Determine the reaction at support B using Force method analysis. Assume support A is fixed and support B is roller. Set w = 10 kN/m amd El is constant. ... W A 6 m B 2 m.
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- Problem Statement Based on Problem 5-11 from the textbook. Determine the reactions at the supports. W=430 N/m a=3.3 m b=1.5 m a W BFind the reaction in pin A ? 70% 1 m -1.40 m 0.8 m 1962 NMake the free body diagram and calculate the reaction efforts at the points with movement restrictions imposed. Data: L1 = 1.9m L2 = 3.3m L3 = 3.5m P1 = 75kN P2 = 140kN
- Problem Statement Based on Problem 5-74 from the textbook. The bend rod is supported at A, B, and C by smooth journal bearings. Determine the components of reaction at the bearings if the rod is subjected to the force F. The bearings ar ein proper alignment and exert only force reactions on the rod. F=815N d=0.8m e=2.20 m f=2.15 m 30° 60° B d f 0.75 m25 KN Using the method that has been covered, find the displacement of the node 2 if E1 = 100 GPa and A1=10-6 m² and E2= 200 GPa and A2=2x10 6 m². N2 5 cm 2 30° N3 N1, Note: The stiffness matrix of individual elements should be first written, then the equilibrium equations at each node should be written, expanded in terms of nodal displacement, and used to perform the assembly of the global stiffness matrix of the problem. Then, the appropriate boundary conditions should be applied and the nodal displacement vector should be found. Every step should be shown; missing any step would result in point deduction even if the final answer is correctFind the reaction forces at pin A and smooth rocker at B. Assume F = 15 kN. Ax = Ay = B = y F A 30° 6 m 2 m %3D
- Problem Statement Based on Problem 5-74 from the textbook. The bend rod is supported at A, B, and C by smooth journal bearings. Determine the components of reaction at the bearings if the rod is subjected to the force F. The bearings ar ein proper alignment and exert only force reactions on the rod. F= 815 N e= 1.95m d= 1.00 m f= 2.20 m 30° 60° F B d f 0.75 mIn the given figure, support A is a roller and support B is a pin support. If P=15 kips, calculate the 1) vertical reaction at A, 2) vertical reaction at B, 3) horizontal reaction at B P 6 kips 6 kips В 6 ft – 3 ft 2 ft ' 2 ftQI (5-22) : The uniform door has a weight W and a center of gravity at G. Determine the reactions at the hinges if the hinge at A supports only a horizontal reaction on the door, whereas the hinge at B exerts both horizontal and vertical reactions. Given: W := 100N a := 0.3m b:= 0.3m 4y - 33.3N c:= 0.05m By= 33.3N d:= 0.2m By = 100N
- ZTE The light boom AB IS attached to g vertical point a force Pis applied Wall by a ball and socket at A and Suppore by two cable> at B.a where P= 14i-12) KN Note that the at B force at A two -force member Calculate the magntude reaction a cts a cts along the boonm because it rs of the force reaction at A in kN. key 2m. meters 4M- 3. 6 m A b take sum forces at point B, Sum the veetor in 1,J,K and so lue the simaltaneous equation involuing BD BC and AD heBased on Problem 5-11 from the textbook. Determine the reactions at the supports. w=420 b= 2.9 m a= 3.4 m 4 a W b Burses/202120 7088 MET13481/MET%20134%20-%20Exam%203 pdf 1/3 100% Be sure to draw Free Body Diagrams for all problems 1. Determine the reaction forces at pins A, B and C using method of parts (frames). Show all work including corresponding drawings and reference frame. 15K C 3' -1.5' 30K IOK PriScr Insert Delete F12 Bockspace Num Lock Enter Shift M