Refraction at plane surface
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364949 With respect to air critical angle in a medium for light of red colour \(\left[ {{\lambda _1}} \right]\) is \(\theta \) Other facts remaining same, critical angle for light of yellow colour \(\left[ {{\lambda _2}} \right]\) will be

1 More than \(\theta \)
2 \({\rm{\theta }}{\rm{.}}\)
3 \(\frac{{{\rm{\theta }}{\lambda _1}}}{{{\lambda _2}}}\)
4 Less than \({\rm{\theta }}{\rm{.}}\)
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364950 A ray of light enters from a rarer to a denser medium. The angle of incidence is \(i\). Then the reflected and refracted rays are mutually perpendicular to each other. The critical angle for the pair of media is

1 \({\sin ^{ - 1}}\left( {\cot i} \right)\)
2 \({\cos ^{ - 1}}\left( {\tan i} \right)\)
3 \({\sin ^{ - 1}}\left( {\tan i} \right)\)
4 \({\tan ^{ - 1}}\left( {\sin i} \right)\)
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364951 For total internal reflection to take place, the angle of incidence \(i\) and the refractive index \(\mu \) of the medium must satisfy the inequality

1 \(\sin i < \mu \)
2 \(\frac{1}{{\sin i}} < \mu \)
3 \(\sin i < \mu \sin i < \mu \)
4 \(\frac{1}{{\sin i}} > \mu \)
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364952 White light is incident on the interface of glass and air as shown in the figure. If green light is just totally internally reflected then the emerging ray in air contains
supporting img

1 Yellow, orange, red
2 Violet, indigo, blue
3 All colours
4 All colours except green
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PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364949 With respect to air critical angle in a medium for light of red colour \(\left[ {{\lambda _1}} \right]\) is \(\theta \) Other facts remaining same, critical angle for light of yellow colour \(\left[ {{\lambda _2}} \right]\) will be

1 More than \(\theta \)
2 \({\rm{\theta }}{\rm{.}}\)
3 \(\frac{{{\rm{\theta }}{\lambda _1}}}{{{\lambda _2}}}\)
4 Less than \({\rm{\theta }}{\rm{.}}\)
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364950 A ray of light enters from a rarer to a denser medium. The angle of incidence is \(i\). Then the reflected and refracted rays are mutually perpendicular to each other. The critical angle for the pair of media is

1 \({\sin ^{ - 1}}\left( {\cot i} \right)\)
2 \({\cos ^{ - 1}}\left( {\tan i} \right)\)
3 \({\sin ^{ - 1}}\left( {\tan i} \right)\)
4 \({\tan ^{ - 1}}\left( {\sin i} \right)\)
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364951 For total internal reflection to take place, the angle of incidence \(i\) and the refractive index \(\mu \) of the medium must satisfy the inequality

1 \(\sin i < \mu \)
2 \(\frac{1}{{\sin i}} < \mu \)
3 \(\sin i < \mu \sin i < \mu \)
4 \(\frac{1}{{\sin i}} > \mu \)
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364952 White light is incident on the interface of glass and air as shown in the figure. If green light is just totally internally reflected then the emerging ray in air contains
supporting img

1 Yellow, orange, red
2 Violet, indigo, blue
3 All colours
4 All colours except green
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364949 With respect to air critical angle in a medium for light of red colour \(\left[ {{\lambda _1}} \right]\) is \(\theta \) Other facts remaining same, critical angle for light of yellow colour \(\left[ {{\lambda _2}} \right]\) will be

1 More than \(\theta \)
2 \({\rm{\theta }}{\rm{.}}\)
3 \(\frac{{{\rm{\theta }}{\lambda _1}}}{{{\lambda _2}}}\)
4 Less than \({\rm{\theta }}{\rm{.}}\)
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364950 A ray of light enters from a rarer to a denser medium. The angle of incidence is \(i\). Then the reflected and refracted rays are mutually perpendicular to each other. The critical angle for the pair of media is

1 \({\sin ^{ - 1}}\left( {\cot i} \right)\)
2 \({\cos ^{ - 1}}\left( {\tan i} \right)\)
3 \({\sin ^{ - 1}}\left( {\tan i} \right)\)
4 \({\tan ^{ - 1}}\left( {\sin i} \right)\)
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364951 For total internal reflection to take place, the angle of incidence \(i\) and the refractive index \(\mu \) of the medium must satisfy the inequality

1 \(\sin i < \mu \)
2 \(\frac{1}{{\sin i}} < \mu \)
3 \(\sin i < \mu \sin i < \mu \)
4 \(\frac{1}{{\sin i}} > \mu \)
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364952 White light is incident on the interface of glass and air as shown in the figure. If green light is just totally internally reflected then the emerging ray in air contains
supporting img

1 Yellow, orange, red
2 Violet, indigo, blue
3 All colours
4 All colours except green
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364949 With respect to air critical angle in a medium for light of red colour \(\left[ {{\lambda _1}} \right]\) is \(\theta \) Other facts remaining same, critical angle for light of yellow colour \(\left[ {{\lambda _2}} \right]\) will be

1 More than \(\theta \)
2 \({\rm{\theta }}{\rm{.}}\)
3 \(\frac{{{\rm{\theta }}{\lambda _1}}}{{{\lambda _2}}}\)
4 Less than \({\rm{\theta }}{\rm{.}}\)
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364950 A ray of light enters from a rarer to a denser medium. The angle of incidence is \(i\). Then the reflected and refracted rays are mutually perpendicular to each other. The critical angle for the pair of media is

1 \({\sin ^{ - 1}}\left( {\cot i} \right)\)
2 \({\cos ^{ - 1}}\left( {\tan i} \right)\)
3 \({\sin ^{ - 1}}\left( {\tan i} \right)\)
4 \({\tan ^{ - 1}}\left( {\sin i} \right)\)
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364951 For total internal reflection to take place, the angle of incidence \(i\) and the refractive index \(\mu \) of the medium must satisfy the inequality

1 \(\sin i < \mu \)
2 \(\frac{1}{{\sin i}} < \mu \)
3 \(\sin i < \mu \sin i < \mu \)
4 \(\frac{1}{{\sin i}} > \mu \)
PHXII09:RAY OPTICS AND OPTICAL INSTRUMENTS

364952 White light is incident on the interface of glass and air as shown in the figure. If green light is just totally internally reflected then the emerging ray in air contains
supporting img

1 Yellow, orange, red
2 Violet, indigo, blue
3 All colours
4 All colours except green