2) A heat exchanger has two fluid streams exchanging heat without mixing. Fluid A has a flow rate of 5 kg/s and enters the heat exchanger at 90 °C while exiting at 78 °C. Fluid B has a flow rate of 3 kg/s and enters the heat exchanger at 50 °C and exits at 87 °C. Assume that frictional losses are negligible, neither fluid changes states, and the kinetic and potential energy of each fluid does not change during the process. If the Cp of fluid A is 0.9 kJ/(kg*K), then what is the Cp of fluid B?

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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2) A heat exchanger has two fluid streams exchanging heat without
mixing. Fluid A has a flow rate of 5 kg/s and enters the heat exchanger
at 90 °C while exiting at 78 °C. Fluid B has a flow rate of 3 kg/s and
enters the heat exchanger at 50 °C and exits at 87 °C. Assume that
frictional losses are negligible, neither fluid changes states, and the
kinetic and potential energy of each fluid does not change during the
process. If the Cp of fluid A is 0.9 kJ/(kg*K), then what is the Cp of fluid
B?
Transcribed Image Text:2) A heat exchanger has two fluid streams exchanging heat without mixing. Fluid A has a flow rate of 5 kg/s and enters the heat exchanger at 90 °C while exiting at 78 °C. Fluid B has a flow rate of 3 kg/s and enters the heat exchanger at 50 °C and exits at 87 °C. Assume that frictional losses are negligible, neither fluid changes states, and the kinetic and potential energy of each fluid does not change during the process. If the Cp of fluid A is 0.9 kJ/(kg*K), then what is the Cp of fluid B?
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