A 0.0025cm wide slit was illuminated with a 5000A wavelength light. I placed a lens behind the notch with a focal length of 50cm Find the width of the central fringe
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A: =tan-10.11 × 10-37.5×10-2 θ ≈ 0.085
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A: Distance between two stars = 2.6 × 1011 m Wavelength= 650 nm Diameter of the lens = 1.95 m
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Q: Two stars have an angular separation of 7.45 x 10-8 rad when viewed in the night sky from Earth.…
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A: See below
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A: Given that:- Width of the slit, d=0.0500 mm=5.0×10-5 mWhereas,Wavelength of the lightλ=550…
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A: the problem is related to the double slit interference. it is given that 4β = 10.128 cm as shown…
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- Find the wavelength of light used in a Michelson interferometer if 550 bright fringes go by a fixed point when the mirror moves 0.150mm.Two stars have an angular separation of 7.45 x 10-8 rad when viewed in the night sky from Earth. Determine the minimum diameter of a telescope's circular aperture if the two stars are to be angularly resolved at a wavelength of 570 nm. mThe nonreflective coating on a camera lens with an index of refraction of 1.31 is designed to minimize the reflection of 600-nm light. If the lens glass has an index of refraction of 1.55, what is the minimum thickness of the coating that will accomplish this task? m
- MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER A 2000 Hz sound wave passes through a wall with two narrow openings 30 cm apart. If sound travels on average 355 m/s, find the following. (a) What is the angle of the first order maximum? 36.27 (b) Find the slit separation when you replace the sound wave with a 2.30 cm microwave, and the angle of the first order maximum remains unchanged. 3.8878 How do you find the angle of a diffraction pattern, given wavelength? m (c) If the slit separation is 1.00 µm, what frequency of light gives the same first order maximum angle? 6.0007e-8X How do you find the angle of a diffraction pattern, given wavelength? Hz Additional Materials O ReadingLaser light is shone onto two slits separated by a distance of 8.0mm. The light is shone onto a screen 5.7m away. The distance to the m=3 bright fringe measured from the central bright spot is 7.9cm. Find the wavelength of the laser in nm.What's the longest wavelength of light you could use to resolve a structure with angular diameter 0.44 mrad, using a microscope with a 1.2-mm-diameter objective lens?
- A piece of glass scrren is put at a distance R=10 cm from a 2 slit setup. The point call p on the image is 180 nanometers from the central maximum. distance d =0.1 mm is the space between slits. with this specific set up the 3rd bright spot in the interference pattern is exactly at point P. A) Wavlength of the laser with formalas shown. B)What is the intensity of the light at a point on the screen 140 mm from the central max. Express anser as a percentage of the intesity og central max.Needs Complete typed solution with 100 % accuracy.