## Engineering mechanics of materialsThis book provides the students of various engineering disciplines with a clear and understandable treatment of the concepts of Mechanics of Materials or Strength of Materials. This subject is concerned with the behavior of deformable bodies when subjected to axial, torsional and flexural loads as well as combinations thereof. It is a 3rd, updated edition of the popular undergraduate level textbook useful for students of mechanical, structural, civil, aeronautical and other engineering disciplines. The book is supplied with problems and a solution manual will be available from the authors. |

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Page 30

Linear 200 lb/ft

the beam depicted in Fig. P1. 40. Then find the shear and moment at sections

A-A and B-B. Make comments regarding symmetry or antisymmetry of loads, ...

Linear 200 lb/ft

**FIGURE**P1 .39 1.40 Determine the reactions at D and E acting onthe beam depicted in Fig. P1. 40. Then find the shear and moment at sections

A-A and B-B. Make comments regarding symmetry or antisymmetry of loads, ...

Page 52

cable tension in order to maintain the equilibrium of the member shown in Fig. P1

. 88? If not, revise the magnitude of the horizontal force of 4 k in order to maintain

...

**FIGURE**P1.87 1.88 Is it possible to determine the vertical reaction at A and thecable tension in order to maintain the equilibrium of the member shown in Fig. P1

. 88? If not, revise the magnitude of the horizontal force of 4 k in order to maintain

...

Page 318

of the beam depicted in Fig. P6.76. Express the answer in terms of P, a, E, and /, .

-2a — 4— «- a t. -3a- 2a-

**FIGURE**P6.72 6.76 Use the area-moment method to find the deflection at point Aof the beam depicted in Fig. P6.76. Express the answer in terms of P, a, E, and /, .

-2a — 4— «- a t. -3a- 2a-

**FIGURE**P6.76 6.73 Determine the center deflection ...### What people are saying - Write a review

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### Contents

Stress Strain and Their Relationships | 60 |

Stresses and Strains in Axially Loaded Members | 121 |

Torsional Stresses Strains and Rotations | 159 |

Copyright | |

14 other sections not shown

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### Common terms and phrases

absolute maximum shear aluminum angle of twist applied Assume axial force axially loaded beam shown bending cantilever beam Castigliano's second theorem column compressive constant coordinate cross section cross-sectional area cylinder deflection deformation depicted in Fig elastic curve equal equation equilibrium Euler EXAMPLE factor of safety FIGURE flexural stress FORTRAN free-body diagram function given by Eq k-ft k-in kN-m lb/ft length longitudinal material maximum in-plane shear maximum shear stress modulus of elasticity Mohr's circle neutral axis normal stress obtained perpendicular plane stress condition plot positive principal centroidal axis principal strains principal stresses radius ratio reactions Refer to Fig respect rotation shear force shear strain shown in Fig simply supported beam slope SOLUTION Solve Problem statically indeterminate steel stress concentration stress element subjected torque torsional uniform load vertical yield strength yield stress zero