The depth of water in the swimming pool is 4 m as shown in Figure Q2, at the temperature of 6 °C. Calculate the estimated depth when the temperature of water increases to 40 °C. Take the density of water at 40 °C as 992.0 kg/m³.
Q: Q2) ) If the vertical component of the hydrostatic force on the gate BC shown in fig.2 is 1200 kN…
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Q: 2. A vertical, triangular gate with water on one side is shown in Figure. Determine the total…
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Q: The depth of water in the swimming pool is 4 m as shown in Figure Q2, at the temperature of 6 "C.…
A: The heat which results in an appreciable rise in temperature of a liquid without actually changing…
Q: Q3: gage A in the figure reads 290 Kpa. What is the height h of water? and what does gage B read.
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Q: e force acting on the side of the tank when the acceleration is 5m/s2 vertically downward.
A: GIVENl=2mspecific gravity s=0.80a=5m/s2
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Q: he Titanic ship’s lost sister named Britannic sank off the coast of Greece 400 ft below the sea…
A: Givendepth H=400ft =400×0.3048 m=121.92mdensity ρ=63.9 lbm/ft3 =63.9×16.0185 kg/m3=1023.58 kg/m3
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Q: 3.) What is the mass density (in lb/ft^3) of a liquid 2600 cm depth if the pressure is 2.2 MPa.
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Q: consider the figure shown. Determine the pressure at point A if the tank contains a liquid with…
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Q: 4 m 8 m
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- A micircular gate with a radius R = 5 ft is hinged along B and held by a horizontal force applied at A. The picture on the right shows the gate if you were looking in the direon of the arrow beneath FA. The liquid has a depth of H=40 ft and applies a force on the ate of 200,032 lbf. What is FA in Ibf? FA A Gate: side viewA semicircular gate with a radius R = 7 ft is hinged along B and held by a horizontal force FA applied at A. The picture on the right shows the gate if you were looking in the direction of the arrow beneath FA. The liquid to the left of the gate has a specific weight of y-64.8 lbf/ft° and a depth of H-26 ft. Calculate the force of the liquid on the gate in Ibf. FA A Gate: side view R ВA vertical plate is submerged in water and has the shape as seen in the picture. Using the facts that the density of water is 1000 kg/m³ and acceleration due to gravity is 9.8 m/s², calculate the hydrostatic force (in N) against the end of the tank. Make sure your answer is correct to the nearest thousand. (Hint: First set up a Riemann sum that approximates the hydrostatic force, which can then be used to obtain an integral that represents the force.) 20 m Hydrostatic force =
- The flat surface shown is submerged vertically in water. Find the fluid force against the surface. The weight density of water is 62.4lb/ft'. -8 ft 8 ft 8 ft Enter the exact answer. F = i lbOil is placed inside a closed container, but it is not filled to the top. The vacant area above the liquid has an absolute pressure equivalent to 115 kPa, solve for the gage pressure located 2 meters below the liquid surface.A force sensor is immersed in a iquid with a density of 61 lb/ to a depth of 42 in and then placed in a second liquid with a density of 732 N/. What is the change in force on the sender if the diameter of the sensor is 8 cm and the change in depth is 5.9 cm?
- 1. Find the density of an oil filled in the liquid column as shown in figure. Given that absolute pressure at the bottom is 650 kPa, atmosphere pressure is 1.0132 bar. where X=4m; Y = 4m, Z=1m. (Enter only the values in the boxes by referring to the unit given in the bracket. Do not send the hand written answer sheets to my mail) water Mercury The density of the oil = (unit in kg/m) =Find the fluid force (in lb) on the vertical plate submerged in seawater (use 64 pounds per cubic foot for the weight density of seawater). 6 ft 3 ft 4 ft-The flat surface shown is submerged vertically in water. Find the fluid force against the surface. The weight density of water is 9810 N/m3. 1 m 3 m 6 m Enter the exact answer. F = i %3D
- A semicircular plate with radius r = 2 is submerged in water as seen in the picture. Using the facts that the density of water is 1000 kg/m³ and acceleration due to gravity is 9.8 m/s2, calculate the fluid force (in N) against the side of the plate. Make sure your answer is correct to three decimal places at least. radius=r Fluid force = # NQuestion 3 A triangular water trough is "a" metres wide and "a" metres deep, as shown in Figure 3. If the trough is filled with water, calculate the magnitude and location of the resultant force acting on the triangular end plates (shaded in grey). The density of water is 1000 kg/m³ (ignore the atmospheric pressure). Use the value of "a" corresponding to the last digit of your SID from Table 1. "a" m "am Figure 3: Triangular water trough a=7The bottom corner of a water tank that is 3 m wide (into the page) is constructed with a flat panel at an angle of 45° as shown in the figure below. The panel in question is shown as a heavy line. Note that water has a density of 1000 kg/m3. Determine: 1. The magnitude of the total resultant force acting on the panel Fg 2. The depth of below the water surface at which the resultant force vector acts on the panel, d