Chemistry
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Atom Economy Calculator.
Calculate atom economy from product and total reactant molar masses.
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Results update as you type.
Educational formula calculator. Keep units consistent; chemistry procedures, concentrations, and safety decisions require qualified laboratory guidance. Never mix cleaning products.
Use Cases
Green Chemistry Assessment
Evaluate the efficiency of a chemical synthesis by calculating its atom economy, helping to identify reactions that produce less waste.
Example: Compare two routes to the same product: one with 80% atom economy and another with 50%.
Educational Tool
Use in chemistry classes to teach students about reaction efficiency and the principles of green chemistry.
Example: Calculate atom economy for a given reaction in a lab exercise.
Frequently Asked Questions
- What is atom economy?
- Atom economy is a measure of how efficiently a chemical reaction uses atoms. It is calculated as the molar mass of the desired product divided by the total molar mass of all reactants, multiplied by 100 to get a percentage.
- How do I use this calculator?
- Enter the molar mass of the desired product (in g/mol) and the total molar mass of all reactants (in g/mol) into the respective fields. The calculator will then compute the atom economy percentage for you.
- What does a higher atom economy indicate?
- A higher atom economy means that a larger proportion of the atoms from the reactants end up in the desired product, indicating a more efficient and environmentally friendly reaction with less waste.
Tips & Common Mistakes
Tips
- Ensure you use the molar mass of the desired product only, not the entire product mixture.
- The total reactant molar mass should include all reactants, even those in excess.
- Use consistent units (g/mol) for both inputs to get an accurate percentage.
- Atom economy is a theoretical value; actual yield may differ due to side reactions.
Common Mistakes to Avoid
- Including the molar mass of byproducts in the desired product mass.
- Forgetting to include all reactants in the total reactant molar mass.
- Using masses in grams instead of molar masses in g/mol.
Last updated: August 13, 2026