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Structural Mechanics: Worked Examples

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Red Globe Press

Pages: 304
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AVAILABLE FORMATS

Paperback - 9780230579811

23 April 2009

$47.99

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Ebook - 9781137069399

16 September 2017

$40.99

In stock

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This textbook provides students with an aid to consolidating understanding of the principles and applications of structural mechanics.  It is not a standard textbook, but a support for a main course text and/or lecture...

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This textbook provides students with an aid to consolidating understanding of the principles and applications of structural mechanics.  It is not a standard textbook, but a support for a main course text and/or lecture material.  Each chapter begins with a summary of essential theory, important facts, then relevant equations are presented and summarised in a Fact Sheet.  This is followed by a series of carefully paced and sequenced worked examples using real exam questions, with additional explanatory notes.  At the end of each chapter there are additional problems with answers given, for further problem-solving practice.  The text reinforces knowledge learnt in lectures and through companion textbooks, completes understanding, and helps in preparing for exams.

Structural Mechanics: Worked Examples is an ideal companion resource for undergraduate courses in Civil Engineering and Construction.  It works well alongside Hulse and Cain’s Structural Mechanics text, but can equally well be used alongside any other introductory textbook.

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  • Summaries of key theory, facts and equations on each topic
  • Over 100 carefully paced and sequenced worked examples using real exam questions, with additional explanatory notes
  • 65 practice problems with answers
  • Clear figures throughout
  • Demonstrates good layout and technique to further understanding and allow students to show evidence of good understanding in exams

Equilibrium of Rigid Structures
Pin-jointed Frame Structures
Shearing Forces and Bending Moments
Direct Stress
Bending Stress
Combined Bending and Direct Stress
Shear Stress
Torsional Stress
Mohr's Circles of Stress and Strain
Composite Sections
Beam Deflections and Rotations
Strain Energy and Virtual Work.

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RAY HULSE was until recently Associate Dean of the Faculty of Engineering and Computing at Coventry University, UK.
 
JACK CAIN was formerly Principal Lecturer and Course Leader for the Civil Engineering Degree course at Coventry University, UK.

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RAY HULSE was until recently Associate Dean of the Faculty of Engineering and Computing at Coventry University, UK.
 
JACK CAIN was formerly Principal Lecturer and Course Leader for the Civil Engineering Degree course at Coventry University, UK.

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