11.7 - Wien's Law
- 1Using Wien's Displacement Law to link a star's peak wavelength and temperature
- 2Estimating a star's radius by combining Stefan's and Wien's Laws
Wien's law

Wien's displacement law describes the relationship between the temperature of a blackbody and the wavelength at which it emits radiation most intensely.
The relationship between temperature and the max wavelength is given below:
Where:
- = peak wavelength (m)
- T = absolute temperature of blackbody(K)
- 2.9 x 10^-3^ m K = Wien's displacement constant
Worked example - Estimating the radius of Betelgeuse
Betelgeuse has a luminosity of 1.2 x 1031 W and a peak wavelength of 970 nm. Calculate the radius of Betelgeuse.
Step 1: Convert nm to m
to convert from. nm to m, multiply by 1 x 10-9
970 nm = 970 x 10-9 m
Step 2: Wien's law formula
Step 3: Rearranged formula
Step 4: Substitution and correct evaluation
Step 5: Stefan’s law formula
Step 6: Rearranged formula
Step 7: Substitution and correct evaluation
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