The Seawolf class nuclear submarines have a crush depth of approximately d = 705 m. The density of seawater is ρ = 1.03×103 kg/m3. Atmospheric pressure is P0 = 1.01×105 Pa.
Part (a) Find the inward force of the water, in newtons, at crush depth on a circular porthole with a radius of r = 0.39 m.
Part (b) If the interior of the submarine is kept at atmospheric pressure, what will be the magnitude of the net force on the porthole, in newtons?
The Seawolf class nuclear submarines have a crush depth of approximately d = 705 m
a and b needed (5%) Problem 14: The Seawolf class nuclear submarines have a crush depth of approximately d = 735 m. The density of seawater is e = 1,03x10 kg/ml. Atmospheric pressure is Po=1.01x10 Pa. theexpert A 50% Part (a) Find the inward force of the water, in newtons, at crush depth on a circular porthole with a radius of 0.43 m. Grade Summa Deductions Potential E 4 5 6 Submissions Attempts remai (49 per attemp detailed view sin()...
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A-D Class Management Help Hw #13: Fluid Mechanics Begin Date: 71820 18 12:01:00 AM .. Due Date: 11/28/2018 1 1:59:00 PM End Date: 12/31/2018 11:59:00 PM (8%) Problem 4: A person is diving in a lake in the depth of h-8.5 m. The density of the water is,-1.0 x 103 kg/m3 The pressure of the atmosphere is PO = 1.0 x 105 Pa. The surface area of the top of the person's head is A-a 0385 m2 A 25% Part...
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