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Q: Find the pressure at 13 KM in standard atmospheric conditions.
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Determine the altitude in feet where the density ratio is 0.465 in standard atmosphere.
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- Find the altitude in meters where the density is 0.268 Kg/m° in the standard atmosphere.The basic barometer can be used to measure the height of a building. If the barometric readings at the top and at the bottom of a building are 675 and 695 mmHg, respectively, determine the height of the building. Take the densities of air and mercury to be 1.18 kg/m3 and 13,600 kg/m3, respectively.The basic barometer can be used to measure the height of a building. If the barometric readings at the top and at the bottom of a building are 29.7” and 28.7” Hg, respectively, determine the height of the building in feet. Assume an average air density of 0.0023 slug/ft3 (1 slug = 32.174 lb) and SG of Hg = 13.55.
- Answer the problem solving: 1.Find the density at 40,000 ft altitude in a standard atmosphere?4) The basic barometer can be used to measure the height of a building. If the barometric readings at the top and at the bottom of a building are 730 and 755 mm Hg, respectively, determine the height of the building. Assume an average air density of 1.18 kg/m3 and density of mercury to be 13,600 kg/m³. Pog = 730 mmHg h =? Pot= 755 mmHgThe atmospheric pressure on top of Mt. Everest (elevation 29,028ft) is 0.329atm. Calculate the atmospheric pressure in mmHg and torr. Round each of your answers to 3 significant digits.
- The pressure of the atmosphere at sea level is 1.01 × 105 N/m2. Calculate the area over which the force of the atmosphere equals the weight of a 1000-kg car.If 29.89 in Hg is a barometric pressure then convert the following,An aircraft is flying at a certain altitude where the density ratio is 0.78. Calculate for the altitude where the aircraft is located. Assume standard sea level conditions. (In English system)* 8,184.83 ft 8,443.19 ft 8,334.83 ft 8,245.78 ft