Three experiments were run starting with different initial amounts of N204(g) ([N2O4]o in the table). The systems were allowed to reach equilibrium and the concentrations for each gas were measured (in units of moles/Liter). For each of the boxes below, calculate the ratios indicated by the column heading. This will show the mathematical relationship that exists between the concentrations of NO2 and N204 at equilibrium. Be sure to round to the correct number of significant figures. Exp [N204l0 [NO2] [N204] [NO2] / [N204] 2 [NO2] / [N204] [NO2]2 / [N204] 1 3.5 2.85 2.1 2 3.1 2.64 1.8 2.4 2.24 1.3 Based on your calculations, indicate whether each statement is True (T) or False (F): 1. Each experiment started with a different initial concentration of N204. 2. The ratio ([NO2] / [N2O4]) is equal to a constant value. 3. The ratio (2 [NO2] / [N204]) is equal to a constant value. 4. The ratio ([NO2]2 / [N204]) is equal to a constant value. 5. Each experiment reached a different set of equilibrium concentrations.

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Chapter13: Chemical Equilibrium
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Problem 21Q: For a typical equilibrium problem, the value of K and the initial reaction conditions are given for...
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Three experiments were run starting with different initial amounts of N204(g) ([N2O4]o in the
table). The systems were allowed to reach equilibrium and the concentrations for each gas were
measured (in units of moles/Liter).
For each of the boxes below, calculate the ratios indicated by the column heading. This will show
the mathematical relationship that exists between the concentrations of NO2 and N204 at
equilibrium.
Be sure to round to the correct number of significant figures.
Exp [N204]0 [NO2] [N204] [NO2] / [N204] 2 [NO2] / [N204] [NO2]2 / [N204]
1
3.8
2.98 2.3
3.0
2.56 1.7
2.1
2.06 1.1
Based on your calculations, indicate whether each statement is True (T) or False (F):
1. Each experiment started with a different initial concentration of N204.
2. The ratio ([NO2] / [N204]) is equal to a constant value.
3. The ratio (2 [NO2] / [N204]) is equal to a constant value.
4. The ratio ([NO2]² / [N204]) is equal to a constant value.
v5. Each experiment reached a different set of equilibrium concentrations.
Transcribed Image Text:Three experiments were run starting with different initial amounts of N204(g) ([N2O4]o in the table). The systems were allowed to reach equilibrium and the concentrations for each gas were measured (in units of moles/Liter). For each of the boxes below, calculate the ratios indicated by the column heading. This will show the mathematical relationship that exists between the concentrations of NO2 and N204 at equilibrium. Be sure to round to the correct number of significant figures. Exp [N204]0 [NO2] [N204] [NO2] / [N204] 2 [NO2] / [N204] [NO2]2 / [N204] 1 3.8 2.98 2.3 3.0 2.56 1.7 2.1 2.06 1.1 Based on your calculations, indicate whether each statement is True (T) or False (F): 1. Each experiment started with a different initial concentration of N204. 2. The ratio ([NO2] / [N204]) is equal to a constant value. 3. The ratio (2 [NO2] / [N204]) is equal to a constant value. 4. The ratio ([NO2]² / [N204]) is equal to a constant value. v5. Each experiment reached a different set of equilibrium concentrations.
Three experiments were run starting with different initial amounts of N204(g) ([N204]o in the
table). The systems were allowed to reach equilibrium and the concentrations for each gas were
measured (in units of moles/Liter).
For each of the boxes below, calculate the ratios indicated by the column heading. This will show
the mathematical relationship that exists between the concentrations of NO2 and N204 at
equilibrium.
Be sure to round to the correct number of significant figures.
Exp [N204]0| [NO2] [N204] [NO2] / [N204] 2 [NO2] / [N204] [NO2]2 / [N204]
1
3.5
2.85 2.1
2
3.1
2.64 1.8
3
2.4
2.24 1.3
Based on your calculations, indicate whether each statement is True (T) or False (F):
v1. Each experiment started with a different initial concentration of N204.
2. The ratio ([NO2] / [N204]) is equal to a constant value.
3. The ratio (2 [NO2] / [N204]) is equal to a constant value.
4. The ratio ([NO2]2 / [N204]) is equal to a constant value.
5. Each experiment reached a different set of equilibrium concentrations.
Transcribed Image Text:Three experiments were run starting with different initial amounts of N204(g) ([N204]o in the table). The systems were allowed to reach equilibrium and the concentrations for each gas were measured (in units of moles/Liter). For each of the boxes below, calculate the ratios indicated by the column heading. This will show the mathematical relationship that exists between the concentrations of NO2 and N204 at equilibrium. Be sure to round to the correct number of significant figures. Exp [N204]0| [NO2] [N204] [NO2] / [N204] 2 [NO2] / [N204] [NO2]2 / [N204] 1 3.5 2.85 2.1 2 3.1 2.64 1.8 3 2.4 2.24 1.3 Based on your calculations, indicate whether each statement is True (T) or False (F): v1. Each experiment started with a different initial concentration of N204. 2. The ratio ([NO2] / [N204]) is equal to a constant value. 3. The ratio (2 [NO2] / [N204]) is equal to a constant value. 4. The ratio ([NO2]2 / [N204]) is equal to a constant value. 5. Each experiment reached a different set of equilibrium concentrations.
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