In the synthesis of gasesous methanol from carbon monoxide gas and hydrogen gas, the following equilibrium concentration were determined at 483K: [CO(g)]=0.0911 M, [ H 2 ( g ) ] = 0.0822 M . Calulate the equilibrium constant and Δ t G ° for the reaction CO ( g ) + 2 H 2 ( g ) → CH 2 OH ( g ) .
In the synthesis of gasesous methanol from carbon monoxide gas and hydrogen gas, the following equilibrium concentration were determined at 483K: [CO(g)]=0.0911 M, [ H 2 ( g ) ] = 0.0822 M . Calulate the equilibrium constant and Δ t G ° for the reaction CO ( g ) + 2 H 2 ( g ) → CH 2 OH ( g ) .
Solution Summary: The author explains the relationship between equilibrium constant and DeltarG° for the given reaction.
In the synthesis of gasesous methanol from carbon monoxide gas and hydrogen gas, the following equilibrium concentration were determined at 483K: [CO(g)]=0.0911 M,
[
H
2
(
g
)
]
=
0.0822
M
. Calulate the equilibrium constant and
Δ
t
G
°
for the reaction
CO
(
g
)
+
2
H
2
(
g
)
→
CH
2
OH
(
g
)
.
The number of hydrogens in an alkyne that has a main chain of 14carbons to which are attached a cyclobutyl ring, a benzene ring, an–OH group, and a Br is A. 34; B. 35; C. 36; D. 24; E. 43
Hello! I have a 500 Hz H-NMR for 1,5-bis-(4-methoxyphenyl)-penta-1,4-dien-3-one. I need to label the signals with the corresponding H's. Then, find out if the two alkenes are cis or trans by calculating the J values.
I believe that I have the H-NMR labeled correctly, but not sure if I got the J values correct to determine if the two alkenes in the compound will make the compound cis or trans.
What is the only possible H-Sb-H bond angle in SbH3?
Chapter 13 Solutions
General Chemistry: Principles and Modern Applications (11th Edition)
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