Yellow light with wavelength, λ = 546 nm, is shined on two slits that are, d = 0.96 μm, apart and the resulting diffraction pattern is observed on a screen that is a distance, D = 1.3 m away. (a) Find the angles of the first order minima and maxima. 01min 1max = (b) How far apart are they on the screen? Ay m (c) What is the screen width of the central maximum? What is its angular width? Ayo = Δθο = cm 0 (d) Will there be a second order minimum? O Yep O Nope (e) Will there be a second order maximum? O Yep O Nope
Yellow light with wavelength, λ = 546 nm, is shined on two slits that are, d = 0.96 μm, apart and the resulting diffraction pattern is observed on a screen that is a distance, D = 1.3 m away. (a) Find the angles of the first order minima and maxima. 01min 1max = (b) How far apart are they on the screen? Ay m (c) What is the screen width of the central maximum? What is its angular width? Ayo = Δθο = cm 0 (d) Will there be a second order minimum? O Yep O Nope (e) Will there be a second order maximum? O Yep O Nope
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Transcribed Image Text:Yellow light with wavelength, λ = 546 nm, is shined on two slits that are, d = 0.96 μm, apart
and the resulting diffraction pattern is observed on a screen that is a distance, D = 1.3 m away.
(a) Find the angles of the first order minima and maxima.
01min
1max
=
(b) How far apart are they on the screen?
Ay =
||
m
0
(c) What is the screen width of the central maximum? What is its angular width?
Ayo
Δθο =
cm
0
(d) Will there be a second order minimum?
O Yep
O Nope
(e) Will there be a second order maximum?
O Yep
O Nope
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VIEWStep 2: 1) Angles for first order minima and maxima:
VIEWStep 3: 2) By how far are they apart on the screen?
VIEWStep 4: 3) Screen width and angular width of central maxima:
VIEWStep 5: (d) Will there be a second order minima?
VIEWStep 6: e) Will there be a second order maximum?
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