of the lens. At the end of the "Prism Spectrometer" experiment, the refractive index (n) versus 1/2²graph was drawn. The slope (m) and intercept (b) of this linear graph are 3.925 x 10-13 m² and 0.05 respectively. The apex angle (a) of the prism, which used in the experiment, is 60°. Find the minimum deviation angle for 500 nm of wavelength (2). 1/A²
of the lens. At the end of the "Prism Spectrometer" experiment, the refractive index (n) versus 1/2²graph was drawn. The slope (m) and intercept (b) of this linear graph are 3.925 x 10-13 m² and 0.05 respectively. The apex angle (a) of the prism, which used in the experiment, is 60°. Find the minimum deviation angle for 500 nm of wavelength (2). 1/A²
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
Transcribed Image Text:of the lens.
At the end of the "Prism Spectrometer" experiment,
the refractive index (n) versus 1/2²graph was drawn.
The slope (m) and intercept (b) of this linear graph are
3.925 x 10-13 m² and 0.05 respectively. The apex
angle (a) of the prism, which used in the experiment,
is 60°. Find the minimum deviation angle for 500 nm
of wavelength (2).
AL
1/2²
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