When corn is allowed to ferment, the fructose in the corn is converted to ethyl alcohol according to the following reaction C 6 H 12 O 6 ( a q ) → 2C 2 H 5 OH ( l ) + 2CO 2 ( g ) (a) What volume of ethyl alcohol ( d = 0.789 g / mL ) is produced from one pound of fructose? (b) Gasohol can be a mixture of 10 mL ethyl alcohol and 90 mL of gasoline. How many grams of fructose are required to produce the ethyl alcohol in one gallon of gasohol?
When corn is allowed to ferment, the fructose in the corn is converted to ethyl alcohol according to the following reaction C 6 H 12 O 6 ( a q ) → 2C 2 H 5 OH ( l ) + 2CO 2 ( g ) (a) What volume of ethyl alcohol ( d = 0.789 g / mL ) is produced from one pound of fructose? (b) Gasohol can be a mixture of 10 mL ethyl alcohol and 90 mL of gasoline. How many grams of fructose are required to produce the ethyl alcohol in one gallon of gasohol?
Solution Summary: The author explains how the volume of ethyl alcohol should be calculated.
When corn is allowed to ferment, the fructose in the corn is converted to ethyl alcohol according to the following reaction
C
6
H
12
O
6
(
a
q
)
→
2C
2
H
5
OH
(
l
)
+
2CO
2
(
g
)
(a) What volume of ethyl alcohol
(
d
=
0.789
g
/
mL
)
is produced from one pound of fructose?
(b) Gasohol can be a mixture of 10 mL ethyl alcohol and 90 mL of gasoline. How many grams of fructose are required to produce the ethyl alcohol in one gallon of gasohol?
In the electrode Pt, H2(1 atm) | H+(a=1), if the electrode balance potential is -0.118 V and the interface potential difference is +5 mV. The current voltage will be 0.005 - (-0.118) = 0.123 V ¿Correcto?
In the electrode Pt, H2(1 atm) | H+(a=1) at 298K is 0.79 mA cm-2. If the balance potential of the electrode is -0.118 V and the potential difference of the interface is +5 mV. Determine its potential.
In one electrode: Pt, H2(1 atm) | H+(a=1), the interchange current density at 298K is 0.79 mA·cm-2. If the voltage difference of the interface is +5 mV. What will be the correct intensity at pH = 2?. Maximum transfer voltage and beta = 0.5.
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell