In an insulated vessel, 248 g of ice at 0°C is added to 635 g of water at 19.0°C. (Assume the latent heat of fusion of the water is 3.33 x 105 J/kg and the specific heat is 4,186 J/kg . °C.) (a) What is the final temperature of the system? °C (b) How much ice remains when the system reaches equilibrium? 9

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In an insulated vessel, 248 g of ice at 0°C is added to 635 g of water at 19.0°C. (Assume the latent heat of fusion of the
water is 3.33 x 105 J/kg and the specific heat is 4,186 J/kg . °C.)
(a) What is the final temperature of the system?
°C
(b) How much ice remains when the system reaches equilibrium?
g
Transcribed Image Text:In an insulated vessel, 248 g of ice at 0°C is added to 635 g of water at 19.0°C. (Assume the latent heat of fusion of the water is 3.33 x 105 J/kg and the specific heat is 4,186 J/kg . °C.) (a) What is the final temperature of the system? °C (b) How much ice remains when the system reaches equilibrium? g
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Solution:-Given thatmass of ice=248 g=0.248 kginitial temperature of ice=0°Cmass of water=635g=0.635 kginitial temperature of water=19°CLatent heat of fusion=3.33×105 J/kgspecific heat=4186 J/kg°C

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