Problem 2: A U-tube manometer is connected to pressurized tanks (Tanks A and B), as shown in Fig. 2. The pressure in Tank A is 500 kPa. The densities of water and mercury are 1000 and 13600 kg/m³, respectevely. Neglect the density of air and determine the pressure in Tank B. PB = Pa + Pm ghm + Yw g h w P 1000+ 13600 19.81)1.5) = 500000 + 13,600 (9.81-2.0m) +1000 (9.5Px1.0m) + 13, 600 (1-01), (2-2) + 1000 500000 Air T Im Mercury B Water KENA Air 1.5 m Fig. 2 U-tube manometer En
Problem 2: A U-tube manometer is connected to pressurized tanks (Tanks A and B), as shown in Fig. 2. The pressure in Tank A is 500 kPa. The densities of water and mercury are 1000 and 13600 kg/m³, respectevely. Neglect the density of air and determine the pressure in Tank B. PB = Pa + Pm ghm + Yw g h w P 1000+ 13600 19.81)1.5) = 500000 + 13,600 (9.81-2.0m) +1000 (9.5Px1.0m) + 13, 600 (1-01), (2-2) + 1000 500000 Air T Im Mercury B Water KENA Air 1.5 m Fig. 2 U-tube manometer En
Refrigeration and Air Conditioning Technology (MindTap Course List)
8th Edition
ISBN:9781305578296
Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Publisher:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Chapter1: Heat, Temperature, And Pressure
Section: Chapter Questions
Problem 14RQ: Atmospheric pressure at sea level under standard conditions is ______inches of mercury (Hg) or_____...
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