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Equilibrium Constant Calculator.
Calculate Kc for two explicit product and reactant species and their stoichiometric coefficients.
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Use Cases
Determine Kc for a balanced reaction
Use this calculator to find the equilibrium constant for any reaction with two products and two reactants, given their equilibrium concentrations and coefficients.
Example: For N2 + 3H2 ⇌ 2NH3, enter [NH3]=0.5, coefficient 2; [N2]=0.1, coefficient 1; [H2]=0.3, coefficient 3.
Check consistency of equilibrium data
Verify whether given concentration data and coefficients yield a plausible Kc value, useful for lab reports or textbook problems.
Example: Compare calculated Kc with literature values to validate experimental measurements.
Frequently Asked Questions
- What does the Equilibrium Constant Calculator compute?
- It computes the equilibrium constant Kc for a chemical reaction of the form aA + bB ⇌ cC + dD, using the molar concentrations (mol/L) and stoichiometric coefficients you enter for two products and two reactants.
- How is Kc calculated from the inputs?
- Kc = ([C]^c * [D]^d) / ([A]^a * [B]^b), where [C] and [D] are product concentrations, [A] and [B] are reactant concentrations, and a, b, c, d are their respective stoichiometric coefficients.
- What units should I use for concentrations?
- Concentrations must be entered in mol/L (molarity). The calculator uses these values directly in the Kc expression, so ensure all concentrations are in the same unit.
Tips & Common Mistakes
Tips
- Ensure the chemical equation is balanced before entering coefficients; otherwise, Kc will be incorrect.
- Use consistent units (mol/L) for all concentrations. If concentrations are given in other units, convert them first.
- Double-check that you have assigned products and reactants correctly; swapping them will invert Kc.
- For reactions with pure solids or liquids, their concentrations are constant and not included in Kc; this calculator only handles species with variable concentrations.
Common Mistakes to Avoid
- Forgetting to raise each concentration to the power of its stoichiometric coefficient.
- Entering coefficients as concentrations or vice versa, leading to a nonsensical Kc.
- Using concentrations at non-equilibrium conditions; Kc is only defined at equilibrium.
Last updated: August 13, 2026