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1:1 A-B Equilibrium ICE Table Calculator

Updated Sep 2026

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1:1 A-B Equilibrium ICE Table

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Inputs usedReview the information used for this result.
Full calculation and sourcesSolve a constant-volume, one-to-one A to B equilibrium from initial concentrations and Kc. It does not solve arbitrary reaction stoichiometry or gas-phase Kp.

Versioned calculationFormula v1.1.0

Chemistry reference modelUnit-normalized calculationFormula v1.1.0
Method and test recordFormula v1.1.0
Recorded scope
formula, unit normalization, edge cases, copy, and related routes
Publisher
CalculatorGeek
Recorded review date
2026-09-27
Next source review
2027-09-27
Configured test cases
2 cases

Recorded method

Reference fixtures, unit boundaries, invalid inputs, displayed formula, and limitations reviewed separately.

These records describe the published model and reference tests. A test-case count is not a certification of every possible input or an independent specialist review. Editorial policy

Known limitations

  • The formula is intentionally scoped to the inputs shown and does not replace a validated laboratory method.
  • Use consistent units and retain unrounded intermediate values.
  • Confirm sample identity, purity, temperature, instrument behavior, and safety controls independently.

Method sources

Reference inputs and expected results

Up to 12 configured examples are shown. Expected values are in the model's output units; invalid cases are intended to be rejected.

CaseInputsExpected result
A to B equilibriumInitial [A]: 0.1 mol/L; Initial [B]: 0 mol/L; Kc: 4Equilibrium [A]: 0.02 mol/L; Equilibrium [B]: 0.08 mol/L; ICE extent x: 0.08 mol/L (allowed numeric tolerance: 1.0E-6)
Reject zero KcInitial [A]: 0.1 mol/L; Initial [B]: 0 mol/L; Kc: 0Reject invalid input: validation error

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Quick answer

Solve a constant-volume, one-to-one A to B equilibrium from initial concentrations and Kc. It does not solve arbitrary reaction stoichiometry or gas-phase Kp.

Formula and steps

Kc = (B0 + x)/(A0 − x); x = (Kc·A0 − B0)/(1 + Kc)

Normalize the inputs first, keep working precision through intermediate steps, and round only the displayed result. Use the Acid Base Ph when the next step requires a different chemistry model.

Assumptions and limits

Solve a constant-volume, one-to-one A to B equilibrium from initial concentrations and Kc. It does not solve arbitrary reaction stoichiometry or gas-phase Kp.

Frequently asked questions

What does this chemical equilibrium ice table assume?

The assumptions shown above are part of the result. If your system falls outside them, select a more complete method rather than forcing the number.

How should I report the answer?

Keep the units, input basis, significant figures, and model limitations with the result.

What does this calculator not do?

It does not solve arbitrary reaction stoichiometry or gas-phase Kp.

Sources

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