A radiation blackbody has the shape of a sphere of radius r.r. Its surface is at a temperature TT (in Kelvin). If the temperature is doubled and the radius is halved, the total rate of radiation emitted from the body:
1. increases by a factor of 44
2. increases by a factor of 22
3. remains unchanged
4. decreases by a factor of 22 
Subtopic:  Stefan-Boltzmann Law |
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Ice (0∘0∘C) is kept in an insulated reservoir with an opening that is covered at the top with a cloth. When a black cloth (B)(B) is placed at the top, the ice melts at 22 g/33 min. When an ordinary cloth (G)(G) is placed, the rate of melting is 22 g /55 min. The emissivity of GG is: (assuming that BB behaves as a blackbody)
                       
1. 0.60.6 2. 0.30.3
3. 0.40.4 4. 0.50.5
Subtopic:  Stefan-Boltzmann Law |
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A solid at temperature T1T1, is kept in an evacuated chamber at temperature T2>T1T2>T1. The rate of increase of temperature of the body is proportional to:
1. T2−T1T2−T1
2. T22−T21T22−T21
3. T32−T31T32−T31 
4. T42−T41T42−T41

Subtopic:  Stefan-Boltzmann Law |
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A black body at 227∘ C227∘ C radiates heat at the rate of 7 cal−cm−2s−17 cal−cm−2s−1.  At a temperature of 727∘ C727∘ C, the rate of heat radiated in the same units will be:
1. 6060
2. 5050
3. 112112
4. 8080

Subtopic:  Stefan-Boltzmann Law |
 86%
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AIPMT - 2009
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