- Molar absorptivity
- 18400L/(mol·cm)
- Concentration
- 0.0001mol/L
- Path length
- 1cm
1.84
Open with these values1.84
Result: 1.84Absorbance is the product of three numbers: how strongly the substance absorbs, how much of it is dissolved, and how far the light travels through it. Double any one of them and the absorbance doubles. The result has no unit, provided the inputs use L/(mol·cm), mol/L and cm.
Held fixed: Molar absorptivity 18,400.00 L/(mol·cm), Concentration 0.000100 mol/L.
| Path length (cm) | Result |
|---|---|
| 0.25 | 0.46 |
| 0.50 | 0.92 |
| 0.75 | 1.38 |
| 1.00Your value | 1.84 |
| 1.25 | 2.30 |
| 1.50 | 2.76 |
| 1.75 | 3.22 |
| 2.00 | 3.68 |
1.84
Open with these values2.50
Open with these values2.20
Open with these valuesA = ε × c × l
| ε, c, l | What it stands for | Absorbance |
|---|---|---|
| 1, 1, 1 | The bare product, nothing else | 1 |
| 5000, 0.001, 0.5 | Half-width cuvette | 2.5 |
| 18400, 0.0001, 1 | A standard 1 cm cuvette | 1.84 |
| 18400, 0.0002, 1 | Twice the concentration | 3.68 |
| 220000, 0.00001, 1 | A strong absorber, very dilute | 2.2 |
It is the base-ten logarithm of how much light goes in divided by how much comes out. An absorbance of 1 means a tenth of the light survives, 2 means a hundredth.
The three units cancel: L/(mol·cm) times mol/L times cm leaves nothing behind. That only works if the inputs really use those units.
Roughly 2, sometimes 3 on a good instrument. Beyond that so little light reaches the detector that the reading drowns in noise, even though the arithmetic keeps working.
Yes — divide the absorbance by the molar absorptivity and the path length. That is the everyday use of the law in a laboratory.
It belongs to the substance and the wavelength, and it is measured, not calculated. Tables and the source behind this calculator carry values for common compounds.
Information, not professional advice.
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