B 4. The framp is loaded as shown. Determine reactions at A and B and the force on the pin at B. a=2m, b=5 m, c=3 m, d=3m, P=2 kN, M=5 kN·m. Handwritten+FBD
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- Determine the magnitudes of all pin reactions for the frame loaded as shown. Assume F = 710 N, a = 835 mm, b = 340 mm, 0 = 34°, and o = 60°. F B A D Answers: A = 415 N B = i -828 N D = i -828 NDetermine the magnitude of the pin force at A. Assume W = 790 lb, a = 4.1 ft, b = 3.0 ft, r = 8 in. W lb C Answer: A = i B A D b1. Determine the horizontal and vertical reaction forces at PINS F, C and E. 2. Determine the Internal loads at B and D. You must show all working and FBDS. 3.2 m 3.2 m 90 kN/m 80 kN X В 1.8 m 90 kN/m 3.2 m E
- 2.0 m 100 kg 2.0 m 0.5 m 1.5 m 1.5 m The pulley at E is frictionless. Point B is a pinned connection; support A is a fixed support. The pin at C is in a smooth slot. s in: Determine the magnitude of of the x-component of the reaction force at A, Ax= N. Determine the magnitude of of the y-component of the reaction force at A, Ay= N. Determine the magnitude of of the external moment applied at A, MA= Nm. O O :The bars AB and AC are joined by a pin at A and a horizontal cable. The vertical cable carrying the 100kNis attached to the pin at a. Determine the tension in the horizontal cable. Also, determine the reactions at the hinge and roller. Neglect the weights of the bars. a. Determine the tensile force (kN) on the cable.b. Determine the vertical reaction (kN) of the hinge. Indicate its direction, use positive value if it is upward and negative if it’s downward.c. Determine the horizontal reaction (kN) of the hinge. Indicate its direction, use positive value if it’s to the right and negative if it’s to the left.d. Determine the vertical reaction (kN) of the roller support. Indicate its direction, use positivevalue if it is upward and negative if it’s downward. Plsss show complete handwritten solution. Thanksss!!Need help please
- 2. Use the Method of Sections for this problem. From drawing a FBD of the entire system and summing the moments about point A, you find that the reaction force at roller F=115kN ↑. Determine the force in members CD, CH, and HI and state if each member is in tension or compression. 2 m 80 kN 100 kN 2 m- 2 m- E D 1.5 m C -60 kN H 1.5 m B 80 kN I A 1.5 mThe compound beam is fixed at E and supported by rollers at A and B. Determine the reactions at these supports. There are pins at C and D. 800 lb --5ft+ 1200 lb C 600 lb 10 ft 5 ft 4 ft 6 ft D E -5 ft-Determine the magnitudes of all pin reactions for the frame loaded as shown. Assume F = 630 N, a = 810 mm, b = 405 mm, 0 = 34°, and = 59° Answers: A = B= D= i i i o Ө b B F D Z Z N N N
- For the pin-connected frame shown, a = 10 in, b = 7.5 in, and F = 100 lb. Find the magnitude of the support reaction at Point A.4. The F-shaped assembly is welded to collar A that fits frictionlessly on the vertical pin that is aligned with the y-axis. The combined assembly+collar is free to slide vertically along the pin. For the loading shown, determine the tension in each cable and the reactions at A. 60 mm F 80 mm y C 45 mm 480 N E 90 mm 120 mmDetermine internal reaction at the point located between A and C, 0.7 m to the right of A. Disregard the radius of the pulley’s as the radius is not given to us in this problem.

