Q.Reaction between N2 and O2– takes place as follows: 2N2
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Start your 14-day free trial to unlock the full solution →When is extremely small (), the forward reaction is negligible; equilibrium lies almost entirely with the reactants. At equilibrium: , , and .
The equilibrium constant tells us the position of equilibrium—how far a reaction proceeds before the forward and reverse rates balance. A value like is astronomically small, meaning the reaction barely moves forward at all. The reactants are overwhelmingly favored, and the product concentration will be vanishingly small. This is why nitrogen and oxygen coexist peacefully in our atmosphere at room temperature rather than forming nitrous oxide spontaneously.
Let's set up the ICE table (Initial, Change, Equilibrium) to track concentrations systematically.
Step-by-step solution
1. Calculate initial concentrations
The vessel volume is , so:
2. Set up the ICE table
For the reaction , let be the change in that reacts:
| Species | Initial (M) | Change (M) | Equilibrium (M) |
|---|---|---|---|
The stoichiometry dictates that for every mole of consumed, moles of are consumed and moles of are formed.
3. Write the equilibrium expression
Substituting equilibrium concentrations:
4. Apply the small- approximation
Given that is extraordinarily small, will be negligible compared to the initial concentrations. We can approximate:
When , the reaction proceeds negligibly forward. The approximation simplifies the algebra dramatically and is justified by checking afterward.
The expression becomes:
5. Solve for
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