Determine the support Reactions 5000 lbs K ** 5ft 54 K
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- Situation 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°For the spring assemblages shown in Figures 2, determine the node Displacements, the forces in each element, and the reactions. Use the direct stiffness Method for all problems. Su0 KN/ m 2EN 3. 3 3 Suo KNIM Suo EN/m 3. ZEN Fig 2Determine the reaction components for the figure below.
- Compute for the external reactions for all members of the frame shown. Please solve the following: Vertical Reaction at A Horizontal Reaction at A Vertical Reaction at E Vertical Reaction at D Vertical Reaction at B Vertical Reaction at C Horizontal Reaction at C Horizontal Reaction at B Horizontal Reaction at DAn L-shaped bar is supported by a bearing at A and a smooth horizontal surface at B. Take the value of Fto be 720 N. NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. 1.5m 1.5m 2m Determine the reactions at A and B. (Do not include a minus sign in your response.) The y component of the reaction force at A is [ NT. The z component of the reaction force at A is N✓. The reaction moment at A about the y axis is N-m . The reaction moment at A about the z axis is N.m O The y component of the reaction force at Bis NT.Q5/A) From the figure below, determine the reaction force at pin C. A 000 0.6 m 10 kN 0.6 m 0.8 m 60° 0.4 m 6 kN OB
- Answer questions quecly pleaseQuestion 4. Consider the diagram below, which is not to scale. R A A Ym Reaction at A: RA= = Reaction at B: RB X KN = 6m Given that X = 45 kN and Y = 5 m calculate the reactions at support A and B. Enter your answers in kN correct to three significant figures in the appropriate boxes below. KN B KN R BFind the reactions at the supports for the beam that weighs 10 kN shown below. The length of the beam is 10m. 15KN 12KN 20kN 2m 2m 2m