Calculate the normal force, shear force and moment at point C for the given problem below
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Q: * For the cross section shown in the :figure. Find the value of Y 250 mm A1 40 mm Neutral Axis (N.A)…
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Q: completely balanced
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Q: supported
A: xB=3ft AB=52+32=34 CD=22+32=13 At point C ∑Fx=0313FCD=4530FCD=28.84lb∑Fy=0-213FCD-3530+FCB=0FCB=34lb…
Q: (c) 5 1 -1 3
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Q: (e) E = бу 30 MPa Txy 85 MPa Ox 120 MPa = =
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- A seesaw weighing 3 lb/ft of length is occupied by two children, each weighing 90 lb (see figure). The center of gravity of each child is 8 ft from the fulcrum. The board is 19 ft long, 8 in. wide, and 1.5 in. thick. What is the maximum bending stress in the board?A large precast concrete panel for a warehouse is raised using two sets of cables at two lift lines, as shown in the figure part a. Cable 1 has a length L1 = 22 Ft, cable 2 has a length L2= 10 ft, and the distance along the panel between lift points Band D is d = 14 ft (see figure part b). The total weight of the panel is W = 85 kips. Assuming the cable lift Forces F at each lift line are about equal, use the simplified model of one half of the panel in figure part b to perform your analysis for the lift position shown. Find the required cross-sectional area AC of the cable if its breaking stress is 91 ksi and a factor of safety of 4 with respect to failure is desired.(Mechanics and Materials Class) Problem 7: Find the reactions at the supports, and find the shear force and bending moments.
- A boom with an angle of theta, supports a 1000lbs load, as shown in the figure. Assume that the force exerted by the boom is 3 times the force exerted by the cable that holds it in place, what is the force exerted by cable A?The corner of a floating body has a quarter cylinder AB having a length normal to the paper of 3 m. Calculate the magnitude and location of each of the components of the force on AB. See Figure 5a.Kindly give me both a and b answers. Please kindly Give me both solutions... Thank you. Analyse the structures shown in the figure by force method and draw their bending moment and shear force diagrams.
- Calculate the support reaction forces of the system given in the figure and draw the Norma Force (N), Shear Force (T) and Bending Moment (M) diagrams of the system. (In this question, M, N, T Equations will not be written.)1.Calculate the axial force in rope J in N. 2.Calculate the elongation in rope K in mm. 3.Calculate the normal stress in rope L in MPa.Solve the problem below. For your final answer, use whole number. An extra flexible 8 × 19 steel wire rope of 38 mm diameter is used with a 2 m diameter hoist drum to lift 70 kN of load. The wire rope has a length of 900 meters. The maximum speed is 3 m / s and the acceleration is 1.5 m / s2. The diameter of the wire may be taken as 0.05 d, where d is the diameter of wire rope. The modulus of elasticity of the entire rope is 84 × 103 N/mm2. The weight of the rope is 53 N/m length. Determine the effective load during acceleration of load in kN.
- 1. Calculate the axial force in rope J in N - Calculate the elongation in rope K in mm - Calculate the normal stress in rope L in MPaA bar 2 m long makes an angle of 30° with the horizontal. A force of 40 N is applied 0.4 m from the upper end. Calculate the torque due to this force about each end.we want to build a single-rail overhead crane in the workshop.when the load reaches the extreme point, it is 1800 mm away. the rail-shaped profile iron of the crane is connected from point B to point A by rope.the tensile stress of the rope is = 600 mpa. and the cross-sectional area is a=802 mm.according to other dimensions given (a=850mm b=1500 mm), this vince can hang No more than how many kg of load.(G=?)