111. A point object $$'O'$$ is at the centre of curvature of a concave mirror. The mirror starts to move at a speed $$u,$$ in a direction perpendicular to the principal axis. Then, the initial velocity of the image is

A $$2u,$$  in the direction opposite to that of mirror's velocity
B $$2u,$$  in the direction same as that of mirror's velocity
C zero
D $$u,$$ in the direction same as that of mirror's velocity
Answer :   $$2u,$$  in the direction same as that of mirror's velocity
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112. A boy is trying to start a fire by focusing sunlight on a piece of paper using an equiconvex lens of focal length $$10\,cm.$$  The diameter of the sun is $$1.39 \times {10^9}m$$   and its mean distance from the earth is $$1.5 \times {10^{11}}m.$$   What is the diameter of the sun’s image on the paper ?

A $$9.2 \times {10^{ - 4}}m$$
B $$6.5 \times {10^{ - 4}}m$$
C $$6.5 \times {10^{ - 5}}m$$
D $$12.4 \times {10^{ - 4}}m$$
Answer :   $$9.2 \times {10^{ - 4}}m$$
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113. A glass prism of refractive index $$1.5$$ is immersed in water (refractive index $$\frac{4}{3}$$ ). A light beam incident normally on the face $$AB$$  is totally reflected to reach on the face $$BC$$  if
Ray Optics mcq question image

A $$\sin \theta \geqslant \frac{8}{9}$$
B $$\frac{2}{3} < \sin \theta < \frac{8}{9}$$
C $$\sin \theta \leqslant \frac{2}{3}$$
D $$\frac{1}{2} < \sin \theta < 1$$
Answer :   $$\sin \theta \geqslant \frac{8}{9}$$
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114. A biconvex lens has a radius of curvature of magnitude $$20\,cm.$$  Which one of the following options describe best the image formed of an object of height $$2\,cm$$  placed $$30\,cm$$  from the lens?

A Virtual, upright, height $$= 0.5\,cm$$
B Real, inverted, height $$= 4\,cm$$
C Real, inverted, height $$= 1\,cm$$
D Virtual, upright, height $$= 1\,cm$$
Answer :   Real, inverted, height $$= 4\,cm$$
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115. An experiment is performed to find the refractive index of glass using a travelling microscope. In this experiment distances are measured by

A a vernier scale provided on the microscope
B a standard laboratory scale
C a meter scale provided on the microscope
D a screw gauge provided on the microscope
Answer :   a vernier scale provided on the microscope
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116. Two identical glass $$\left( {{\mu _g} = \frac{3}{2}} \right)$$  equi-convex lenses of focal length $$f$$ each are kept in contact. The space between the two lenses is filled with water $$\left( {{\mu _w} = \frac{4}{3}} \right).$$   The focal length of the combination is

A $$\frac{f}{3}$$
B $$f$$
C $$\frac{{4f}}{3}$$
D $$\frac{{3f}}{4}$$
Answer :   $$\frac{{3f}}{4}$$
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117. In figure find the total magnification after two successive reflections first on $${M_1}$$ and then on $${M_2}.$$
Ray Optics mcq question image

A $$+ 1$$
B $$- 2$$
C $$+ 2$$
D $$- 1$$
Answer :   $$+ 2$$
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118. Light with an energy flux of $$25 \times {10^4}\,W{m^{ - 2}}$$    falls on a perfectly reflecting surface at normal incidence. If the surface area is $$15\,c{m^2},$$  the average force exerted on the surface is

A $$1.25 \times {10^{ - 6}}N$$
B $$2.50 \times {10^{ - 6}}N$$
C $$1.20 \times {10^{ - 6}}N$$
D $$3.0 \times {10^{ - 6}}N$$
Answer :   $$2.50 \times {10^{ - 6}}N$$
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119. Monochromatic light is incident on a glass prism of angle $$A.$$ If the refractive index of the material of the prism is $$\mu ,$$ $$a$$ ray, incident at an angle $$\theta ,$$ on the face $$AB$$  would get transmitted through the face $$AC$$  of the prism provided :
Ray Optics mcq question image

A $$\theta > {\cos ^{ - 1}}\left[ {\mu \sin \left( {A + {{\sin }^{ - 1}}\left( {\frac{1}{\mu }} \right)} \right.} \right]$$
B $$\theta < {\cos ^{ - 1}}\left[ {\mu \sin \left( {A + {{\sin }^{ - 1}}\left( {\frac{1}{\mu }} \right)} \right.} \right]$$
C $$\theta > {\sin ^{ - 1}}\left[ {\mu \sin \left( {A - {{\sin }^{ - 1}}\left( {\frac{1}{\mu }} \right)} \right.} \right]$$
D $$\theta < {\sin ^{ - 1}}\left[ {\mu \sin \left( {A - {{\sin }^{ - 1}}\left( {\frac{1}{\mu }} \right)} \right.} \right]$$
Answer :   $$\theta > {\sin ^{ - 1}}\left[ {\mu \sin \left( {A - {{\sin }^{ - 1}}\left( {\frac{1}{\mu }} \right)} \right.} \right]$$
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120. Two identical thin plano convex lenses of refractive index $$n$$ are silvered, one on the plane side and the other on the convex side. The ratio of their focal lengths is

A $$\frac{n}{{n - 1}}$$
B $$\frac{{n - 1}}{n}$$
C $$\frac{{n + 1}}{n}$$
D $$n$$
Answer :   $$\frac{n}{{n - 1}}$$
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