A metal of mass m metal =0.19 kg is heated to a temperature 184 C.Once the metal reaches to this temperature, it is dropped into a beaker of water of mass m,=1.7 kg and initial temperature Tw(initia) = 24.5 C. If the equilibrium temperature of water-metal system is T= 39°C, find the specific heat capacity of the metal (cw=4186J/kgK) %3D V J/kgk
A metal of mass m metal =0.19 kg is heated to a temperature 184 C.Once the metal reaches to this temperature, it is dropped into a beaker of water of mass m,=1.7 kg and initial temperature Tw(initia) = 24.5 C. If the equilibrium temperature of water-metal system is T= 39°C, find the specific heat capacity of the metal (cw=4186J/kgK) %3D V J/kgk
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![A metal of mass mmeta = 0.19 kg is heated to a temperature 184 C.Once the metal reaches to this
temperature, it is dropped into a beaker of water of mass m= 1.7 kg and initial temperature
Twinitia) = 24.5°C. If the equilibrium temperature of water-metal system is T= 39°C, find the specific heat
capacity of the metal (cw=4186J/kgk)
J/kgK](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F12d3c8b9-1034-457e-b119-7e0333dfa308%2F7b215eda-51f7-48cb-a365-4791b1b005b7%2Fe3td4f5_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A metal of mass mmeta = 0.19 kg is heated to a temperature 184 C.Once the metal reaches to this
temperature, it is dropped into a beaker of water of mass m= 1.7 kg and initial temperature
Twinitia) = 24.5°C. If the equilibrium temperature of water-metal system is T= 39°C, find the specific heat
capacity of the metal (cw=4186J/kgk)
J/kgK
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