Ethanol, the alcohol used in automobile fuels, is produced by the fermentation of sugars present in plants. Corn is often used as the sugar source. The following equation represents the fermentation of glucose, the sugar in corn, by yeast to produce ethanol and carbon dioxide. C 6 H 12 O 6 ( a q ) → 2 C 2 H 5 OH ( a q ) + 2 CO 2 ( g ) Ethanol is combusted in an automobile engine according to the equation C 2 H 5 OH ( l ) + 3 O 2 ( g ) → 2 CO 2 ( g ) + 3 H 2 O ( g ) What would be the total volume of CO 2 gas formed at STP when 3.00 kg of sugar is fermented and the ethanol is then combusted in an automobile engine?
Ethanol, the alcohol used in automobile fuels, is produced by the fermentation of sugars present in plants. Corn is often used as the sugar source. The following equation represents the fermentation of glucose, the sugar in corn, by yeast to produce ethanol and carbon dioxide. C 6 H 12 O 6 ( a q ) → 2 C 2 H 5 OH ( a q ) + 2 CO 2 ( g ) Ethanol is combusted in an automobile engine according to the equation C 2 H 5 OH ( l ) + 3 O 2 ( g ) → 2 CO 2 ( g ) + 3 H 2 O ( g ) What would be the total volume of CO 2 gas formed at STP when 3.00 kg of sugar is fermented and the ethanol is then combusted in an automobile engine?
Solution Summary: The author explains the ideal gas equation, which calculates the volume of ethanol produced by the fermentation of sugars present in plants.
Ethanol, the alcohol used in automobile fuels, is produced by the fermentation of sugars present in plants. Corn is often used as the sugar source. The following equation represents the fermentation of glucose, the sugar in corn, by yeast to produce ethanol and carbon dioxide.
C
6
H
12
O
6
(
a
q
)
→
2
C
2
H
5
OH
(
a
q
)
+
2
CO
2
(
g
)
Ethanol is combusted in an automobile engine according to the equation
C
2
H
5
OH
(
l
)
+
3
O
2
(
g
)
→
2
CO
2
(
g
)
+
3
H
2
O
(
g
)
What would be the total volume of CO2 gas formed at STP when 3.00 kg of sugar is fermented and the ethanol is then combusted in an automobile engine?
a. The change in the Gibbs energy of a certain constant pressure process is found to fit the expression:
AG-85.1 J mol −1 +36.5 J mol ¹K-1 × T
A. Calculate the value of AS for the process.
B. Next, use the Gibbs-Helmholtz equation:
(a(AG/T))
ΔΗ
-
T2
to calculate the value of AH for the process.
None
Chapter 5 Solutions
Student Solutions Manual for Ebbing/Gammon's General Chemistry, 11th
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