A closed System of mass 5 kg in which inere is work Of magnitude 9 Rj to the system from the Surroundungs. The elevatin Of the system increases by 700 m during the process. The specific internal energy of the system decreases by lo RJ / Rg and there iš no change in kinetič energy of the System. The acceleration of gravity is constant at 9. 60 m/ sec. Determine the heat transfer in kJ. undergoes a process
A closed System of mass 5 kg in which inere is work Of magnitude 9 Rj to the system from the Surroundungs. The elevatin Of the system increases by 700 m during the process. The specific internal energy of the system decreases by lo RJ / Rg and there iš no change in kinetič energy of the System. The acceleration of gravity is constant at 9. 60 m/ sec. Determine the heat transfer in kJ. undergoes a process
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![A clused System of mass 5 kg undergoes a proCess
In which here is work Of magnitude a Rj to
the system from the Surroundungs. The elevatin
Of the system increases by 700 m during the
process. The specific internal energy of the system
decreases by o RJ / Rg and there is no crange in
kinetiè energy of the System. The acceleration of
gravity is constant at 9. 60 m/sec. Determine the
heat transfer in kJ.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F12c62ea9-2423-4a35-a6cd-74646c6bbd41%2Ff8fe7147-8575-42b1-8f08-4577b9776bb0%2Fapofal5_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A clused System of mass 5 kg undergoes a proCess
In which here is work Of magnitude a Rj to
the system from the Surroundungs. The elevatin
Of the system increases by 700 m during the
process. The specific internal energy of the system
decreases by o RJ / Rg and there is no crange in
kinetiè energy of the System. The acceleration of
gravity is constant at 9. 60 m/sec. Determine the
heat transfer in kJ.
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