. David Mazurek holds a B.S. in ocean engineering and an M.S. in civil engineering from the Florida Institute of Technology, and a Ph.D. in civil engineering from the University of Connecticut. Employed by the General Dynamics Corporation Electric Boat Division for five years, he provided submarine construction support and conducted engineering design and analysis associated with pressure hull and other structures. He then taught for one year at Lafayette College prior to joining the civil engineering faculty at the U.S. Coast Guard Academy, where he has been since 1990. Mazurek is currently a member of the American Railway Engineering & Maintenance-of-way Association Committee 15, and the American Society of Civil Engineers Committee on Blast, Shock, and Vibratory Effects. He has also worked with the Federal Railroad Administration on their bridge-inspection training program. He is a licensed professional engineer in Connecticut and Pennsylvania. Sanjeev Sanghi obtained his bachelor’s degree in Mechanical Engineering from the Indian Institute of Technology, Kanpur. He continued his education further at Cornell University and The Levich Institute of City University of New York from where he obtained his MS and PhD respectively. He is now Professor in the Applied Mechanics Department at the Indian Institute of Technology, Delhi. He joined the department in 1992 and since then has been teaching courses in Engineering Mechanics, Fluid Mechanics at the undergraduate and graduate levels. He has been the Head of Educational Technology and Service Centre, IIT Delhi and was Visiting Professor at The University of Sussex, UK in 2007–2008. At Cornell University, he won the Distinguished Teaching Assistant Award in 1988. In 2002, he was given the Distinguished Teacher Award by the C V Kapoor Foundation. He has published papers in leading journals like Jour-nal of Fluid Mechanics, Journal of Computational Physics, Physics of Fluids, Chaos, AIAA Journal, ASME Journal of Heat Transfer, Journal of Sound and Vibration, Computers and Structures and Computers and Fluids.

    Innehållsförteckning

    • 1) Introduction-Concept ofStress2) Stress and Strain-AxialLoading3) Torsion4) Pure Bending5) Analysis and Design ofBeams for Bending6) Shearing Stresses inBeams and Thin-Walled Members7) Transformations ofStress and Strain8) Principal StressesUnder a Given Loading9) Deflection of Beams10) Columns11) Energy MethodsAppendicesA - Principal Units Usedin MechanicsB - Centroids and Momentsof AreasC - Centroids and Momentsof Inertia of Common Geometric ShapesD - Typical Properties ofSelected Materials Used in EngineeringE - Properties ofRolled-Steel ShapesF - Beam Deflections andSlopesG - Fundamentals ofEngineering Examination