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(Solved): The temperature of a 0.555 kg block of ice is lowered to -120\deg C. Heat (0.5159 MJ) is then transf ...



The temperature of a 0.555 kg block of ice is lowered to -120\deg C. Heat (0.5159 MJ) is then transferred to the block of ice (assume ice is otherwise thermally isolated). The specific heat capacity of ice is 2060( J)/(k)g.\deg C and the latent heat of fusion for ice to water is 333 k(J)/(k)g. What is the final temperature of the water in \deg C? The temperature of a 0.555 kg block of ice is lowered to -120\deg C. Heat ( 0.5159 MJ ) is then transferred to the block of ice (assume ice is otherwise thermally isolated). The specific heat capacity of ice is 2060(J)/(k)g.\deg C and the latent heat of fusion for ice to water is 333k(J)/(k)g. What is the final temperature of the water in \deg C ? Type your numeric answer and submit


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