2. The frame shown in the figure is supported by a pin at point A and a roller at point E. Determine the force in member BC, EB, and the reaction at pin A using the method of members.
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- A plane truss is loaded as shown in the figure: It has a roller support at A and a pin support at B 1. Which of the following most nearly gives the reaction at B? 2. Which of the following most nearly gives the force in member CD? 3. Which of the following most nearly gives the force in member FGSolve Prob. 6.39 for P = 0 and Q = (-900 N)k.(Reference to Problem 6.39):The truss shown consists of nine members and is supported by a ball-and-socket at B , a short link at C , and two short links at D. (a) Check that this truss is a simple truss, that it is completely constrained, and that the reactions at its supports are statically determinate. (b) Determine the force in each member for P= (-1200 N)j and Q = 0.The elements of a floor jack are shown in the figure. If the hydraulic cylinder AB is designed to support a maximum compressive force of 37 kN, determine at this condition the load L (in kN) and the force (in kN) in link EF. Also, calculate the corresponding pin reaction (in kN) at C. Draw the correct FBD's of the hydraulic cylinder AB, link EF, and platform DF. Also, draw the combined FBD of the platform DF and member BCD. Note that figure CDFE if traced is parallelogram. Aslo, members BCD and EF are connected to the base of the jack by pins at C and E, respectively. Disregard friction between the contacting faces of members BCD and EF.
- The shovel of an end loader has pins at points A, B, C , and D. The scoop supports a downward vertical load of 4,400 lb, which is not shown in the figure, at point E. Determine the force the hydraulic cylinder AD must generate to keep the shovel in equilibrium in lb.The truss system shown below is supported by a pin at A and a roller at G. Determine the value of the support reactions at A and G. Use method of joint to find forces in member GA and GF. State if these members are in tension or compression.A 3-member truss is shown below. If P = 11 kN, determine: a. The support reactions at A and B (include directions) b. The member forces (use the Method of Joints and state if the members are in tension or compression C. Bonus question: If members BD and CD are added, what are their member forces? (use the Method of Sections and state if the members are in tension or compression)
- Using the method of joints, determine the force in each member of the roof truss shownin Figure -07. State whether each member is in tension or compression.The figure below shows a truss (a = 1 m), which is loaded by a force F = 2 kN. a) Determine the forces in the members S1, S4, S5, S6, S9 and S10.The member shown in the figure is supported by cables BD, CD, and EF as well as a ball joint at A. At point G it supports a weight load W = 400 lb.a) Draw the free body diagram.b) State the system of equilibrium equations.c) Determine the tensions in each of the strings as well as the reactions at joint A.
- help 4 decimal. FBD The Frame is hinged at rigid supports in A & E . Find the components of the Reaction at A and E and the force in member BC and BD.A truss is loaded by four forces, and support by a pin at A and a roller at F as shown. Determine: (a) Calculation of the force in member EF using the method of joints. (b) Calculation of the vertical roller reaction at F. (c) Calculation of the forces in members FG, DC, and FC using the method of sections. DO NOT use method of joints here. Also, indicate whether these members are in tension or compression.Please answer with a complete solution. Thank you! The three-member space truss supports the loading of F=1000N. Determine the force reactions at B, C, and D.