Química
Instantáneo, privado y gratis
Arrhenius Equation Calculator.
Predict a rate constant at a new absolute temperature.
Introduce tus valores
Los resultados se actualizan al escribir.
Educational formula calculator. Keep units consistent; chemistry procedures, concentrations, and safety decisions require qualified laboratory guidance. Never mix cleaning products.
Use Cases
Predict reaction rate at a new temperature
Chemists and students can estimate how a reaction's rate constant changes when the temperature is altered, helping to plan experiments or optimize conditions.
Example: Find the rate constant at 350 K if it is 0.002 s⁻¹ at 300 K with Ea = 50,000 J/mol.
Check consistency of kinetic data
Use the calculator to verify if measured rate constants at different temperatures align with the Arrhenius model, aiding in data validation.
Example: Compare a predicted rate constant to an experimental value to assess if the activation energy is accurate.
Frequently Asked Questions
- What does the Arrhenius equation calculator do?
- It calculates the rate constant at a new absolute temperature using the Arrhenius equation, given the known rate constant, activation energy, and both temperatures in kelvin.
- What units are required for activation energy?
- Activation energy must be entered in joules per mole (J/mol). The calculator uses this value along with the gas constant to determine the temperature dependence of the rate constant.
- Why must temperatures be in kelvin?
- The Arrhenius equation requires absolute temperatures. Using kelvin ensures the ratio of temperatures is correct and avoids negative or zero values that would invalidate the calculation.
Tips & Common Mistakes
Tips
- Ensure the known rate constant is in the same units as the desired new rate constant (e.g., both in s⁻¹ or M⁻¹s⁻¹).
- Double-check that activation energy is in J/mol, not kJ/mol. If it's in kJ/mol, convert by multiplying by 1000.
- Use kelvin for both temperatures. Convert from Celsius by adding 273.15.
- The calculator assumes the Arrhenius equation holds; it is most accurate over moderate temperature ranges.
Common Mistakes to Avoid
- Entering activation energy in kJ/mol without converting to J/mol, leading to an incorrect result.
- Using temperatures in Celsius or Fahrenheit instead of kelvin, which skews the exponential factor.
- Mixing up the known and new temperatures, which reverses the direction of the rate change.
Last updated: August 13, 2026