In a Young's double-slit experiment the separation distance y between the second-order bright fringe and the central bright fringe on a flat screen is 0.0161 m, when the light has a wavelength of 425 nm. Assume that the angles are small enough so that sin (0) is approximately equal to tan (9). Find the separation y when the light has a wavelength of 610 nm. Number i Units ✓

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter35: Diffraction And Interference
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In a Young's double-slit experiment the separation distance y between the second-order bright fringe and the central bright fringe on a
flat screen is 0.0161 m, when the light has a wavelength of 425 nm. Assume that the angles are small enough so that sin (0) is
approximately equal to tan (9). Find the separation y when the light has a wavelength of 610 nm.
Number i
Units
✓
Transcribed Image Text:In a Young's double-slit experiment the separation distance y between the second-order bright fringe and the central bright fringe on a flat screen is 0.0161 m, when the light has a wavelength of 425 nm. Assume that the angles are small enough so that sin (0) is approximately equal to tan (9). Find the separation y when the light has a wavelength of 610 nm. Number i Units ✓
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