Consider the equilibrium system described by the chemical reaction below. In a reaction monitored at very high temperatures, the concentrations of the participants at equilibrium are found to be as follows: [N₂H₁] = 3.0 x 10-6 M, [N₂O] = 6.4 x 10-5 M, [N₂] = 9.8 x 10-3 M, and [H₂O] = 4.9 x 10-2 M. What is the value of K of the reaction at this temperature? 2 N₂O(g) + N₂H₂(g) 3 N₂(g) + 2 H₂O(g) K = 1 11

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D
V
↑
Consider the equilibrium system described by the chemical reaction below. In a
reaction monitored at very high temperatures, the concentrations of the participants at
equilibrium are found to be as follows: [N₂H₂] = 3.0 x 10-6 M, [N₂O] = 6.4 x 10-5 M, [N₂]
= 9.8 x 10-3 M, and [H₂O] = 4.9 x 10-2 M. What is the value of K of the reaction at this
temperature?
3
[3.0 x 10-6
[3.0 x 10-
e
[6.4 x 10-5]
[6.4 x 10-1³
$
4
2 N₂O(g) + N₂H₂(g) 3 N₂(g) + 2 H₂O(g)
K =
[9.8 x 10-³]
[9.8 x 10-³³
Question 3 of 16
96
P
[4.9.x 10-2]
[4.9 x 10-²³
6
y
[3.0.x 10-2
5.4 x 10-6
87
O
[6.4 x 10-1²
1.8.x 10-5
U
*00
8
O
[9.8.x 10-1²
1.8.x 105
(
9
RESET
[4.9 x 10-22
4.0 x 10-7
%
0
0
4
P
M
Transcribed Image Text:D V ↑ Consider the equilibrium system described by the chemical reaction below. In a reaction monitored at very high temperatures, the concentrations of the participants at equilibrium are found to be as follows: [N₂H₂] = 3.0 x 10-6 M, [N₂O] = 6.4 x 10-5 M, [N₂] = 9.8 x 10-3 M, and [H₂O] = 4.9 x 10-2 M. What is the value of K of the reaction at this temperature? 3 [3.0 x 10-6 [3.0 x 10- e [6.4 x 10-5] [6.4 x 10-1³ $ 4 2 N₂O(g) + N₂H₂(g) 3 N₂(g) + 2 H₂O(g) K = [9.8 x 10-³] [9.8 x 10-³³ Question 3 of 16 96 P [4.9.x 10-2] [4.9 x 10-²³ 6 y [3.0.x 10-2 5.4 x 10-6 87 O [6.4 x 10-1² 1.8.x 10-5 U *00 8 O [9.8.x 10-1² 1.8.x 105 ( 9 RESET [4.9 x 10-22 4.0 x 10-7 % 0 0 4 P M
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