Determine the final gage pressure
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- An automobile tire is inflated to 32 psig at 50°F. After being driven the temperature rise to 75°F, determine the final gage pressure assuming the volume remains constantThe water in a tank is pressurized by air, and the pressure is measured by a multi-fluid manometer. Determine the gage pressure of air in the tankThe pressure in an automobile tire depends on the temperature of the air in the tire. When the air temperature is 25°C, the pressure gage reads 210 kPa. If the volume of the tire is 0.025 m3, determine the pressure rise in the tire when the air temperature in the tire rises to 50°C. Also, determine the amount of air that must be bled off to restore pressure to its original value at this temperature. Assume the atmospheric pressure to be 100 kPa.
- The gage pressure in a liquid at a depth of 3 m is read to be 42 kPa. Determine the gage pressure in the same liquid at a depth of 9 mThe pressure in an automobile tire depends on the temperature of the air in the tire. When the air temperature is 25 °C, the pressure gage reads 210 kPa. If the volume of the tire is 0.025 m3, determine the pressure rise in the tire when the air temperature in the tire rises to 50 °C. Also, determine the amount of air that must be bled off to restore pressure to its original value at this temperature. Assume the atmospheric pressure is 100 kPa.The pressure at a point in the seawater is 100 kPa, determine the pressure in kPa 33.43 meters below this point?
- A 3 m diameter , 7 m long cylindrical tank is completely filled with water. The tank is pulled by a truck on a level road with 7 m long axis being horizontal. Determine the pressure difference in kPa between the front and back ends of the tank along a horizontal line when the truck accelerates at 3 m/s^2. a.21 b.25 c.23 d.28A pressure gage connected to a tank reads 500 kPa at a location where the atmospheric pressure is 94 kPa. Determine the absolute pressure in the tank.The water in a tank is pressurized by air, and the pressure is measured by a multi-fluid manometer, as shown in the figure. Determine the gage pressure of air in the tank.
- A tank of water 4 m deep receives a constant upwardacceleration a z . Determine ( a ) the gage pressure at the tankbottom if a z = 5 m 2 /s and ( b ) the value of a z that causes thegage pressure at the tank bottom to be 1 atm.Determine the pressure of compressed air in an air vessel if the manometer mounted on it shows a pressure of 3 m of mercury. Assume density of mercury to be 13.6×10^3 kg/m^3 and atmospheric pressure as 101 kpaIf 100 ft3 of atmospheric air at zero Fahrenheit temperature are compressed to a volume of 1 ft3 at a temperature of 25 0F, what will be the pressure of the air in psi?