A monochromatic light emits visible light of two wavelengths: A = 450 nm and X'= 510 nm. The source is used in a double-slit interference experiment in which the distance between the slits and the screen is 1.5 m and the distance between the slits is 0.025 mm. Determine the separation distance between the third-order bright fringes. OA. 2.00 cm OB. 3.21 cm O c. 1.44 cm. O D.2.64 cm

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A monochromatic light emits visible light of two wavelengths: A = 450 nm and X'= 510 nm. The source is used in a double-slit interference experiment in which the distance between the slits
and the screen is 1.5 m and the distance between the slits is 0.025 mm. Determine the separation distance between the third-order bright fringes.
O A. 2.00 cm
O B. 3.21 cm
O c. 1.44 cm.
O D.2.64 cm
Transcribed Image Text:A monochromatic light emits visible light of two wavelengths: A = 450 nm and X'= 510 nm. The source is used in a double-slit interference experiment in which the distance between the slits and the screen is 1.5 m and the distance between the slits is 0.025 mm. Determine the separation distance between the third-order bright fringes. O A. 2.00 cm O B. 3.21 cm O c. 1.44 cm. O D.2.64 cm
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