What is the wavelength of the light entering aninterferometer if 362 bright fringes are counted when themovable mirror moves 0.125 mm?
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What is the wavelength of the light entering an
interferometer if 362 bright fringes are counted when the
movable mirror moves 0.125 mm?
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- Suppose that two points are separated by 2.0 cm. If they are viewed by an eye with a pupil opening of 5.0 mm, what distance from the viewer puts them at the Rayleigh limit of resolution? Assume a light wavelength of 500 nm.Question in attachmentsLight passes through two parallel slits separated by a distance of 1.98 μm. Calculate the wavelength of light in units of nm if the third-order maximum is at an angle of 60.0 degrees.
- What is the minimal thickness soap-bubble of index of refraction 1.333 that will appear blue (450nm in vacuum) by constructively reflecting this wavelength?Light with a Wave length 09 1=6alonm is ashone 4irst on a single Mit Awidth W=1-25Mm. The sing le slit Is then replaced with a douple slit separated by adıstance w. ne fatio 07 the single Slitanale to the doubie slit ang le 4DY Yhe 7iKrt dark 7ringe is Ro. A=16210nm W=1.25um nnd the rati0 between these angles numerIcally.Superposition of waves shows interference pattern. Monochromatic light (light wave of a particular frequency) falls on double-slit 0.04-mm apart produces the 4th-order bright fringe at an 9.4o angle. Find the wavelength of the light used.(A) Wavelength (B) If the distance of the viewing screen is 1.2-m away from the slit, how far this fringe will form on the screen from its center?