Consider the reaction below. 29.8 mol of A and 51.8 mol of B are added to a 9 L container. At equilibrium, the concentration of C is 0.083 M. Fill in the table with the appropriate values. It is recommended that you do not round until the end to ensure your values are within the tolerance accepted. 4 A+ 5B 5C Initial Change Equilibrium 4 A M M M + 5 B M M M H 0 + 5 C 0.083 M of M M

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Consider the reaction below. 29.8 mol of A and 51.8 mol of B are added to a 9 L container. At equilibrium,
the concentration of C is 0.083 M. Fill in the table with the appropriate values. It is recommended that you
do not round until the end to ensure your values are within the tolerance accepted.
4 A + 5 B 5C
Initial
Change
Equilibrium
4 A
M
M
M
+ 5 B
M
M
M
H
0
+
5 C
0.083 M
OF M
M
Transcribed Image Text:Consider the reaction below. 29.8 mol of A and 51.8 mol of B are added to a 9 L container. At equilibrium, the concentration of C is 0.083 M. Fill in the table with the appropriate values. It is recommended that you do not round until the end to ensure your values are within the tolerance accepted. 4 A + 5 B 5C Initial Change Equilibrium 4 A M M M + 5 B M M M H 0 + 5 C 0.083 M OF M M
Consider the reaction below. 4.8 mol of A and 9.0 mol of B are added to a 4 L container. At equilibrium,
the concentration of A is 0.216 M. What is the concentration of at equilibrium?
4 A+ 5 B 2 C
Initial
Change
Keq
1.2
=
4 A
M
0.216 M
M
2.25
-3
+ 5 B
M
X M
M
←
0
+ 3
2 C
M
OM
X
Equilibrium
Use the concentrations above to calculate the equilibrium constant for this reaction:
व
M
Transcribed Image Text:Consider the reaction below. 4.8 mol of A and 9.0 mol of B are added to a 4 L container. At equilibrium, the concentration of A is 0.216 M. What is the concentration of at equilibrium? 4 A+ 5 B 2 C Initial Change Keq 1.2 = 4 A M 0.216 M M 2.25 -3 + 5 B M X M M ← 0 + 3 2 C M OM X Equilibrium Use the concentrations above to calculate the equilibrium constant for this reaction: व M
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