Determine the forces in the members of the roof truss shown 23.4kN 30° B 30 30° A 12.2kN
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Q: OKI4ft 8 ft t 12 ft. 16 ft 32 ft 30 ft
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- Determine the bar forces of member BG. For the given loads: X= 15kN, Y= 45kN, Z= 60kN, B= 15Determine the forces in each member of the right half of the truss using the method of joints. Given: F1=5 kN F2=12 kN F3=4 kN F4= 11 kN L=8 mUsing Method Of Sections, Determine The Forces In Members CD And JK, Given That P = 30 KN And Q = 10 KN. 2 M A 3 M
- Determine the force (N) in link AB if P = 23.7 kNand d = 0.44. Round off only on the final answer expressed in 3 decimal places .Using the method of joints, determine the magnitude of force (lb) in member CD of the truss shown if P = 9209 lb, x = 15.2 ft, and y = 8.5 ft. Round off only on the final answer expressed in 3 decimal places.A house with 932 kN weight is built on a steep slope defined by points A, B, and C. To help assess the possibility of slope failure (mud slide), determine the components of the weight in directions normal (perpendicular) to the slope.
- Determine the magnitude of force (lb) in member BD if P = 169.2 lb, x = 16.5 in, y = 9.1 in, and z = 9.6 in. Round off only on the final answer expressed in 3 decimal places.The truss has concentrated loads as shown. The wind loads of 25KN are perpendicular to the member AF. Solve for the forces acting on the members BE, DE, DG by the method of joints.Determine the magnitude of the force (lb) in member CD and BD of the truss shown if P = 326820 lb, Q = 35510 lb, and y = 6.9 ft. Round off only on the final answer expressed in 3 decimal places. Instead of units, indicate whether the force is tensile or compressive: use T if tensile and C if compressive.
- Using the method of joints, determine the magnitude of force (lb) in member CD of the truss shown if P = 9358 lb, x = 13.6 ft, and y = 7.8 ft. Round off only on the final answer expressed in 3 decimal places. Instead of units, indicate whether the force is tensile or compressive: Use T if tensile and C if compressive.Determine the magnitude of force (lb) in member BD if P = 166.8 b. x = 15 3 in v= 10 9 in and >= 9.6 in. Round off only on the final answer expressed in 3 decimal placesDetermine the magnitude of the force P required to maintain the equilibrium of the two bar linkages. The mass and the length of each link are m and l, respectively. Hint: Use the principle of virtual work [20 marks] P G_{1} ^ * G_{2} mg θ mg