Consider a large cubic ice block floating in seawater. The specific gravity of ice is 0.92. Determine the specific gravity of the seawater if 10 % of the ice block extends above the surface of the water.
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Q: a) Consider a large cubic ice block floating in seawater. The specific gravity of ice is 0.91. If 10…
A: We are suppose to solve only one question. Please post other question as a separate question.
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- (b) A vessel of 4 m? volume contains an oil which weighs 30.2 kN. Determine the specific gravity of the oil.A body is float and submerged in sea water (s.g. = 1.03) and has a weight of 641,750 kN. If the ratio of the upper volume and the lower volume with respect to the sea water surface is 0.40, determine the upper volume of the body. 1. SWS SWS 2. In Problem 1, determine the total volume of the body.Q2/A rectangular plate of AB 1.2 meter by 5-meter size is immersed in water. The plane of the plate is inclined at 45° with free water surface and the end of plate at(B) a depth of 5 meters from water surface. Find the total pressure on the plate and the position of center of pressure. Free water surface ha he Hinge G C Fig. 3.33 1.2 m 5m
- Q3) A solid wood cylinder of diameter 2 ft and height of 4 ft as shown in Fig.3,the specific gravity of the wood is 0.6 .Ir the cylinder floats vertically in oil of specific gravity 0.85. State whether the equilibrium is stable or unstable. the specific weight for water y 62.4 Ib/ft. 4 ft 2 ft Fig.3Q2/A rectangular plate of AB 1.2 meter by 5-meter size is immersed in water. The plane of the plate is inclined at 45° with free water surface and the end of plate at(B) a depth of 5 meters from water surface. Find the total pressure on the plate and the position of center of pressure. Free water surface ho hp 5 m Hinge. 1.2 m 5m Fig. 3.33 G Cb) Determine the pressure exerted on a submarine at 300m below the free surface of the sea. Assume the barometric pressure to be 101 kPa and density of sea water to be 1030 kg/m².
- B3. A circular plate of diameter 2.25 m is vertically placed in water in such a way that the centre of the plate is 5.55 m below the free surface of water. Find the total pressure & center pressure on the plate. Draw the diagram neatly. Total Pressure on the circular plate (in N) Centre of Pressure on the circular plate (in m)Q1) If the vertical component of the hydrostatic force on the gate BC shown in fig.1 is 1200 kN.Calculate : 1- the width of the gate 2- the horizontal component (Fu) 3- the angle at which the resultant will act (the direction of the resultant). Water 5m C 5m 4mQ4; A liquid when poured into a cylinder is found too weigh 12 N when occupying a volume of I liter. Determine its specific weight, density, and specific gravity of this liquid.
- Determine the specific gravity of a 2.50 m. of a certain liquid if the pressure in its column is three-fourths of the pressure in a column of mercury 30.64 cm. high.3. A spherical tank is designed to be filled with gasoline (SGg3soline = 0.75). If the allowable maximum gage pressure at the bottom of the tank is 3 bars. Determine the following: a) total volume of the gasoline in m³ b) the total mass of gasoline in metric tons.1. Hydrostatic Force on Plane Surface. An open rectangular tank is 7 m high and has a square base 5 m on a side. If the tank is half-filled with fresh water (density is 1000 kg/m'), determine (a) the total hydrostatic force on a vertical side, in kN and (b) the location of the center of pressure as measured from the liquid surface, in cm. Draw the side view of tank showing the hydrostatic force F and the distance, yp. Is I + Ad a. Magnitude: F = yh,A b.Direction: Perpendicular to the Area c. Location: y, === S.