A 4.3-kg block of ice originally at 263 K is placed in thermal contact with a 14.1-kg block of silver (cAg = 233 J/kg-K) which is initially at 1098 K. The H2O - silver system is insulated so no heat flows into or out of it.   (Hint: The specific heat of water is 4.186 J/(g°C), the specific heat of ice is 2.093 J/(g°C), and the latent heat of fusion of water is 334 J/g. 1 liter of water has a mass of 1 kg.)   1)At what temperature will the system achieve equilibrium?

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A 4.3-kg block of ice originally at 263 K is placed in thermal contact with a 14.1-kg block of silver (cAg = 233 J/kg-K) which is initially at 1098 K. The H2O - silver system is insulated so no heat flows into or out of it.

 

(Hint: The specific heat of water is 4.186 J/(g°C), the specific heat of ice is 2.093 J/(g°C), and the latent heat of fusion of water is 334 J/g. 1 liter of water has a mass of 1 kg.)

 

1)At what temperature will the system achieve equilibrium?

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