Structural Analysis
6th Edition
ISBN: 9781337630931
Author: KASSIMALI, Aslam.
Publisher: Cengage,
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- The gage pressure in a liquid at a depth of 2.5 m is read to be 26 kPa. Determine the gage pressure in the same liquid at a depth of 9 m. The gage pressure in the same liquid at a depth of 9 m is kPa.arrow_forwardI need the answer as soon as possiblearrow_forwardWater flows through a pipe reducer shown in figure 2. The static pressure in the large diameter pipe and the small diameter pipe are measured by the inverted U-tube manometer containing oil of specific gravity less than one. Determine the manometer reading, thus show that h is given by the equation h = ng(1-SG) la SG Water Figure 2 The diameter of a pipe changes gradually from 75 mm at a point A, 6 m above datum, to 150 mm at B, 3 m above datum. The pressure at A is 103 kPa and the velocity of flow is 3.6 m/s. Neglecting losses, with the aid of a neat sketch, determine the pressure at B.arrow_forward
- Flow rate of a fluid (p = 1000 kg/m³) in a small diameter tube is 800 mm³/s. The length and diameter of the tube are 2 m and 0.5 mm, respectively. The pressure drop in 2 m length of is equal to 2 MPa. The viscosity of the fluid is:arrow_forwardGiven The figure shows an inlet and outlet connected to a motor. If the pressure at A is 6.25 MPa and the pressure at B is 3.15 MPa. The motor inlet is a steel hydraulic tube with 25 mm OD × 1.5 mm wall and the outlet is a tube with 50 mm OD × 2.0 mm wall. The fluid is oil (sg = 0.84) and the velocity of flow is 1.40 m/s at point B. h1 = 2.60 m Required Calculate the power delivered to the hydraulic motor in kW to the nearest 100th. A h1 Flow |Motorarrow_forwardIn 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_forward
- The pressure in a gas tank is 2.75 atm. Compute the pressure head in meters of water. The unit weight of a liquid is variable and is given by the relation y = 10 + 0.5h. Determine the gauge pressure in kPa at a depth of 5m. %3Darrow_forwardFluid Mechanics. Reg.no : 5393 Pb # 3: Refer to Figure 2. Assume that friction is negligible, that θ = 115o, and that the water jet has a velocity of (Reg.No/100) m/s and a diameter of 60 mm. Find (a) the component of the force acting on the blade in the direction of the jet; (b) the force component normal to the jet; and (c) the magnitude and direction of the resultant force exerted on the blade. Note: Assume reasonable values for any missing data. Symbols have usual meaning unless otherwise stated.arrow_forward• A simple U tube manometer is given below. The pressure at which side is higher? o Left o Right o Left = right • In order to calculate the pressure difference at locations 1 and 2 (P2 - P1), we need to know the length of the inclined tube L, as is shown below. o True o False A fow section fow device Fluidarrow_forward
- 1.) A pressure in a given tank reads 398 mm of Hg. Determine the equivalent height of a certain fluid in m with sp.gr= 4.33.arrow_forwardConsider the lifting flow over a circular cylinder. The lift coefficient is 5. Calculate the peak (negative) pressure coefficient.arrow_forwardμ=0.20 6. For the given system, the cylinder of mass m is attached to a frictionless pulley. The chord attached to the 60.0 kg block runs through the fixed drum with coefficient of friction equal to 0.25. The coefficient of friction between the block and the incline is 0.15 and the coefficient of belt friction is 0.20. Determine the range of mass m so that the system remains at rest. μ-0.15 20⁰ m Solution guide: . Consider Case 1: the motion is impending down the plane. o What are the forces acting on the 60 kg block? o What is the direction of friction force? o Calculate the tension force acting on the block. Is this the heavier tension or the weaker tension? Consider Case 2: the motion is impending up the plane. o What are the forces acting on the 60 kg block? o What is the direction of friction force this time? o Calculate the tension force acting on the block. Is this the heavier tension or the weaker tension? Answer: 16.4348 kg ≤m ≤85.0868 kg 60 kgarrow_forward
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