One kilogram of ice at \(0^\circ \text{C}\) is mixed with one kilogram of water at \(80^\circ \text{C}.\) The final temperature of the mixture will be: (Take: Specific heat of water = \(4200~\text{J kg}^{-1}\text{K}^{-1},\) latent heat of ice\(=336~\text{kJ kg}^{-1}\))

1. \(0^\circ \text{C}\) 2. \(50^\circ \text{C}\)
3. \(40^\circ \text{C}\) 4. \(60^\circ \text{C}\)

Subtopic:  Calorimetry |
 75%
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80 g of water at 30°C is poured on a large block
 of ice at 0°C. The mass of ice that melts is 

1.  15 g

2.  30 g

3.  50 g

4  60 g

Subtopic:  Calorimetry |
 85%
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A black body at temperature 300K radiates heat at the rate E. If its temperature is increased by 600K, the rate of radiation will increase to -

1.  16E

2.  64E

3.  81E

4.  256E

Subtopic:  Radiation |
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Heat capacity is equal to the product of:

1.  mass and gas constant

2.  mass and specific heat

3.  latent heat and volume of water

4.  mass and Avogadro number

 

Subtopic:  Calorimetry |
 94%
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When a block of iron floats in Hg at 0°C, a fraction K1 of its volumen= is submerged, while at temperature of 60°C a fraction K2 is seen to be submersed. If the coefficient of volume expansion of iron is γFe and that of mercury is γHg, then the ratio K1K2 can be expressed as:

(1) 1+60γFe1+60γHg

(2) 1-60γFe1+60γHg

(3) 1+60γFe1-60γHg

(4) 1+60γHe1-60γFe

Subtopic:  Thermal Expansion |
 55%
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If αc and αf denote the numerical values of coefficient of linear 
expansion of a solid, expressed  per °C and per °F respectively,
 then

1.  αc > αf  

2.  αf > αc 

3.  αf = αc  

4.  αf + αc = 0

Subtopic:  Thermal Expansion |
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A pendulum clock runs fast by 5 sec. per day at 20°C and goes slow by 10 sec. per day at 35°C. It shows correct time at a temperature of  

1.  27.5°C 

2.  25°C  

3.  30°C  

4.  33°C

 

Subtopic:  Thermal Expansion |
 68%
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Two identical bodies are made of a material whose heat capacity increases with temperature. One of these is at \(100^{\circ} \mathrm{C}\), while the other one is at \(0^{\circ} \mathrm{C}\). If the two bodies are brought into contact, then assuming no heat loss, the final common temperature will be:

1. \(50^{\circ} \mathrm{C}\)
2.  more than \(50^{\circ} \mathrm{C}\) 
3. less than \(50^{\circ} \mathrm{C}\) but greater than \(0^{\circ} \mathrm{C}\) 
4. \(0^{\circ} \mathrm{C}\)

Subtopic:  Calorimetry |
 66%
From NCERT
NEET - 2016
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A piece of ice falls from a height h so that it melts completely. Only one-quarter of the heat produced is absorbed by the ice and all energy of ice gets converted into heat during its fall. The value of h is [Latent heat of ice is 3.4x105J/Kg and g=10N/Kg]

1. 544 km

2. 136 km

3.  68  km

4.  34 km

Subtopic:  Calorimetry |
 79%
From NCERT
NEET - 2016
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The value of the coefficient of volume expansion of glycerin is \(5\times10^{-4}\) K-1. The fractional change in the density of glycerin for a temperature increase of \(40^\circ \mathrm{C}\) will be:

1. \(0.015\) 2. \(0.020\)
3. \(0.025\) 4. \(0.010\)
Subtopic:  Thermal Expansion |
 83%
From NCERT
NEET - 2015
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