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MAH-MHT CET (PCM/PCB) entrance exam Question Bank Solutions for Physics

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Physics
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Two spherical black bodies of radius r1 and r2 with surface temperature T1 and T2 respectively, radiate same power, then r1 : r2 is ______.

[3] Kinetic Theory of Gases and Radiation
Chapter: [3] Kinetic Theory of Gases and Radiation
Concept: undefined >> undefined

The speed at which the flow of water in a long cylindrical pipe of diameter 6 cm becomes turbulent is ______

(The viscosity of water = 1 x 10-3 Pa.s and for the onset of turbulent flow in a long cylindrical pipe, Reynolds number = 3000) 

[2] Mechanical Properties of Fluids
Chapter: [2] Mechanical Properties of Fluids
Concept: undefined >> undefined

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Reynold's number is less for ______. 

[2] Mechanical Properties of Fluids
Chapter: [2] Mechanical Properties of Fluids
Concept: undefined >> undefined

The radiation energy density per unit wavelength at a temperature T has a maximum at a wavelength `lambda_0.` At temperature 4T, it will have a maximum at a wavelength ____________.

[3] Kinetic Theory of Gases and Radiation
Chapter: [3] Kinetic Theory of Gases and Radiation
Concept: undefined >> undefined

A blackbody emits radiations of maximum intensity at a wavelength of 6000 A, when the temperature of the body is 1227 °C. If the temperature of the body is increased by 2227 °C, the maximum intensity of emitted radiation would be observed at ______.

[3] Kinetic Theory of Gases and Radiation
Chapter: [3] Kinetic Theory of Gases and Radiation
Concept: undefined >> undefined

A blackbody is at a temperature of 5760 K. The energy of radiation emitted by the body at wavelength 250 nm is U1, at wavelength 500 nm is U2 and that at 1000 nm is U3. Wien's constant, b = 2.88 x 106 nmK. Which of the following is correct?

[3] Kinetic Theory of Gases and Radiation
Chapter: [3] Kinetic Theory of Gases and Radiation
Concept: undefined >> undefined

At a fixed wavelength, the `"E"_lambda` - T graph for an ideal blackbody is ____________.

[3] Kinetic Theory of Gases and Radiation
Chapter: [3] Kinetic Theory of Gases and Radiation
Concept: undefined >> undefined

Water is flowing through a tube of diameter 1 cm at 6 cm/s. Taking `eta` = 10-2 poise the flow of liquid and Reynold's number are ____________.

[2] Mechanical Properties of Fluids
Chapter: [2] Mechanical Properties of Fluids
Concept: undefined >> undefined

The maximum average velocity of water in a tube of diameter 4 cm so that the flow becomes laminar is [Viscosity of water is 10-3 N m-1, take Rn = 200] ____________.

[2] Mechanical Properties of Fluids
Chapter: [2] Mechanical Properties of Fluids
Concept: undefined >> undefined

The colour of a star depends upon its ____________.

[3] Kinetic Theory of Gases and Radiation
Chapter: [3] Kinetic Theory of Gases and Radiation
Concept: undefined >> undefined

A solid sphere rolls down from top of inclined plane, 7m high, without slipping. Its linear speed at the foot of plane is ______. (g = 10 m/s2)

[1] Rotational Dynamics
Chapter: [1] Rotational Dynamics
Concept: undefined >> undefined

A solid sphere of mass 1 kg and radius 10 cm rolls without slipping on a horizontal surface, with velocity of 10 emfs. The total kinetic energy of sphere is ______.

[1] Rotational Dynamics
Chapter: [1] Rotational Dynamics
Concept: undefined >> undefined

The Reynold's number for a liquid flow in a tube does NOT depend on ______.

[2] Mechanical Properties of Fluids
Chapter: [2] Mechanical Properties of Fluids
Concept: undefined >> undefined

A man is supported on a frictionless horizontal surface. It is attached to a string and rotates about a fixed centre at an angular velocity `omega`. The tension in the strings is F. If the length of string and angular velocity are doubled, the tension in string is now ____________.

[1] Rotational Dynamics
Chapter: [1] Rotational Dynamics
Concept: undefined >> undefined

About black body radiation, which one of the following is 'WRONG' statement?

[3] Kinetic Theory of Gases and Radiation
Chapter: [3] Kinetic Theory of Gases and Radiation
Concept: undefined >> undefined

The power (P) is supplied to rotating body having moment of inertia 'I' and angular acceleration 'α'. Its instantaneous angular velocity is ______.

[1] Rotational Dynamics
Chapter: [1] Rotational Dynamics
Concept: undefined >> undefined

A ring and a disc roll on horizontal surface without slipping with same linear velocity. If both have same mass and total kinetic energy of the ring is 4 J then total kinetic energy of the disc is ______.

[1] Rotational Dynamics
Chapter: [1] Rotational Dynamics
Concept: undefined >> undefined

A solid sphere is rolling on a frictionless surface with translational velocity 'V'. It climbs the inclined plane from 'A' to 'B' and then moves away from Bon the smooth horizontal surface. The value of 'V' should be ______.

[1] Rotational Dynamics
Chapter: [1] Rotational Dynamics
Concept: undefined >> undefined

The angular velocity of minute hand of a clock in degree per second is ______.

[1] Rotational Dynamics
Chapter: [1] Rotational Dynamics
Concept: undefined >> undefined

Solid spherical ball is rolling on a frictionless horizontal plane surface about is axis of symmetry. The ratio of rotational kinetic energy of the ball to its total kinetic energy is ______.

[1] Rotational Dynamics
Chapter: [1] Rotational Dynamics
Concept: undefined >> undefined
< prev  1921 to 1940 of 2019  next > 
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