Distance between side orders, 4y_1 (cm) Distance between side orders, y 1 (cm) Slit-to-screen distance, L (cm) Theoretical (Labelled) Wavelength (nm) Calculated Wavelength (nm) Percent Difference (%) Average Wavelength (nm) ble W2: Data and Results on the Diffraction Envelope (where y_m is the distance from the ter of the pattern to the mth diffraction minima) of the Single-Slit Experiment (a = 0.04 mm) m = 1 m = 2 m= 3 Distance between side orders, 4y_m (cm) Distance between side orders, y_m (cm) Slit-to-screen distance, L (cm) Theoretical Slit Width (mm) Calculated Slit Width (mm)

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter27: Wave Optics
Section: Chapter Questions
Problem 69P
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Given the data below, calculate the distance between side orders, Δy_1 (cm) and distance between side orders, y_1 (cm) if m=1 and slit width (cm) is equal to: 0.02, 0.04, 0.08, 0.16. Explain/show how calculations were made.

***If the information I have provided is incomplete, please reply with the additional information needed so I can fix it. 

Table W1: Calculations on the Wavelength of the Laser Diode using Single-Slit Diffraction Data (m = 1)
Slit width, a (mm)
0.02
0.04
0.08
Distance between side orders, 4y 1 (cm)
Distance between side orders, y_1 (cm)
Slit-to-screen distance, L (cm)
Theoretical (Labelled) Wavelength (nm)
Calculated Wavelength (nm)
Percent Difference (%)
Average Wavelength (nm)
Table W2: Data and Results on the Diffraction Envelope (where y_m is the distance from the
center of the pattern to the mth diffraction minima) of the Single-Slit Experiment (a = 0.04 mm)
m = 1
m = 2
m = 3
Distance between side orders, 4y_m (cm)
Distance between side orders, y_m (cm)
Slit-to-screen distance, L (cm)
Theoretical Slit Width (mm)
Calculated Slit Width (mm)
Percent Difference (%)
0.16
Transcribed Image Text:Table W1: Calculations on the Wavelength of the Laser Diode using Single-Slit Diffraction Data (m = 1) Slit width, a (mm) 0.02 0.04 0.08 Distance between side orders, 4y 1 (cm) Distance between side orders, y_1 (cm) Slit-to-screen distance, L (cm) Theoretical (Labelled) Wavelength (nm) Calculated Wavelength (nm) Percent Difference (%) Average Wavelength (nm) Table W2: Data and Results on the Diffraction Envelope (where y_m is the distance from the center of the pattern to the mth diffraction minima) of the Single-Slit Experiment (a = 0.04 mm) m = 1 m = 2 m = 3 Distance between side orders, 4y_m (cm) Distance between side orders, y_m (cm) Slit-to-screen distance, L (cm) Theoretical Slit Width (mm) Calculated Slit Width (mm) Percent Difference (%) 0.16
Single Slit Diffraction Experiment Data
4y_1 (cm)
4y_2 (cm)
Slit Width, a
(mm)
0.02
0.04
0.08
0.16
2.80
1.00
0.45
0.20
Source-to-Slit Distance (cm):
Slit-to-Screen Distance (cm):
Laser Wavelength (nm):
Slit Width, a
(mm)
0.04
0.04
0.08
0.08
Slit Separation,
d (mm)
0.25
0.50
0.25
0.50
1.90
0.90
0.50
3.00
27.00
650
Source-to-Slit Distance (cm):
Slit-to-Screen Distance (cm):
Laser Wavelength (nm):
Double Slit Diffraction Experiment Data
4y 1 (cm)
4y_2 (cm)
1.00
1.00
0.50
0.50
4y_3 (cm)
3.00
27.00
650
1.45
0.70
2.00
1.90
0.95
0.95
4y_3 (cm)
2.85
1.45
1.45
No. of Fringes
within 4y_1
13
25
7
13
Transcribed Image Text:Single Slit Diffraction Experiment Data 4y_1 (cm) 4y_2 (cm) Slit Width, a (mm) 0.02 0.04 0.08 0.16 2.80 1.00 0.45 0.20 Source-to-Slit Distance (cm): Slit-to-Screen Distance (cm): Laser Wavelength (nm): Slit Width, a (mm) 0.04 0.04 0.08 0.08 Slit Separation, d (mm) 0.25 0.50 0.25 0.50 1.90 0.90 0.50 3.00 27.00 650 Source-to-Slit Distance (cm): Slit-to-Screen Distance (cm): Laser Wavelength (nm): Double Slit Diffraction Experiment Data 4y 1 (cm) 4y_2 (cm) 1.00 1.00 0.50 0.50 4y_3 (cm) 3.00 27.00 650 1.45 0.70 2.00 1.90 0.95 0.95 4y_3 (cm) 2.85 1.45 1.45 No. of Fringes within 4y_1 13 25 7 13
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