Activity 5: Determine the reactions of the pin support at 'A' and roller support at 'B' 5 kN 4.5m 15 m
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- The figure shows a three-pin arch. Determine the horizontal component of the pin reaction at A caused by the applied force P.Given the Horizontal wood member shown that weights 38 lbs/ft and supports three vertical loads F1 - 200 Lbs, F2= 100 Lbs, F3 = -400 Lbs, and is supported by a Pin at A and a Roller at B, calculate Reaction Ay. A origin k 4' 200# f 4' 100# + 400# 4' t 4' B XFind the horizontal and vertical reactions at the pin at B. Note that the support at D is fixed. Sign convention for the positive x and y direction applies for the answers. Diagram not to scale Answers: (a) -4 kN, 2 kN (b) 4 kN, -2 kN (c) 1.5 kN, 3 kN (d) -1.5 kN, -3 kN 3 kN B A D TTT 2 m 4 kN 2 m C 1m 2 m 5 m
- can sameone solve this thansurses/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 MSolve this with a complete solution. Draw the free body diagram.
- PravinbhaiCalculate the force in the tie rod BC and the reaction at the pinned support at point A for the rigid frame shown. Solve quickest way, show all written work pleaseSituation 22 - For the frame shown in AN- 5 m 15, the force F acting upward at C causes a RA horizontal reaction of 100 N at B. 29. Determine the value of the force F in kN. Answer: 120 kN 30. Determine the reaction at A in kN. Answer: 156.2 kN 31. Determine the angle in degrees that the reaction at A makes with the horizontal Figure SP-3.25 axis (positive counter clockwise). Answer: 230.19°
- PLEASE BE CLEAR THANK YOU SO MUCH! (please include the free body diagran and demonstration of applied theory)GIVEN: W= 1615 N X= 10 m Y= 15 m Z= 16 m COMPUTE THE REACTIONS: (a) At A in unit NEWTONS (b) At B in unit NEWTONS PLS PLS SHOW COMPLETE SOLUTION AND WRITE LEGIBLY. ALSO, DRAW THE FREE-BODY DIAGRAM. WRITE IN 4 DECIMALS PLACESThe weight of the limb is W=15 lbs.The contact of foot with the ground can be modeled as a pin/hinge here. Determine the reaction force of the ground and the reaction at the knee joint and its direction/angle θ. Note: use the thee force member condition to find the angle of FK.Q4.As it’s been shown in the below figure,a person is using an exercise machine. Points A and B correspond to the shoulder and elbow joints, respectively. Relative to the person, the upper arm (AB) is extended toward the left (x-direction) and the lower arm (BC) is extended forward (z-direction). At this instant, the person is holding a handle that is connected by a cable to a suspending weight. The weight applies an upward (in the y-direction) force with magnitude F on the arm at point C. The lengths of the upper arm and lower arm are AB̅̅̅̅= 20cm and BC̅̅̅̅= 25cm, respectively, and the magnitude of the applied force is F = 400 N.Determine the components of reaction developed at the shoulder joint A When the…