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Karnataka Board PUCPUC Science 2nd PUC Class 12

PUC Science 2nd PUC Class 12 - Karnataka Board PUC Question Bank Solutions for Physics

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A source emits 31.4 W of radiant flux distributed uniformly in all directions. The luminous efficiency is 60 lumen watt−1. What is the luminous intensity of the source?

[9] Ray Optics and Optical Instruments
Chapter: [9] Ray Optics and Optical Instruments
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A point source emitting 628 lumen of luminous flux uniformly in all directions is placed at the origin. Calculate the illuminance on a small area placed at (1.0 m, 0, 0) in such a way that the normal to the area makes an angle of 37° with the X-axis.

[9] Ray Optics and Optical Instruments
Chapter: [9] Ray Optics and Optical Instruments
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The illuminance of  a small area changes from 900 lumen m−2 to 400 lumen m−2 when it is shifted along its normal by 10 cm. Assuming that it is illuminated by a point source placed on the normal, find the distance between the source and the area in the original position.

[9] Ray Optics and Optical Instruments
Chapter: [9] Ray Optics and Optical Instruments
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A point source emitting light uniformly in all directions is placed 60 cm above a table-top. The illuminance at a point on the table-top, directly below the source, is 15 lux. Find the illuminance at a point on the table-top 80 cm away from the first point.

[9] Ray Optics and Optical Instruments
Chapter: [9] Ray Optics and Optical Instruments
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Light from a point source falls on a small area placed perpendicular to the incident light. If the area is rotated about the incident light by an angle of 60°, by what fraction will the illuminance change?

[9] Ray Optics and Optical Instruments
Chapter: [9] Ray Optics and Optical Instruments
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A student is studying a book placed near the edge of a circular table of radius R. A point source of light is suspended directly above the centre of the table. What should be the height of the source above the table so as to produce maximum illuminance at the position of the book?

[9] Ray Optics and Optical Instruments
Chapter: [9] Ray Optics and Optical Instruments
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Figure shows a small diffused plane source S placed over a horizontal table-top at a distance of 2.4 m with its plane parallel to the table-top. The illuminance at the point Adirectly below the source is 25 lux. Find the illuminance at a point B of the table at a distance of 1.8 m from A.

[9] Ray Optics and Optical Instruments
Chapter: [9] Ray Optics and Optical Instruments
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An electric lamp and a candle produce equal illuminance at a photometer screen when they are placed at 80 cm and 20 cm from the screen respectively. The lamp is now covered with a thin paper which transmits 49% of the luminous flux. By what distance should the lamp be moved to balance the intensities at the screen again?

[9] Ray Optics and Optical Instruments
Chapter: [9] Ray Optics and Optical Instruments
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Two light sources of intensities 8 cd and 12 cd are placed on the same side of a photometer screen at a distance of 40 cm from it. Where should a 80 cd source be placed to balance the illuminance?

[9] Ray Optics and Optical Instruments
Chapter: [9] Ray Optics and Optical Instruments
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The speed of sound in air is 332 m s−1. Is it advisable to define the length 1 m as the distance travelled by sound in 1/332 s?

[10] Wave Optics
Chapter: [10] Wave Optics
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Consider Galileo's method of measuring the speed of light using two lanterns. To get an accuracy of about 10%, the time taken by the experimenter in closing or opening the shutter should be about one tenth of the time taken by the light in going from one experimenter to the other. Assume that it takes 1/100 second for an experimenter to close or open the shutter. How far should the two experimenters be to get a 10% accuracy? What are the difficulties in having this separation?

[10] Wave Optics
Chapter: [10] Wave Optics
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In Fizeau method of measuring the speed of light, the toothed wheel is placed in the focal plane of a converging lens. How would the experiment be affected if the wheel is slightly away from the focal plane?

[10] Wave Optics
Chapter: [10] Wave Optics
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In the original Fizeau method, the light travelled 8.6 km and then returned. What could be the difficulty if this distance is taken as 8.6 m?

[10] Wave Optics
Chapter: [10] Wave Optics
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What is the advantage of using a polygonal mirror with larger number of faces in Michelson method of measuring the speed of light?

[10] Wave Optics
Chapter: [10] Wave Optics
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Light passes through a closed cylindrical tube containing a gas. If the gas is gradually pumped out, the speed of light inside the tube will

[10] Wave Optics
Chapter: [10] Wave Optics
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The speeds of red light and yellow light are exactly same

[10] Wave Optics
Chapter: [10] Wave Optics
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An illuminated object is placed on the principal axis of a converging lens so that a real image is formed on the other side of the lens. If the object is shifted a little,

[10] Wave Optics
Chapter: [10] Wave Optics
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The speed of light is 299, 792, 458 ms−1
(a) with respect to the earth
(b) with respect to the sun
(c) with respect to a train moving on the earth
(d) with respect to a spaceship going in outer space.

[10] Wave Optics
Chapter: [10] Wave Optics
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Which of the following methods can be used to measure the speed of light in laboratory?

[10] Wave Optics
Chapter: [10] Wave Optics
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Which of the following methods can be used to measure the speed of light in water?

[10] Wave Optics
Chapter: [10] Wave Optics
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