Structural Analysis
6th Edition
ISBN: 9781337630931
Author: KASSIMALI, Aslam.
Publisher: Cengage,
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- Help. Kindly answer this and discuss step by step. Thank you.arrow_forward3. Water flows through the horizontal branching pipe which is fixed by a flange as shown in the following figure. At section 1, the pipe continues to the left and hence the gauge pressure is not zero (see Figure below). At sections 2 and 3, gauge pressure is zero (atmosphere). A₂ 14 kPa A₂ 60⁰ stationary? A₂ For this problem: A₁= 600 cm² V₁=3 m/s A2= 100 cm² V₂= 3 m/s A3 = 300 m/s g= 10 m/s² p= 1000 kg/m³ What is the velocity at section 3 (V3)? What is the horizontal force F that the flange applies to keep the pipe systemarrow_forwardDraw a free body diagram for the whole system shown below and write three equilibrium equations.arrow_forward
- The tank shown has one curved surface restraining a body of static fluid with 3.55 kPa air pressure above the fluid and sg = 0.88, with the following dimensions: w = 5.50 m h1 = 2.1 m D1 = 0.85 m Required Compute the magnitude of the resultant force, in kN, to the nearest 100th. Fluid sg = given hl D1arrow_forwarddetermine the resultant internal loadings acting on the cross section at c of the machine shaft shown in the figure. the shaft is supported by journal bearings at A and B, which only exert vertical forces of the shaftarrow_forwardFluid mechanics, pipe problem: The pipe shown has a 180o vertical bend in it. The diameter, D, is 1 foot, and the pressure at the center of the pipe is 15psig. If the flow in the bend is 20 cfs, what external force will be necessary to hold the bend in place against the action of the water? The bend weighs 200 lbf, and the volume of the bend is 3 ft3. Assume the Bernoulli Equation applies. Rhowater= 62.4lb/ft3).arrow_forward
- m4arrow_forwardA solid compound shaft is subjected to torques as shown. The shaft is in rotational equilibrium. Determine the angle of twist of end D with respect to end A. where G = 8000 kN/cm2 %3D 800 N.m 450 N.m 200 N.m 150 N.m d = 2 d = 4 cm d = 1 A L=12 cm #CEF Team L =12cm D B L =24 cm C Angle of twist (rad) = 0.436 Angle of twist (rad) =0.23 Angle of twist (rad) = 0.007 Angle of twist (rad) = 0.218 Angle of twist (rad) =0.019arrow_forwardConsider (Figure 1). The cord is attached to the 39-lb block, and the coefficients of static friction are μ = 0.2 and HD = 0.3. Figure 1.5 ft B 3 ft -1.5 ft- D C 1 of 1 > Determine the smallest couple moment which can be applied to the 26-1b wheel that will cause impending motion. Express your answer in pound-feet to three significant figures. IVE ΑΣΦ ↓↑ vec M = Submit Provide Feedback Request Answer ? lb ftarrow_forward
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