48 4.4 Figure P4.4 shows a mixing tank initially containing 1,360 kg of liquid water. The tank is fitted with two inlet pipes, one delivering hot water at a mass flow rate of 0.4 kg/s and the other delivering cold water at a mass flow rate of 0.6 kg/s. Water exits through a single exit pipe at a mass flow rate of 1.12 kg/s. Determine the amount of water, in kg, in the tank after one hour. 1 hot water m₁ = 0.4 kg/s m₁ = 1,360 kg 2 cold water m₂ = 0.6 kg/s 3 m3 = 1.12 kg/s

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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Please solve the problem correctly using the energy balance equation or any other proper method .
48
4.4 Figure P4.4 shows a mixing tank initially containing 1,360 kg of
liquid water. The tank is fitted with two inlet pipes, one delivering hot
water at a mass flow rate of 0.4 kg/s and the other delivering cold water
at a mass flow rate of 0.6 kg/s. Water exits through a single exit pipe at
a mass flow rate of 1.12 kg/s. Determine the amount of water, in kg, in
the tank after one hour.
1
hot
water
m₁ = 0.4 kg/s
m₁ = 1,360 kg
FIGURE P4.4
2
cold
water
m₂ = 0.6 kg/s
3
4
m3 = 1.12 kg/s
Transcribed Image Text:48 4.4 Figure P4.4 shows a mixing tank initially containing 1,360 kg of liquid water. The tank is fitted with two inlet pipes, one delivering hot water at a mass flow rate of 0.4 kg/s and the other delivering cold water at a mass flow rate of 0.6 kg/s. Water exits through a single exit pipe at a mass flow rate of 1.12 kg/s. Determine the amount of water, in kg, in the tank after one hour. 1 hot water m₁ = 0.4 kg/s m₁ = 1,360 kg FIGURE P4.4 2 cold water m₂ = 0.6 kg/s 3 4 m3 = 1.12 kg/s
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