Physics

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Optical Density Calculator.

Calculate optical density and transmittance from incident and transmitted intensity.

On-device calculationNo signup
01

Set your values

Results update as you type.

Optical density: 1

Optical density

0.000000
Transmittance: 10 %

Transmittance

0.000000%

Results update automatically as you type.

Use Cases

Measure light attenuation in materials

Determine how much light is absorbed by a sample (e.g., glass, filters, or solutions) by entering the incident and transmitted intensities.

Example: If incident intensity is 100 W/m² and transmitted is 10 W/m², OD = 1 and transmittance = 10%.

Verify optical filter performance

Check the optical density of filters used in photography or laboratory setups to ensure they block the desired amount of light.

Example: A filter with OD 2 transmits 1% of incident light.

Frequently Asked Questions

What is optical density and how is it calculated?
Optical density (OD) measures how much light is absorbed by a material. It is calculated as the logarithm (base 10) of the ratio of incident intensity to transmitted intensity: OD = log10(I0 / I). Higher OD means more absorption.
How do I calculate transmittance from the intensities?
Transmittance (T) is the fraction of incident light that passes through, calculated as T = transmitted intensity / incident intensity. It is often expressed as a percentage. This calculator uses the intensities you enter in W/m².
What units should I use for the intensities?
Both incident and transmitted intensities should be entered in watts per square meter (W/m²). The calculator uses these values directly to compute optical density and transmittance, so ensure they are in the same units.

Tips & Common Mistakes

Tips

  • Ensure both intensities are in the same units (W/m²) before calculating.
  • Transmittance should be between 0 and 1 (or 0% to 100%). If transmitted intensity exceeds incident, check your inputs.
  • Optical density is logarithmic, so small changes in OD represent large changes in transmittance.
  • Use this calculator for quick estimates; for precise measurements, consider instrument calibration.

Common Mistakes to Avoid

  • Using different units for incident and transmitted intensity (e.g., W/m² vs mW/cm²) without conversion.
  • Entering transmitted intensity greater than incident intensity, which yields invalid transmittance and negative optical density.
  • Confusing transmittance percentage with decimal form; ensure you interpret the result correctly.

Last updated: August 13, 2026