Statics and Strength of Materials for Construction, Engineering Technology, and Architecture : Theory, Analysis, and Application

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Statics and Strength of Materials for Construction, Engineering Technology, and Architecture : Theory, Analysis, and Application

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  • 製本 Hardcover:ハードカバー版/ページ数 688 p.
  • 言語 ENG
  • 商品コード 9781032389028
  • DDC分類 620.105

Full Description

Statics and Strength of Materials for Construction, Engineering Technology, and Architecture: Theory, Analysis, and Application provides students and industry professionals with the necessary statics and strength of materials background for more innovative approaches to particular fields of engineering technology, construction engineering and management, civil engineering, and architectural technology. It presents an introduction to statics, a review of algebra and trigonometry, concepts of vectors, a classification of building structural systems, an overview of advanced topics in statics and strength of materials, and frameworks of real-world application projects.

This book contains 19 chapters and discusses several topics related to statics and strength of materials, such as coplanar force systems; the equilibrium of particle and rigid bodies; design loads; beam and frame reactions; trusses; arches, cables, and pulleys; space force systems; centroid of areas; moment of inertia; friction; properties of materials; axial deformation; bending and shear stress; torsional stress; combined loading; stress transformation; deflection; and stress in columns.

Each chapter includes an Instructor's Solution Manual and Guide with instructional materials and comprehensive explanations of the related practice problems, critical thinking exercises, and application projects.

Contents

1. Introduction 2. Coplanar Force Systems 3. Equilibrium of Particle and Rigid Body 4. Design Load Distribution 5. Principles of Statics of Beam and Frame Reactions 6. Principles of Statics of Truss Reactions and Axial Forces 7. Arches, Cables and Pulleys 8. Space Force Systems 9. Centroids of Area 10. Moment of Inertia of Area 11. Friction 12. Properties of Materials 13. Axial Deformation 14. Bending and Shear Stress in Beams and Frames 15. Torsion 16. Combined Streets 17. Stress Transformation 18. Deflection of Beams 19. Stress in Columns

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