9. Let consider constructive interference pattern with light wavelength 400 nm, the distance to the wall is 5m, and the distance between the slits is 0.2mm. How many points of constructive interference will occur between the center of the diffraction pattern and a point 4 cm away. None of these
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A: Solution:Given:P = point located at the centre of central maximumλ = wavelength of light = 697 nm =…
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A: Given, No. of fringr(n)= 3 Wavelength (λ)= 632nm = 632*10-9 m Distance from the wall (D)= 7 m…
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A: angular distance of fourth bright band = 7ofrequency of light = 5.4×1014 Hz Let the distance of…
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A: Please see the answer below.
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A: Correct option a) 18.7 degree
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A: Given Data:- Wavelength of the incident light is λ=550 nm =550 nm×10-9 m1 nm =5.50×10-7 m Slit…
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Q: Light of wavelength 613.0 nm is incident on a narrow slit. The diffraction pattern is viewed on a…
A: Given data as per question wavelength = 613nm n = 4 D = 81.5cm
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Q: Light of wavelength 530 nm passes through a slit of width 0.220 mm. (a) The width of the central…
A: Given, λ= 530nm = 530*10-9m d= 0.220mm = 0.22*10-3m y= 8.2mm = 8.2*10-3 m We know that, y=2λD/d…
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- In a double-slit experiment the distance between slits is 3.8 mm and the slits are 1.1 m from the screen. Two interference patterns can be seen on the screen: one due to light of wavelength 470 nm, and the other due to light of wavelength 570 nm. What is the separation in meters on the screen between the m = 3 bright fringes of the two interference patterns?In a single-slit diffraction the angular positions of bright fringes are given by an equation sin 0 where m 0, ±1, ±2, ... a False TrueYou measure three segments of the distance between a diffraction slit an the screen on which the pattern forms: x1 = (15.8 ± 0.2) cm, x2 = (6.7 ± 0.1) cm, and x3 = (11.3 ± 0.1). What is the uncertainty of the total distance x1 + x2 + x3? Group of answer choices 0.4 cm 0.5 cm 0.2 cm 0.3 cm 0.1 cm
- In a double-slit interference experiment, the light source is a visible laser with wavelength 7.13E-7 m, the distance between slits is 5.42E-4m, and a screen is 5.38 m away from the slits. In the interference pattern on the screen, what is the distance between the central bright fringe and the first bright fringe next to it (in m)?A diffraction pattern forms when light passes through a single slit. The wavelength of the light is 591 nm. Determine the angle that locates the first dark fringe when the width of the slit is (a)3.3 x 10^-4 m and 3.3 x 10^-6 mIn a single slit diffraction experiment, the width of the slit is 3.1 x 10-5 m and the distance from the slit to the screen is 2.2 m. If the beam of light of wavelength 600 nm passes through the slit and forms a diffraction pattern on the screen, what is the linear distance on the screen from the center of the diffraction pattern to the first dark fringe? 6.3 cm 7.4 cm 4.3 cm O 8.5 cm
- A diffraction pattern forms when light passes through a single slit. The wavelength of the light is 556 nm. Determine the angle that locates the first dark fringe when the width of the slit is (a) 2.3 × 10-4 m and (b) 2.3 × 10-6 m.Using a 685 nm wavelength laser, you form the diffraction pattern of a 1.01 mm wide slit on a screen. You measure on the screen that the 15th dark fringe is 9.23 cm away from the center of the central maximum. How far is the screen located from the slit?Using a 697 nm wavelength laser, you form the diffraction pattern of a 1.11 mm wide slit on a screen. You measure on the screen that the 11th dark fringe is 8.33 cm away from the center of the central maximum. How far is the screen located from the slit?