Young’s Double Slit Experiment
PHXII10:WAVE OPTICS

368115 A graph is plotted between the fringe width \(Z\) and the distance \(D\) between the slit and eye piece, keeping other adjustment same. The correct graph is
supporting img

1 \(A\)
2 \(B\)
3 \(D\)
4 \(C\)
PHXII10:WAVE OPTICS

368116 In Young's double slit experiment, the position of \(5^{\text {th }}\) bright fringe from the central maximum is \(5 m\) . The distance between slit and screen is \(1 m\) and wavelength of used monochromatic light is \(600 nm\) . The separation between the slits is

1 \(36\mu m\)
2 \(60\mu m\)
3 \(12\mu m\)
4 \(48\mu m\)
PHXII10:WAVE OPTICS

368117 In \(Y D S E\) how many maxima can be obtained on the screen if wavelength of light used is \(200\;nm\) and \(d = 700\;nm\).

1 12
2 7
3 18
4 None of these
PHXII10:WAVE OPTICS

368118 Two coherent point sources \({S_1}\) and \({S_2}\) are separated by a small distance \(‘d’\) as shown. The fringes obtained on the screen will be :
supporting img

1 Points
2 Straight lines
3 Semi-circles
4 Concentric circles
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PHXII10:WAVE OPTICS

368115 A graph is plotted between the fringe width \(Z\) and the distance \(D\) between the slit and eye piece, keeping other adjustment same. The correct graph is
supporting img

1 \(A\)
2 \(B\)
3 \(D\)
4 \(C\)
PHXII10:WAVE OPTICS

368116 In Young's double slit experiment, the position of \(5^{\text {th }}\) bright fringe from the central maximum is \(5 m\) . The distance between slit and screen is \(1 m\) and wavelength of used monochromatic light is \(600 nm\) . The separation between the slits is

1 \(36\mu m\)
2 \(60\mu m\)
3 \(12\mu m\)
4 \(48\mu m\)
PHXII10:WAVE OPTICS

368117 In \(Y D S E\) how many maxima can be obtained on the screen if wavelength of light used is \(200\;nm\) and \(d = 700\;nm\).

1 12
2 7
3 18
4 None of these
PHXII10:WAVE OPTICS

368118 Two coherent point sources \({S_1}\) and \({S_2}\) are separated by a small distance \(‘d’\) as shown. The fringes obtained on the screen will be :
supporting img

1 Points
2 Straight lines
3 Semi-circles
4 Concentric circles
PHXII10:WAVE OPTICS

368115 A graph is plotted between the fringe width \(Z\) and the distance \(D\) between the slit and eye piece, keeping other adjustment same. The correct graph is
supporting img

1 \(A\)
2 \(B\)
3 \(D\)
4 \(C\)
PHXII10:WAVE OPTICS

368116 In Young's double slit experiment, the position of \(5^{\text {th }}\) bright fringe from the central maximum is \(5 m\) . The distance between slit and screen is \(1 m\) and wavelength of used monochromatic light is \(600 nm\) . The separation between the slits is

1 \(36\mu m\)
2 \(60\mu m\)
3 \(12\mu m\)
4 \(48\mu m\)
PHXII10:WAVE OPTICS

368117 In \(Y D S E\) how many maxima can be obtained on the screen if wavelength of light used is \(200\;nm\) and \(d = 700\;nm\).

1 12
2 7
3 18
4 None of these
PHXII10:WAVE OPTICS

368118 Two coherent point sources \({S_1}\) and \({S_2}\) are separated by a small distance \(‘d’\) as shown. The fringes obtained on the screen will be :
supporting img

1 Points
2 Straight lines
3 Semi-circles
4 Concentric circles
PHXII10:WAVE OPTICS

368115 A graph is plotted between the fringe width \(Z\) and the distance \(D\) between the slit and eye piece, keeping other adjustment same. The correct graph is
supporting img

1 \(A\)
2 \(B\)
3 \(D\)
4 \(C\)
PHXII10:WAVE OPTICS

368116 In Young's double slit experiment, the position of \(5^{\text {th }}\) bright fringe from the central maximum is \(5 m\) . The distance between slit and screen is \(1 m\) and wavelength of used monochromatic light is \(600 nm\) . The separation between the slits is

1 \(36\mu m\)
2 \(60\mu m\)
3 \(12\mu m\)
4 \(48\mu m\)
PHXII10:WAVE OPTICS

368117 In \(Y D S E\) how many maxima can be obtained on the screen if wavelength of light used is \(200\;nm\) and \(d = 700\;nm\).

1 12
2 7
3 18
4 None of these
PHXII10:WAVE OPTICS

368118 Two coherent point sources \({S_1}\) and \({S_2}\) are separated by a small distance \(‘d’\) as shown. The fringes obtained on the screen will be :
supporting img

1 Points
2 Straight lines
3 Semi-circles
4 Concentric circles