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

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A rigid body is rotating with angular velocity 'ω' about an axis of rotation. Let 'v' be the linear velocity of particle which is at perpendicular distance 'r' from the axis of rotation. Then the relation 'v = rω' implies that ______.

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

The potential difference (VA - VB) between the points A and B in the given figure is ______.

[9] Current Electricity
Chapter: [9] Current Electricity
Concept: undefined >> undefined

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What determines the conventional direction of the product of current and resistance while applying the Kirchhoff's law?

[9] Current Electricity
Chapter: [9] Current Electricity
Concept: undefined >> undefined

Angular displacement (θ) of a flywheel varies with time as θ = at + bt2 + ct3 then angular acceleration is given by ____________.

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

If a cyclist doubles his speed while negotiating a curve, how does the tendency to overturn vary? 

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

A junction diode of internal resistance 20 Ω is used for half-wave rectification. If the applied voltage has a peak value of 50 V and load resistance is 800 Ω, then d.c. value of current is ____________.

[16] Semiconductor Devices
Chapter: [16] Semiconductor Devices
Concept: undefined >> undefined

An engine requires 5 seconds to go from a speed of 600 r.p.m. to 1200 r.p.m. How many revolutions does it make in this period?

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

The maximum efficiency of full-wave rectifier is ____________.

[16] Semiconductor Devices
Chapter: [16] Semiconductor Devices
Concept: undefined >> undefined

A particle performs uniform circular motion in a horizontal plane. The radius of the circle is 10 cm. If the centripetal force F is kept constant but the angular velocity is halved, the new radius of the path will be ______.

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

Gauss' law helps in ____________.

[8] Electrostatics
Chapter: [8] Electrostatics
Concept: undefined >> undefined

In figure, the input is across the terminals A and C and the output is across B and D. Then, the output is ____________.

[16] Semiconductor Devices
Chapter: [16] Semiconductor Devices
Concept: undefined >> undefined

What is the value of output voltage V0 in the given circuit?

[16] Semiconductor Devices
Chapter: [16] Semiconductor Devices
Concept: undefined >> undefined

A coil of 25 turns is pulled in 0.05 s between the poles of a magnet, where its area includes `21 xx106-6 "Wb"  "to" 1 xx 10^-6  "Wb"`. The average e.m.f. is ______.

[12] Electromagnetic Induction
Chapter: [12] Electromagnetic Induction
Concept: undefined >> undefined

A body of mass m is performing a UCM in a circle of radius r with speed v. The work done by the centripetal force in moving it through `(2/3)`rd of the circular path is ______.

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

Which of the following is the dimensional formula for electric polarisation?

[9] Current Electricity
Chapter: [9] Current Electricity
Concept: undefined >> undefined

A body of M.I. 2 kg m2 rotates with an angular velocity of 20 rad/s. When an external torque of 0.5 N m acts on it in the opposite direction, the number of revolutions it makes before it comes to rest is ____________.

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

In a coil of resistance 150 `Omega`, a current is induced by changing the magnetic flux through it as shown in the figure. The magnitude of change in flux through the coil is ____________.

[12] Electromagnetic Induction
Chapter: [12] Electromagnetic Induction
Concept: undefined >> undefined

In negotiating curve on a flat road, a cyclist leans inwards by an angle e with the vertical in order to ______.

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

A body is moving along a circular track of radius 100 m with velocity 20 m/s. Its tangential acceleration is 3 m/s2 then its resultant accelaration will be ______.

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

A metal sphere of radius 1 m is charged with 10-2 C in air. Its bulk modulus is `10^11/(4pi^2) "N"/"m"^2`. The volume strain in the sphere is (ε0 = permittivity of free space.)

[8] Electrostatics
Chapter: [8] Electrostatics
Concept: undefined >> undefined
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