AIEEE 2004
JEE Main / 221 questions
2026Sat, Apr 24, 2004 9:30 AM221 PYQs
1Motion In A Straight Line
An automobile travelling with speed of 60 km/h, can brake to stop within a distance of 20 m.
If the car is going twice as fast, i.e 120 km/h, the stopping distance will be
If the car is going twice as fast, i.e 120 km/h, the stopping distance will be
MCQ+4 / -12004
2Properties Of Matter
Spherical balls of radius \(R\) are falling in a viscous fluid of viscosity \(\eta\) with a velocity \(v.\) The retarding viscous force acting on the spherical ball is
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3Properties Of Matter
If two soap bubbles of different radii are connected by a tube
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4Properties Of Matter
A wire fixed at the upper end stretches by length \(l\) by applying a force \(F.\) The work done in stretching is
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5Rotational Motion
A solid sphere is rotating in free space. If the radius of the sphere is increased keeping mass same which on of the following will not be affected ?
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6Rotational Motion
One solid sphere \(A\) and another hollow sphere \(B\) are of same mass and same outer radii. Their moment of inertia about their diameters are respectively \({I_A}\) and \({I_B}\) such that
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7Simple Harmonic Motion
The total energy of particle, executing simple harmonic motion is
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8Simple Harmonic Motion
The bob of a simple pendulum executes simple harmonic motion in water with a period \(t,\) while the period of oscillation of the bob is \({t_0}\) in air. Neglecting frictional force of water and given that the density of the bob is $$\left...
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9Simple Harmonic Motion
A particle of mass \(m\) is attached to a spring (of spring constant \(k\)) and has a natural angular frequency \({\omega _0}.\) An external force \(F(t)\) proportional to \(\cos \,\omega t\left( {\omega \ne {\omega _0}} \right)\) is appli...
MCQ+4 / -12004
10Simple Harmonic Motion
In forced oscillation of a particle the amplitude is maximum for a frequency \({\omega _1}\) of the force while the energy is maximum for a frequency \({\omega _2}\) of the force; then
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11Simple Harmonic Motion
A particle at the end of a spring executes \(S.H.M\) with a period \({t_1}\). While the corresponding period for another spring is \({t_2}\). If the period of oscillation with the two springs in series is \(T\) then
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12Units And Measurements
Which one of the following represents the correct dimensions of the coefficient of viscosity?
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13Vector Algebra
If \(\overrightarrow A \times \overrightarrow B = \overrightarrow B \times \overrightarrow A\), then the angle beetween A and B is
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14Wave Optics
The angle of incidence at which reflected light is totally polarized for reflection from air to glass (refractive index \(n\)) is :
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15Wave Optics
The maximum number of possible interference maxima for slit-separation equal to twice the wavelength in Young's double-slit experiment, is :
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16Waves
The displacement \(y\) of a particle in a medium can be expressed as, \(y = {10^{ - 6}}\,\sin\) \(\left( {100t + 20x + {\pi \over 4}} \right)\) \(m\) where \(t\) is in second and \(x\) in meter. The speed of the wave is
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17Work Power And Energy
A force \(\overrightarrow F = \left( {5\overrightarrow i + 3\overrightarrow j + 2\overrightarrow k } \right)N\) is applied over a particle which displaces it from its origin to the point $$\overrightarrow r = \left( {2\overrightarrow i ...
MCQ+4 / -12004
18Work Power And Energy
A uniform chain of length \(2\) \(m\) is kept on a table such that a length of \(60\) \(cm\) hangs freely from the edge of the table. The total mass of the chain is \(4\) \(kg.\) What is the work done in pulling the entire chain on the tab...
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19Work Power And Energy
A particle is acted upon by a force of constant magnitude which is always perpendicular to the velocity of the particle, the motion of the particles takes place in a plane. It follows that
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20Work Power And Energy
A body of mass \(' m ',\) acceleration uniformly from rest to \('{v_1}'\) in time \({T}\). The instantaneous power delivered to the body as a function of time is given by
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21Work Power And Energy
A particle moves in a straight line with retardation proportional to its displacement. Its loss of kinetic energy for any displacement \(x\) is proportional to
MCQ+4 / -12004
