asedl urimg this process! A sample of 36.8 g of ethanol gas at 300.0°C is cooled to liq 25.5°C. The specific heat capacity of ethanol gas is 1.43 J/g specific heat capacity of liquid ethanol is 2.45 J/gC. The bo ethanol is 78.5°C. (a) Draw a cooling curve for this process. (b) Calculate the heat released during this process.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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asedl urimg this process!
A sample of 36.8 g of ethanol gas at 300.0°C is cooled to liq
25.5°C. The specific heat capacity of ethanol gas is 1.43 J/g
specific heat capacity of liquid ethanol is 2.45 J/gC. The bo
ethanol is 78.5°C.
(a) Draw a cooling curve for this process.
(b) Calculate the heat released during this process.
Transcribed Image Text:asedl urimg this process! A sample of 36.8 g of ethanol gas at 300.0°C is cooled to liq 25.5°C. The specific heat capacity of ethanol gas is 1.43 J/g specific heat capacity of liquid ethanol is 2.45 J/gC. The bo ethanol is 78.5°C. (a) Draw a cooling curve for this process. (b) Calculate the heat released during this process.
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