A double-slit interference pattern is observed on a screen with the intensity graph. Points A, B, C, D, and E are bright fringes. Points F, G, H, I, J, and K are dark fringes. Which fringe is the central maximum fringe? A B C D E F G H I J K none of the above

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A double-slit interference pattern is observed on a screen with the intensity graph. Points A, B, C, D, and E are bright fringes. Points F, G, H, I, J, and K are dark fringes. Which fringe is the central maximum fringe?

A

B

C

D

E

F

G

H

I

J

K

none of the above

This image presents a conceptual depiction of the double-slit experiment, showcasing the interference pattern of light waves.

1. **Light Source**: On the left, a light generator emits green light with a wavelength of 500 nm.

2. **Slit Barrier**: The light passes through two narrow slits, denoted by vertical lines, which act as secondary sources of light waves, creating an interference pattern on the screen.

3. **Interference Pattern**: Beyond the slits, the overlapping light waves create a pattern of bright and dark fringes due to constructive and destructive interference. The intensity varies across the screen, with high intensity at the bright fringes and low intensity at the dark ones.

4. **Graph Explanation**: On the right side of the image, a graph illustrates light intensity across the screen:
   - The y-axis is labeled with letters (A to E) corresponding to points on the screen.
   - Peaks labeled (F to K) correspond to the maxima and minima in intensity.
   - The x-axis indicates "Intensity."

This diagram effectively demonstrates the wave nature of light and the phenomenon of interference, which is pivotal in understanding fundamental principles of wave optics.
Transcribed Image Text:This image presents a conceptual depiction of the double-slit experiment, showcasing the interference pattern of light waves. 1. **Light Source**: On the left, a light generator emits green light with a wavelength of 500 nm. 2. **Slit Barrier**: The light passes through two narrow slits, denoted by vertical lines, which act as secondary sources of light waves, creating an interference pattern on the screen. 3. **Interference Pattern**: Beyond the slits, the overlapping light waves create a pattern of bright and dark fringes due to constructive and destructive interference. The intensity varies across the screen, with high intensity at the bright fringes and low intensity at the dark ones. 4. **Graph Explanation**: On the right side of the image, a graph illustrates light intensity across the screen: - The y-axis is labeled with letters (A to E) corresponding to points on the screen. - Peaks labeled (F to K) correspond to the maxima and minima in intensity. - The x-axis indicates "Intensity." This diagram effectively demonstrates the wave nature of light and the phenomenon of interference, which is pivotal in understanding fundamental principles of wave optics.
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