Determine the equation of the elastic curve for the cantilevered beam shown in the figure by using Double Integration method. El is constant. EE-く->
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- Determine the maximum deflection of the simply supported beam. The beam is made of wood having a modulus of elasticity of Ew = 1.5(103) ksi and a rectangular cross section of width b = 3 in. and height h = 6 in.Determine the maximum deflection of the simply supported beam. The beam is made of wood having a modulus of elasticity of Ew= 1.5 (103) ksi and a rectangular cross section of b =3 in. and h= 6 in.The beam is made of southern pine for which Ep = 13 GPa. Determine the displacement at A.
- Determine the slope at A and the deflection of end C of the overhang beam. Take E = 29(103) ksi and I = 204 in4.%V =8 © O Vit z 7 docx el yolxall > Determine the Ely in midspane the beam loaded shown infig I 0 >Determine the displacement at the end C of the cantilever beam shown inFig. . EI is constant.
- The beam safely supports shear forces and bending moments of 2kN and 6.5 kN-m respectively. Based on this criterion, can it be safely subjected to the loads F = 1kN and C = 1.6 kN-m? Use the area methodDetermine the magnitude of the maximum deflection using doubleintegration method. Use E = 200 x10^6 KPa and I = 1.440 x10^-5 m4For the simply supported beam carrying the concentrated load P = 276 N at its midspan, determine the magnitude of the maximum slope angle of the beam (in degrees) if d = 2.16 m, E = 12.77 GPa , and I =1681393mm4. NOTE: PLEASE ANSWER IT CORRECTLY. IF YOU ARE NOT SURE ABOUT THE ANSWER, PLEASE SKIP THE QUESTIONPLEASE BOX THE FINAL ANSWER(S)THANK YOU!