By James M. Gere, Barry J. Goodno
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Additional info for An Instructor’s Solutions Manual to Accompany Mechanics of Materials
01 in. 5-4 A prismatic bar with a circular cross section is loaded by tensile forces P ϭ 65 kN (see figure). 75 m and diameter d ϭ 32 mm. It is made of aluminum alloy with modulus of elasticity E ϭ 75 GPa and Poisson’s ratio ϭ 1/3. Find the increase in length of the bar and the percent decrease in its cross-sectional area. ) is loaded axially by a tensile force P. , what is the decrease in diameter d? What is the magnitude of the load P? Use the data in Table H-2, Appendix H. 56 * 10Ϫ4 in. L ϭ 9 in.
0 in. 01 in. (see figure). The polyethylene bar is then compressed by an axial force P. At what value of the force P will the space between the nylon bar and the steel tube be closed? 01 in. 5-4 A prismatic bar with a circular cross section is loaded by tensile forces P ϭ 65 kN (see figure). 75 m and diameter d ϭ 32 mm. It is made of aluminum alloy with modulus of elasticity E ϭ 75 GPa and Poisson’s ratio ϭ 1/3. Find the increase in length of the bar and the percent decrease in its cross-sectional area.
5 with respect to the ultimate strength, determine the total load P that may be supported by the pad. 5 in. 4 in. 7 in. 7-6 The rear hatch of a van [BDCF in figure part (a)] is supported by two hinges at B1 and B2 and by two struts A1B1 and A2B2 (diameter ds ϭ 10 mm) as shown in figure part (b). The struts are supported at A1 and A2 by pins, each with diameter dp ϭ 9 mm and passing through an eyelet of thickness t ϭ 8 mm at the end of the strut [figure part (b)]. If a closing force P ϭ 50 N is applied at G and the mass of the hatch Mh ϭ 43 kg is concentrated at C: (a) What is the force F in each strut?
An Instructor’s Solutions Manual to Accompany Mechanics of Materials by James M. Gere, Barry J. Goodno