Suppose 0.8 kg of ice at 0 C is placed into 8.6 kg of alcohol at 40.3 C. Calculate the final equilibrium temperature, neglecting casual losses and energy processes associated with mixing. Cwat = 4190 K/kg-K; Cak = 2460 K/kg-K. Lewat 3.35 x 105 J/Kkg. Answer in celsius, don't insert units in the blank. =
Suppose 0.8 kg of ice at 0 C is placed into 8.6 kg of alcohol at 40.3 C. Calculate the final equilibrium temperature, neglecting casual losses and energy processes associated with mixing. Cwat = 4190 K/kg-K; Cak = 2460 K/kg-K. Lewat 3.35 x 105 J/Kkg. Answer in celsius, don't insert units in the blank. =
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![Suppose 0.8 kg of ice at 0 C is placed into 8.6 kg of alcohol at 40.3 C. Calculate the final equilibrium
temperature, neglecting casual losses and energy processes associated with mixing. Cwat = 4190
K/kg-K; Cak = 2460 K/kg-K. Lewat 3.35 x 105 J/Kkg. Answer in celsius, don't insert units in the
blank.
=](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F94ff5d39-3f2b-4442-8c46-74b0485f4936%2F5cd68e3e-1591-4eae-9fcf-de41ac467e24%2Fnz9cg6_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Suppose 0.8 kg of ice at 0 C is placed into 8.6 kg of alcohol at 40.3 C. Calculate the final equilibrium
temperature, neglecting casual losses and energy processes associated with mixing. Cwat = 4190
K/kg-K; Cak = 2460 K/kg-K. Lewat 3.35 x 105 J/Kkg. Answer in celsius, don't insert units in the
blank.
=
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