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Name: (If your PID is "5684659", then A = 5, B = 6, C = 8, D = 4, E = 6, F = 5 and G = 9) PID= A = B = C= E= F = NOTE: U

Posted: Sun Jul 10, 2022 11:47 am
by answerhappygod
Name If Your Pid Is 5684659 Then A 5 B 6 C 8 D 4 E 6 F 5 And G 9 Pid A B C E F Note U 1
Name If Your Pid Is 5684659 Then A 5 B 6 C 8 D 4 E 6 F 5 And G 9 Pid A B C E F Note U 1 (89.81 KiB) Viewed 67 times
Name: (If your PID is "5684659", then A = 5, B = 6, C = 8, D = 4, E = 6, F = 5 and G = 9) PID= A = B = C= E= F = NOTE: Use extra pages if required. Submit through canvas as a single pdf file. 40 + E = Rpx kips 1. (40%) Find the reaction forces R₁, R₁, Rø and RÃ, for a simply supported beam provided in figure below. 16+A= RPY 3 + F= V U Homework 1 ft. ft. Q 3+G= 18+ B = ft. ft. D= 30+A= R 15+ C = kips/ft. ft. Grade: 10 + D = ft. G = RTY RTx
2. (60%) A structural steel beam supports a roof that weighs (45+A the weight of the beam). An analysis of the loads found the following: S = (27+B = psf., L₁= (27+C=_ _) psf. (upwards) or (23+E =¸ _) psf. and W = (32+D = psf. (downwards). If the beams are spaced (8 ft. and F in. = __) apart, determine the factored uniformly distributed load per foot (upward and downward, if appropriate) for which each beam should be designed. If the length of the beam is (13+G = _) ft. and is simply supported, determine the magnitude and location of maximum shear force and moment. Use recommended LRFD expression from the AISC. _) psf. (including