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The quantity \[\frac{pV}{kT}\] represents

[12] Kinetic Theory
Chapter: [12] Kinetic Theory
Concept: undefined >> undefined

There is some liquid in a closed bottle. The amount of liquid is continuously decreasing. The vapour in the remaining part

[12] Kinetic Theory
Chapter: [12] Kinetic Theory
Concept: undefined >> undefined

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There is some liquid in a closed bottle. The amount of liquid remains constant as time passes. The vapour in the remaining part

[12] Kinetic Theory
Chapter: [12] Kinetic Theory
Concept: undefined >> undefined

Vapour is injected at a uniform rate in a closed vessel which was initially evacuated. The pressure in the vessel

[12] Kinetic Theory
Chapter: [12] Kinetic Theory
Concept: undefined >> undefined

A vessel A has volume V and a vessel B has volume 2V. Both contain some water which has a constant volume. The pressure in the space above water is pa for vessel A and pbfor vessel B.

[12] Kinetic Theory
Chapter: [12] Kinetic Theory
Concept: undefined >> undefined

Find the average magnitude of linear momentum of a helium molecule in a sample of helium gas at 0°C. Mass of a helium molecule = 6.64 × 10−27 kg and Boltzmann constant = 1.38 × 10−23 J K−1.

[12] Kinetic Theory
Chapter: [12] Kinetic Theory
Concept: undefined >> undefined

When we stir a liquid vigorously, it becomes warm. Is it a reversible process?

[11] Thermodynamics
Chapter: [11] Thermodynamics
Concept: undefined >> undefined

A glass tube, sealed at both ends, is 100 cm long. It lies horizontally with the middle 10 cm containing mercury. The two ends of the tube contain air at 27°C and at a pressure 76 cm of mercury. The air column on one side is maintained at 0°C and the other side is maintained at 127°C. Calculate the length of the air column on the cooler side. Neglect the changes in the volume of mercury and of the glass.

[12] Kinetic Theory
Chapter: [12] Kinetic Theory
Concept: undefined >> undefined

On a hot summer day we want to cool our room by opening the refrigerator door and closing all the windows and doors. Will the process work?

[10] Thermal Properties of Matter
Chapter: [10] Thermal Properties of Matter
Concept: undefined >> undefined

On a cold winter night you are asked to sit on a chair. Would you like to choose a metal chair or a wooden chair? Both are kept in the same lawn and are at the same temperature.

[10] Thermal Properties of Matter
Chapter: [10] Thermal Properties of Matter
Concept: undefined >> undefined

An ordinary electric fan does not cool the air, still it gives comfort in summer. Explain

[10] Thermal Properties of Matter
Chapter: [10] Thermal Properties of Matter
Concept: undefined >> undefined

The temperature of the atmosphere at a high altitude is around 500°C. Yet an animal there would freeze to death and not boil. Explain.

[10] Thermal Properties of Matter
Chapter: [10] Thermal Properties of Matter
Concept: undefined >> undefined

Figure shows a cylindrical tube of length 30 cm which is partitioned by a tight-fitting separator. The separator is very weakly conducting and can freely slide along the tube. Ideal gases are filled in the two parts of the vessel. In the beginning, the temperatures in the parts A and B are 400 K and 100 K respectively. The separator slides to a momentary equilibrium position shown in the figure. Find the final equilibrium position of the separator, reached after a long time.

[12] Kinetic Theory
Chapter: [12] Kinetic Theory
Concept: undefined >> undefined

Newton's law of cooling is a special case of

[10] Thermal Properties of Matter
Chapter: [10] Thermal Properties of Matter
Concept: undefined >> undefined

A body cools down from 65°C to 60°C in minutes. It will cool down from 60°C to 55°C in

[10] Thermal Properties of Matter
Chapter: [10] Thermal Properties of Matter
Concept: undefined >> undefined

Figure shows a large closed cylindrical tank containing water. Initially the air trapped above the water surface has a height h0 and pressure 2p0 where p0 is the atmospheric pressure. There is a hole in the wall of the tank at a depth h1 below the top from which water comes out. A long vertical tube is connected as shown. (a) Find the height h2 of the water in the long tube above the top initially. (b) Find the speed with which water comes out of the hole. (c) Find the height of the water in the long tube above the top when the water stops coming out of the hole.

[12] Kinetic Theory
Chapter: [12] Kinetic Theory
Concept: undefined >> undefined

During inelastic collision between two bodies, which of the following quantities always remain conserved?

[5] Work, Energy and Power
Chapter: [5] Work, Energy and Power
Concept: undefined >> undefined

Two identical ball bearings in contact with each other and resting on a frictionless table are hit head-on by another ball bearing of the same mass moving initially with a speed V as shown in figure.

If the collision is elastic, which of the following (Figure) is a possible result after collision?

[5] Work, Energy and Power
Chapter: [5] Work, Energy and Power
Concept: undefined >> undefined

A cricket ball of mass 150 g moving with a speed of 126 km/h hits at the middle of the bat, held firmly at its position by the batsman. The ball moves straight back to the bowler after hitting the bat. Assuming that collision between ball and bat is completely elastic and the two remain in contact for 0.001s, the force that the batsman had to apply to hold the bat firmly at its place would be ______.

[5] Work, Energy and Power
Chapter: [5] Work, Energy and Power
Concept: undefined >> undefined

Two blocks M1 and M2 having equal mass are free to move on a horizontal frictionless surface. M2 is attached to a massless spring as shown in figure. Iniially M2 is at rest and M1 is moving toward M2 with speed v and collides head-on with M2.

  1. While spring is fully compressed all the KE of M1 is stored as PE of spring.
  2. While spring is fully compressed the system momentum is not conserved, though final momentum is equal to initial momentum.
  3. If spring is massless, the final state of the M1 is state of rest.
  4. If the surface on which blocks are moving has friction, then collision cannot be elastic.
[5] Work, Energy and Power
Chapter: [5] Work, Energy and Power
Concept: undefined >> undefined
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CBSE Science (English Medium) कक्षा ११ Question Bank Solutions
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Biology
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Chemistry
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Computer Science (C++)
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Computer Science (Python)
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ English Core
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ English Elective - NCERT
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Entrepreneurship
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Geography
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Hindi (Core)
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Hindi (Elective)
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ History
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Mathematics
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Physics
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Political Science
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Psychology
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Sanskrit (Core)
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Sanskrit (Elective)
Question Bank Solutions for CBSE Science (English Medium) कक्षा ११ Sociology
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