(a) Find the angle in degrees between the first minima for the two sodium vapor lines, which have wavelengths of 589.1 and 589.6 nm, when they fall upon a single slit of width 1.60 μm. (b) What is the distance in nm between these minima if the diffraction pattern falls on a flat screen 1.20 m from the slit? mm (c) Discuss the ease or difficulty of measuring such a distance. (Select all that apply.) This distance is easily measured using a microscope. This distance is easily measured using a magnifying glass. This distance is easily measured by the human eye.

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(a) Find the angle in degrees between the first minima for the two sodium vapor lines, which have wavelengths of 589.1 and 589.6 nm, when they fall
upon a single slit of width 1.60 μm.
(b) What is the distance in nm between these minima if the diffraction pattern falls on a flat screen 1.20 m from the slit?
mm
(c) Discuss the ease or difficulty of measuring such a distance. (Select all that apply.)
This distance is easily measured using a microscope.
This distance is easily measured using a magnifying glass.
This distance is easily measured by the human eye.
Transcribed Image Text:(a) Find the angle in degrees between the first minima for the two sodium vapor lines, which have wavelengths of 589.1 and 589.6 nm, when they fall upon a single slit of width 1.60 μm. (b) What is the distance in nm between these minima if the diffraction pattern falls on a flat screen 1.20 m from the slit? mm (c) Discuss the ease or difficulty of measuring such a distance. (Select all that apply.) This distance is easily measured using a microscope. This distance is easily measured using a magnifying glass. This distance is easily measured by the human eye.
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