Consider the rectangle with length a =1.8 m and width b= 1.5 m, locatedd= 0.7 m below the water surface. Determine the resultant force P due to the water acting on the rectangle. P= Round your answer to 2 decimal places. kN ho= Round your answer to 2 decimal places. m
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- A U-tube open at both ends is partially filled with water (Figure (a)). Oil (p = 750 kg/m³) is then poured into the right arm and forms a column L = 4.53 cm high (Figure (b)). Shield Po Water Oil (a) Determine the difference h in the heights of the two liquid surfaces. (The density of water is 1.00 x 103 kg/m3.) cm (b) The right arm is then shielded from any air motion while air is blown across the top of the left arm until the surfaces of the two liquids are at the same height (Figure (c)). Determine the speed of the air being blown across the left arm. Assume the density of air is 1.29 kg/m. m/sA geologist finds that a Moon rock whose mass is 9.78 kg has an apparent mass of 6.53 kg when submerged in water. What is the density of the rock? The specific gravity of an object is 0.957, whereas that of seawater is 1.025. What percent of an object is above the surface of the water?:A vertical plate is submerged in water and has the indicated shape. 7 ft 6 ft 5 ft 5 ft Express the hydrostatic force (in ft) against one side of the plate as an integral (let the positive direction be downwards) and evaluate it. (Recall that the weight density of water is 62.5 Ib/ft°.) dx = ft
- A boat displaces 5.76 m3 of water when if floats on the surface of a lake. What is the magnitude of the buoyant force acting on the boat? (The density of water is 1000kg/m3)Hoover Dam is about 180 m high, measured from its low‑water surface to the crest of the dam, and about 380 m long. Assume that the dam is filled to 81% of its full height. Estimate the total hydrostatic force ? on the Hoover Dam. ?=. ×10NA U-tube open at both ends is partially filled with water (Figure a). Oil having a density of 790 kg/m³ is then poured into the right arm and forms a column L = 5.18 cm high (Figure b). Shield Po FU h Water Oil a (a) Determine the difference h in the heights of the two liquid surfaces. cm (b) The right arm is then shielded from any air motion while air is blown across the top of the left arm until the surfaces of the two liquids are at the same height (Figure c). Determine the speed of the air being blown across the left arm. Take the density of air as 1.20 kg/m³. m/s
- An object of volume 2.00 m^3 is fully submerged in water ( ?water=1000.00 kg/m^3 ). In order to keep the object stationary, an upward force of 7600.00N must be applied to keep the object from sinking. Determine the density of the object. a. 612.24 kg/ m^3 b. 19600.00 kg /m^3 c. 387.76 kg /m^3 d. 12000.00 kg/ m^3 e. 1387.76 kg/ m^3Consider an iceberg to be in the form of a cylinder of arbitrary diameterand floating in the ocean as shown. If the cylinder extends 2 m abovethe ocean’s surface, determine the depth of the cylinder below thesurface. The density of ocean water is w = 1024 kg/m3, and the densityof ice is I = 935 kg/m3.Ggg