Ethyl acetate (C4H8O2, mm=D 88.10 g/mol) is a colorless liquid often used in nail polish removers, glues, and perfumes. 1. The heat of fusion (AH) of ethyl acetate is 10.5 kJ/mol. Calculate the change in entropy fus when 9.6 g of ethyl acetate freezes at -84.0 °C. The is change in entropy for this freezing process is calculated to be -6.11 J/K J/K. The process of freezing ethyl acetate at -84.0 °C is EXOTHERMIC and DECREASE * in entropy. 2. Calculate the boiling point for ethyl acetate. The boiling point for ethyl acetate is [ Select ] K. At the boiling point, AH [ Select ] .AS [Select ] ,and AG [ Select ]

Chemistry: The Molecular Science
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Chapter16: Thermodynamics: Directionality Of Chemical Reactions
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Ethyl acetate (C4H3O2, mm3D 88.10 g/mol) is a colorless liquid often used in nail polish removers,
glues, and perfumes.
1. The heat of fusion (AH) of ethyl acetate is 10.5 kJ/mol. Calculate the change in entropy
when 9.6 g of ethyl acetate freezes at -84.0 °C. The is change in entropy for this freezing process
is calculated to be
-6.11 J/K
J/K.
The process of freezing ethyl acetate at -84.0°C is
EXOTHERMIC
and
DECREASE
in entropy.
2. Calculate the boiling point for ethyl acetate.
The boiling point for ethyl acetate is [ Select]
K. At the boiling point, AH
[ Select ]
.AS [Select ]
,and AG
[ Select ]
Transcribed Image Text:Ethyl acetate (C4H3O2, mm3D 88.10 g/mol) is a colorless liquid often used in nail polish removers, glues, and perfumes. 1. The heat of fusion (AH) of ethyl acetate is 10.5 kJ/mol. Calculate the change in entropy when 9.6 g of ethyl acetate freezes at -84.0 °C. The is change in entropy for this freezing process is calculated to be -6.11 J/K J/K. The process of freezing ethyl acetate at -84.0°C is EXOTHERMIC and DECREASE in entropy. 2. Calculate the boiling point for ethyl acetate. The boiling point for ethyl acetate is [ Select] K. At the boiling point, AH [ Select ] .AS [Select ] ,and AG [ Select ]
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