Below is the concentration versus time graph for the reaction system. The graph was produced using secondary data at a temperature of 22 °C. 12.0- 10.0- 8.0- concentration (x10-2 M) 6.0 NO₂ 4.0+ 2.0+ 0.0 time (arbitrary units) i. Time t is shown on the graph above. Calculate the equilibrium constant at time f₁. ii. At time to the volume of the system was halved, keeping the temperature at 22 °C. Continue the graph to show how this change would affect the reaction system and how the system would respond to this change until equilibrium is restored. 4₁ 4₂

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Chapter1: Chemical Foundations
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Below is the concentration versus time graph for the reaction system. The graph was produced using
secondary data at a temperature of 22 °C.
12.0-
10.0-
8.0-
concentration
(x10-2 M)
6.0
NO₂
4.0+
2.0+
0.0
time (arbitrary units)
i. Time t is shown on the graph above.
Calculate the equilibrium constant at time f₁.
ii. At time to the volume of the system was halved, keeping the temperature at 22 °C.
Continue the graph to show how this change would affect the reaction system and how the system
would respond to this change until equilibrium is restored.
4₁ 4₂
Transcribed Image Text:Below is the concentration versus time graph for the reaction system. The graph was produced using secondary data at a temperature of 22 °C. 12.0- 10.0- 8.0- concentration (x10-2 M) 6.0 NO₂ 4.0+ 2.0+ 0.0 time (arbitrary units) i. Time t is shown on the graph above. Calculate the equilibrium constant at time f₁. ii. At time to the volume of the system was halved, keeping the temperature at 22 °C. Continue the graph to show how this change would affect the reaction system and how the system would respond to this change until equilibrium is restored. 4₁ 4₂
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