Two tanks (tanks A & B) are separated by a partition. Initially, Tank A contains 2-kg...
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Two tanks (tanks A & B) are separated by a partition. Initially, Tank A contains 2-kg steam at 1 MPa and 300°C while Tank B contains 3-kg saturated liquid- vapor mixture at 150°C with a vapor mass fraction of 50%. The partition is now removed, and the two sides are allowed to mix until mechanical and thermal equilibrium are established. If the final P is 300 kPa, determine (a) the T and quality of the steam (if mixture) at the final state and (b) the amount of heat lost from the tanks. TANK B TANK A 3 kg 2 kg 1 MPa 150°C 0.5 300°C Two tanks (tanks A & B) are separated by a partition. Initially, Tank A contains 2-kg steam at 1 MPa and 300°C while Tank B contains 3-kg saturated liquid- vapor mixture at 150°C with a vapor mass fraction of 50%. The partition is now removed, and the two sides are allowed to mix until mechanical and thermal equilibrium are established. If the final P is 300 kPa, determine (a) the T and quality of the steam (if mixture) at the final state and (b) the amount of heat lost from the tanks. TANK B TANK A 3 kg 2 kg 1 MPa 150°C 0.5 300°C
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Thermodynamics An Engineering Approach
ISBN: 978-0073398174
8th edition
Authors: Yunus A. Cengel, Michael A. Boles
Posted Date:
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