Evaluate the total force on the gate (unit width) and its direction. (specific weights of Water: 9790 N/m?) (answer01) N, (answer02) degree B. Water 1 m x= y2
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Q: Evaluate the total force on the gate (unit width) and its direction. (specific weights of Water:…
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Q: Evaluate the total force on the gate (unit width) and its direction. (specific weights of Water:…
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- A 6-in. diameter hole is drilled in the conical frustum. Calculate the volume and the surface area of the resulting body.A triangular wooden body (S=0.80) is placed in water in theposition indicated in the figure. If the width of the body is 7.0 m,determine if the same for this position is stable or not indicating themetacentric height (YM).plzzzzzzz help What is the minimum Block mass (kg) that is required to open the gate A-B? The density of water is 1000 kg/m3 and the density of the block is 8000 kg/m3. The specific gravity of oil is 0.9. The depth of the gate is not required. The external force that effects the gate at point A is Fe=3000 N, while the hydrostatic force Fh=9313.8 N
- The cover in the figure is hinged at the center O and has a fixed width w = 5 m. The equation of the surface is x = y2 / a (a = 3 m), the depth of the water to the right of the cover is D = 4 m. Find the magnitude of the applied force (Fa) as shown. Take the density of water as 999kg / m3.EMERGENCY!!!! The cover in the figure is hinged at the center O and has a fixed width w = 5 m. The equation of the surface is x = y2 / a (a = 3 m), the depth of the water to the right of the lid (D = 4 m). If the weight of the lid is neglected, it is necessary to keep the lid in balance. Find the size of the force (Fa) required, as shown. Take the density of the water as 999 kg / m3.A 4-m-long quarter-circular gate of radius 4 m and of negligible weight is hinged about its upper edge A, as shown in the figure. The gate controls the flow of water over the ledge at B, where the gate is pressed by a spring. Determine the minimum spring force (in N) required to keep the gate closed when the water level rises to A at the upper edge of the gate. Round your answer to 2 decimal places.
- Determine the force P necessary to just keep the 2 m-wide gate closed. Ignore the weight of the gate. Specific weight of water = 9.81 kN/m³Determine the location of the total hydrostatic force from thr bottom surface and the top surface acting on the 2m x 4m gate shown on the illustration.A 4-m-high, 5-m-wide rectangular plate blocks the end of a 4-m-deep freshwater channel, as shown inthe Figure 2 below. The plate is hinged about a horizontal axis along its upper edge through a point Aand is restrained from opening by a fixed ridge at point B. Determine the force exerted on the plate bythe ridge. Clearly state all asuumptions and illustrations.
- EMERGENCY!!!! The cover in the figure is hinged at the center O and has a fixed width w = 5 m. The equation for the surface is x = y2 / a (a = 3 m), the depth of the water to the right of the cover (D = 4 m). Find the magnitude of the applied force (Fa) as shown.When calculating the value of the force exerted by the water on the window of the dam. Explain why if the pressure varies from the surface of the water, the lower limit for the integral is taken from depth "a" and not from zero? (it is convenient that you make diagrams to support your answer).A 6-m-high, 5-m-wide rectangular plate blocks the end of a 5-m-deep freshwater channel, as shown in Figure. The plate is hinged about a horizontal axis along its upper edge through a point A and is restrained from opening by a fixed ridge at point B.Determine the force exerted on the plate by the ridge.