A wide-flange beam (see figure) is subjected to a shear force V. oh + Using the following dimensions of the cross sectio
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A wide-flange beam (see figure) is subjected to a shear force V. oh + Using the following dimensions of the cross sectio
A wide-flange beam (see figure) is subjected to a shear force V. oh + Using the following dimensions of the cross section, calculate the moment of inertia and then determine the following quantities. b = 180 mm, t = 12 mm, h = 405 mm, hy = 365 mm, V = 120 KN Note: Disregard the fillets at the junctions of the web and flanges and determine all quantities, including the moment of inertia, by considering the cross section to consist of three rectangles. (a) the maximum shear stress to (in MPa) in the web max MPa (b) the minimum shear stress t min (in MPa) in the web MPa (c) the average shear stress to (obtained by dividing the shear force by the area of the web) and the ratio 'max (Enter Taver your answer for T. in MPa.) aver aver Taver MPa max = T aver Vweb (d) the shear force V web in kN) carried in the web and the ratio V KN Vweb = V web V =
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