Structural Analysis
6th Edition
ISBN: 9781337630931
Author: KASSIMALI, Aslam.
Publisher: Cengage,
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- The vertical reducing section shown in the figure contains oil with S flowing upward at the rate of 0.5 m /s. The pressure at the larger section is 200 kPa. Neglecting losses, determine the force induced by the flow on the contraction. 0.86, 300 mm dia asomm 450mm 450 mm diaarrow_forward= What is the gauge pressure at point P in the figure? Assume g 플 Water Immiscible liquid of sp. gr. 1.6 P 0.8 m 1 m 10 m/s²arrow_forwardProblem 10.56 The 100-mm-diameter commercial steel pipe discharges water at 25°C through the 40-mm-diameter nozzle. (Figure 1) Figure 40 mm g 60e 3m A 100 mm 1 of 1 Part A If the pressure at A is 250 kPa, determine the discharge. The minor loss coefficient of the nozzle is KL = 0.15. Express your answer to three significant figures and include the appropriate units. Q= Submit OL μА Value Provide Feedback Request Answer Units ? (v 5 of 6 Review Next >arrow_forward
- In fig. if H= 88 inches, the difference in pressure =---?(the fluid is water) Piezometer (static) tube- -Pitot tube 2 BAR CO -Fluid stagnates at point 2 (v₂ = 0) 357.6. lb/ft2 O 243 lb/ft2 O 457.6 lb/ft2. Oarrow_forwardFor the system shown below, compute the (a) gage pressure and (b) absolute pressure at point A. The atmospheric pressure is 14.7 psi. Express the pressures in psi (Ib/in?). Oil (SG = 0.85) Water 6 in A Mercury (SG = 13.6) 9 in 7 inarrow_forwardThe cage system shown in the figure is made of EC rod. The Flow Limit of the material is 180 MPa and the Safety Coefficient is 4 is desired to be. Accordingly, the circular cross section EC rod Calculate the diameter.arrow_forward
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