Interference by a double slit With: - red diode laser λred = (650 ± 20)nm and green λgreen = (532 ± 20)nm: - double slots d=(0.25 ± 0.01)mm with a = (0.080 ± 0.005)mm on a support; - double slots d =(0.50 ± 0.01)mm with a = (0.080 ± 0.005)mm on a support; - Screen wall, white sheet and masking tape; - ruler; - Tape measure; - computer to perform linear regression in a computer Establish the relevant theoretical model: Write an equation relating the distance between the two slits (d), the wavelength of the light source (λ), the distance from the screen (L), the linear position (y) of the bright interference fringes and the order of these fringes (m). Use the small angle approximation. Indicate how to linearize the graph to find the wavelength. Explicitly indicate your choice for the variables X, Y, the slope and the intercept.

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Interference by a double slit

With:
- red diode laser λred = (650 ± 20)nm and green λgreen = (532 ± 20)nm:
- double slots d=(0.25 ± 0.01)mm with a = (0.080 ± 0.005)mm on a support;
- double slots d =(0.50 ± 0.01)mm with a = (0.080 ± 0.005)mm on a support;
- Screen wall, white sheet and masking tape;
- ruler;
- Tape measure;
- computer to perform linear regression in a computer

Establish the relevant theoretical model:
Write an equation relating the distance between the two slits (d), the wavelength of the light source (λ), the distance from the screen (L), the linear position (y) of the bright interference fringes and the order of these fringes (m). Use the small angle approximation.

Indicate how to linearize the graph to find the wavelength. Explicitly indicate your choice for the variables X, Y, the slope and the intercept.

LASER
double slots
d
0
L
screen wall
TY
Y-₁
√√₁2
Y-2
Transcribed Image Text:LASER double slots d 0 L screen wall TY Y-₁ √√₁2 Y-2
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