Wave Nature of Light
PHXII10:WAVE OPTICS

367939 According to Huygens’ principle, during refraction of light from air to a denser medium

1 Wavelength and speed increase
2 Wavelength decreases but speed increases
3 Wavelength and speed decrease
4 Wavelength increases but speed decreases
PHXII10:WAVE OPTICS

367940 Light wave travel in vacuum along the \(x\)-axis, which of the following may present the wavefront

1 \(y = a\)
2 \(x = a\)
3 \(x + y + z = a\)
4 \(z = a\)
PHXII10:WAVE OPTICS

367941 When the same monochromatic ray of light travels through glass slab and through water, the number of waves in glass slab of thickness \(6cm\) is same as in water column of height \(7cm\). If refractive index of glass is 1.5, then refractive index of water is

1 1.258
2 1.269
3 1.286
4 \(1.310\)
PHXII10:WAVE OPTICS

367942 A glass slab of thickness 8 \(cm\) contains the same number of waves as 10 \(cm\) of water when both are traversed by the same monochromatic light. If the refractive index of water is 4/3, the refractive index of glass is

1 \(16{\rm{/}}15\)
2 \(5{\rm{/}}3\)
3 \(5{\rm{/}}4\)
4 \(3{\rm{/}}2\)
PHXII10:WAVE OPTICS

367943 A ray of light travelling through rarer medium is incident at very small angle \(i\) on a glass slab and after refraction its velocity is reduced by \(20\% \). The angle of deviation is

1 \(\frac{i}{8}\)
2 \(\frac{i}{5}\)
3 \(\frac{i}{2}\)
4 \(\frac{{4i}}{5}\)
PHXII10:WAVE OPTICS

367939 According to Huygens’ principle, during refraction of light from air to a denser medium

1 Wavelength and speed increase
2 Wavelength decreases but speed increases
3 Wavelength and speed decrease
4 Wavelength increases but speed decreases
PHXII10:WAVE OPTICS

367940 Light wave travel in vacuum along the \(x\)-axis, which of the following may present the wavefront

1 \(y = a\)
2 \(x = a\)
3 \(x + y + z = a\)
4 \(z = a\)
PHXII10:WAVE OPTICS

367941 When the same monochromatic ray of light travels through glass slab and through water, the number of waves in glass slab of thickness \(6cm\) is same as in water column of height \(7cm\). If refractive index of glass is 1.5, then refractive index of water is

1 1.258
2 1.269
3 1.286
4 \(1.310\)
PHXII10:WAVE OPTICS

367942 A glass slab of thickness 8 \(cm\) contains the same number of waves as 10 \(cm\) of water when both are traversed by the same monochromatic light. If the refractive index of water is 4/3, the refractive index of glass is

1 \(16{\rm{/}}15\)
2 \(5{\rm{/}}3\)
3 \(5{\rm{/}}4\)
4 \(3{\rm{/}}2\)
PHXII10:WAVE OPTICS

367943 A ray of light travelling through rarer medium is incident at very small angle \(i\) on a glass slab and after refraction its velocity is reduced by \(20\% \). The angle of deviation is

1 \(\frac{i}{8}\)
2 \(\frac{i}{5}\)
3 \(\frac{i}{2}\)
4 \(\frac{{4i}}{5}\)
PHXII10:WAVE OPTICS

367939 According to Huygens’ principle, during refraction of light from air to a denser medium

1 Wavelength and speed increase
2 Wavelength decreases but speed increases
3 Wavelength and speed decrease
4 Wavelength increases but speed decreases
PHXII10:WAVE OPTICS

367940 Light wave travel in vacuum along the \(x\)-axis, which of the following may present the wavefront

1 \(y = a\)
2 \(x = a\)
3 \(x + y + z = a\)
4 \(z = a\)
PHXII10:WAVE OPTICS

367941 When the same monochromatic ray of light travels through glass slab and through water, the number of waves in glass slab of thickness \(6cm\) is same as in water column of height \(7cm\). If refractive index of glass is 1.5, then refractive index of water is

1 1.258
2 1.269
3 1.286
4 \(1.310\)
PHXII10:WAVE OPTICS

367942 A glass slab of thickness 8 \(cm\) contains the same number of waves as 10 \(cm\) of water when both are traversed by the same monochromatic light. If the refractive index of water is 4/3, the refractive index of glass is

1 \(16{\rm{/}}15\)
2 \(5{\rm{/}}3\)
3 \(5{\rm{/}}4\)
4 \(3{\rm{/}}2\)
PHXII10:WAVE OPTICS

367943 A ray of light travelling through rarer medium is incident at very small angle \(i\) on a glass slab and after refraction its velocity is reduced by \(20\% \). The angle of deviation is

1 \(\frac{i}{8}\)
2 \(\frac{i}{5}\)
3 \(\frac{i}{2}\)
4 \(\frac{{4i}}{5}\)
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PHXII10:WAVE OPTICS

367939 According to Huygens’ principle, during refraction of light from air to a denser medium

1 Wavelength and speed increase
2 Wavelength decreases but speed increases
3 Wavelength and speed decrease
4 Wavelength increases but speed decreases
PHXII10:WAVE OPTICS

367940 Light wave travel in vacuum along the \(x\)-axis, which of the following may present the wavefront

1 \(y = a\)
2 \(x = a\)
3 \(x + y + z = a\)
4 \(z = a\)
PHXII10:WAVE OPTICS

367941 When the same monochromatic ray of light travels through glass slab and through water, the number of waves in glass slab of thickness \(6cm\) is same as in water column of height \(7cm\). If refractive index of glass is 1.5, then refractive index of water is

1 1.258
2 1.269
3 1.286
4 \(1.310\)
PHXII10:WAVE OPTICS

367942 A glass slab of thickness 8 \(cm\) contains the same number of waves as 10 \(cm\) of water when both are traversed by the same monochromatic light. If the refractive index of water is 4/3, the refractive index of glass is

1 \(16{\rm{/}}15\)
2 \(5{\rm{/}}3\)
3 \(5{\rm{/}}4\)
4 \(3{\rm{/}}2\)
PHXII10:WAVE OPTICS

367943 A ray of light travelling through rarer medium is incident at very small angle \(i\) on a glass slab and after refraction its velocity is reduced by \(20\% \). The angle of deviation is

1 \(\frac{i}{8}\)
2 \(\frac{i}{5}\)
3 \(\frac{i}{2}\)
4 \(\frac{{4i}}{5}\)
PHXII10:WAVE OPTICS

367939 According to Huygens’ principle, during refraction of light from air to a denser medium

1 Wavelength and speed increase
2 Wavelength decreases but speed increases
3 Wavelength and speed decrease
4 Wavelength increases but speed decreases
PHXII10:WAVE OPTICS

367940 Light wave travel in vacuum along the \(x\)-axis, which of the following may present the wavefront

1 \(y = a\)
2 \(x = a\)
3 \(x + y + z = a\)
4 \(z = a\)
PHXII10:WAVE OPTICS

367941 When the same monochromatic ray of light travels through glass slab and through water, the number of waves in glass slab of thickness \(6cm\) is same as in water column of height \(7cm\). If refractive index of glass is 1.5, then refractive index of water is

1 1.258
2 1.269
3 1.286
4 \(1.310\)
PHXII10:WAVE OPTICS

367942 A glass slab of thickness 8 \(cm\) contains the same number of waves as 10 \(cm\) of water when both are traversed by the same monochromatic light. If the refractive index of water is 4/3, the refractive index of glass is

1 \(16{\rm{/}}15\)
2 \(5{\rm{/}}3\)
3 \(5{\rm{/}}4\)
4 \(3{\rm{/}}2\)
PHXII10:WAVE OPTICS

367943 A ray of light travelling through rarer medium is incident at very small angle \(i\) on a glass slab and after refraction its velocity is reduced by \(20\% \). The angle of deviation is

1 \(\frac{i}{8}\)
2 \(\frac{i}{5}\)
3 \(\frac{i}{2}\)
4 \(\frac{{4i}}{5}\)