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Titration Calculator.
Calculate monoprotic equivalence volume with C1V1 = C2V2.
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Educational formula calculator. Keep units consistent and verify assumptions against your laboratory or course specification.
Use Cases
Laboratory titration planning
Quickly estimate the titrant volume needed for a monoprotic titration before performing the experiment, helping with solution preparation and burette filling.
Example: If you have 25 mL of 0.1 mol/L HCl and titrant NaOH at 0.2 mol/L, the equivalence volume is 12.5 mL.
Educational practice
Students can verify their manual calculations of equivalence volume in acid-base titration problems, reinforcing the concept of stoichiometry.
Example: Check your answer for a titration of 50 mL of 0.05 mol/L acetic acid with 0.1 mol/L NaOH.
Frequently Asked Questions
- What does this titration calculator do?
- This calculator determines the volume of titrant needed to reach the equivalence point in a monoprotic acid-base titration. It uses the formula C1V1 = C2V2, where C1 and V1 are the concentration and volume of the analyte, and C2 is the concentration of the titrant. The result is the titrant volume (V2) in milliliters.
- How do I use the titration calculator?
- Enter the analyte concentration in mol/L, the analyte volume in mL, and the titrant concentration in mol/L. The calculator will compute the equivalence volume in mL using the formula V2 = (C1 * V1) / C2. Ensure all inputs are positive numbers.
- What is the equivalence volume in titration?
- The equivalence volume is the volume of titrant required to completely react with the analyte. For a monoprotic titration, it is calculated using C1V1 = C2V2. This calculator provides that volume based on your inputs.
Tips & Common Mistakes
Tips
- Ensure all concentrations are in mol/L and volumes in mL to get the correct equivalence volume in mL.
- Double-check that your analyte and titrant are both monoprotic; this calculator is not for polyprotic acids or bases.
- Use the calculated volume as a guide; in practice, you may need to add titrant dropwise near the endpoint for accuracy.
- Remember that the formula assumes complete reaction and no side reactions; real titrations may have slight deviations.
Common Mistakes to Avoid
- Using different units for concentration (e.g., mmol/mL) without converting to mol/L, leading to incorrect results.
- Forgetting that the formula applies only to monoprotic species; using it for diprotic acids like H2SO4 will give wrong equivalence volumes.
- Entering the titrant volume instead of the analyte volume, or mixing up which concentration is which.
Last updated: August 13, 2026