A. Equilibrium Concentrations PROBLEM: STEPS: An equilibrium is established at 2000K for the reaction of nitrogen gas (N2) and oxygen gas (02), forming nitrogen monoxide (NO). The equilibrium constant for such a system is 4.1x104. 1. Provide the asked and given values. 2. Write the balanced chemical equation. 3. Construct an ICE table for the problem. 4. Write the Kc expression. 5. Evaluate x algebraically. 6. Express the final answers in the correct SF and units. If 0.150 mol of nitrogen monoxide gas is injected in a one-liter container, what are the equilibrium concentrations of all the reactants and product? BONUS: Determine the Kp value.

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A. Equilibrium Concentrations
PROBLEM:
STEPS:
An equilibrium is established at 2000K for
the reaction of nitrogen gas (N2) and
oxygen gas (O2), forming nitrogen
monoxide (NO). The equilibrium constant
for such a system is 4.1x10*.
1. Provide the asked and given values.
2. Write the balanced chemical equation.
3. Construct an ICE table for the
problem.
4. Write the Kc expression.
5. Evaluate x algebraically.
6. Express the final answers in the
correct SF and units.
If 0.150 mol of nitrogen monoxide gas
injected in a one-liter container, what are
the equilibrium concentrations of all the
reactants and product?
BONUS: Determine the Kp value.
Transcribed Image Text:A. Equilibrium Concentrations PROBLEM: STEPS: An equilibrium is established at 2000K for the reaction of nitrogen gas (N2) and oxygen gas (O2), forming nitrogen monoxide (NO). The equilibrium constant for such a system is 4.1x10*. 1. Provide the asked and given values. 2. Write the balanced chemical equation. 3. Construct an ICE table for the problem. 4. Write the Kc expression. 5. Evaluate x algebraically. 6. Express the final answers in the correct SF and units. If 0.150 mol of nitrogen monoxide gas injected in a one-liter container, what are the equilibrium concentrations of all the reactants and product? BONUS: Determine the Kp value.
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