MHT CET 2021 22th September Morning Shift
MHT CET / 150 questions
2026Wed, Sep 22, 2021 3:30 AM150 PYQs
1Alternating Current
An a.c. source of angular frequency '\(\omega\)' is fed across a resistor '\(R\)' and a capacitor '\(C\)' in series. The current registered is I. If now the frequency of source is changed to \(\frac{\omega}{3}\) (but maintaining the same vo...
MCQ+1 / -02021
2Alternating Current
In an a.c. circuit, a resistance R = 40 \(\Omega\) and an inductance 'L' are connected in series. If the phase angle between voltage and current is 45\(^\circ\), then the value of the inductive reactance is (tan 45\(^\circ\) = 1)
MCQ+1 / -02021
3Alternating Current
The frequency of the output signal of an LC oscillator circuit is '\(\mathrm{F}\)' Hz with a capacitance of 0.1 \(\mu \mathrm{F}\). If the value of the capacitor is increased to \(0.2~ \mu \mathrm{F}\), then the frequency of the output sign...
MCQ+1 / -02021
4Atoms And Nuclei
A nucleus breaks into two nuclear parts, which have their velocity ratio \(2: 1\). The ratio of their nuclear radii will be
MCQ+1 / -02021
5Capacitor
If the charge on the capacitor is increased by 2 C the energy stored in it increased by 21%. Total original charge on the capacitor is
MCQ+1 / -02021
6Capacitor
When the battery across the plates of a charged condenser is disconnected and a dielectric slab is introduced between its plates then the energy stored
MCQ+1 / -02021
7Capacitor
In the given figure potential at point 'A' is 900 volt and point 'B' is earthed. What will be the potential at point 'P' ?
MCQ+1 / -02021
8Circular Motion
If \(\omega_1\) is angular velocity of hour hand of clock and \(\omega_2\) is angular velocity of the earth, then the ratio \(\omega_1\) : \(\omega_2\) is
MCQ+1 / -02021
9Circular Motion
The angular displacement of body performing circular motion is given by \(\theta=5 \sin \frac{\pi t}{6}\). The angular velocity of the body at \(t=3\) second will be \(\left[\sin \frac{\pi}{2}=1, \cos \frac{\pi}{2}=0\right]\)
MCQ+1 / -02021
10Circular Motion
A body performing uniform circular motion of radius 'R' has frequency 'n'. It centripetal acceleration is
MCQ+1 / -02021
11Current Electricity
In a wheatstone's bridge, three resistances \(\mathrm{P}, \mathrm{Q}\) and \(\mathrm{R}\) are connected in the three arms and the fourth arm is formed by two resistances \(S_1\) and \(S_2\) connected in parallel. The condition for the bridg...
MCQ+1 / -02021
12Current Electricity
If a current flowing in a coil is reduced to half of its initial value, the relation between the new energy \(\left(E_2\right)\) and the original energy \(\left(E_1\right)\) stored in the coil will be
MCQ+1 / -02021
13Current Electricity
The Kirchhoff's current law and voltage law are respectively based upon the conservation of
MCQ+1 / -02021
14Dual Nature Of Radiation
When a light of wavelength '\(\lambda\)' falls on the emitter of a photocells, maximum speed of emitted photoelectrons is '\(\mathrm{V}\)'. If the incident wavelength is changed to \(\frac{2 \lambda}{3}\), maximum speed of emitted photoelec...
MCQ+1 / -02021
15Dual Nature Of Radiation
Kinetic energy of a proton is equal to energy '\(E\)' of a photon. Let '\(\lambda_1\)' be the de-Broglie wavelength of proton and '\(\lambda_2\)' is the wavelength of photon. If \(\frac{\lambda_1}{\lambda_2} \alpha E^n\), then the value of ...
MCQ+1 / -02021
16Electromagnetic Induction
A circular coil of radius '\(R\)' has '\(N\)' turns of a wire. The coefficient of self induction of the coil will be ( \(\mu_0=\) permeability of free space)
MCQ+1 / -02021
17Electromagnetic Induction
A wire of length 1 m is moving at a speed of 2 m/s perpendicular homogenous magnetic field of 0.5 T. The ends of the wire are joined to resistance 6\(\Omega\). The rate at which work is being done to keep the wire moving at that speed is
MCQ+1 / -02021
18Electrostatics
A point charge \(\mathrm{Q}\) is placed at the centre of the line joining two equal point charges \(+\mathrm{q}\) and \(+\mathrm{q}\). The value of \(Q\) if the system of the charges is in equilibrium, is
MCQ+1 / -02021
19Fluid Mechanics
Water rises in a capillary tube of radius '\(r\)' up to a height '\(\mathrm{h}\)'. The mass of water in a capillary is '\(\mathrm{m}\)'. The mass of water that will rise in a capillary tube of radius \(\frac{'r'}{3}\) will be
MCQ+1 / -02021
20Fluid Mechanics
A drop of liquid of density '\(\rho\)' is floating half immersed in a liquid of density '\(d\)'. If '\(T\)' is the surface tension, then the diameter of the drop of the liquid is
MCQ+1 / -02021
21Gravitation
The mass of a planet is six times that of the earth. The radius of the planet is twice that of the earth. If the escape velocity from the earth is '\(V_e\)', then the escape velocity from the planet is
MCQ+1 / -02021
22Heat And Thermodynamics
The translational kinetic energy of the molecules of a gas at absolute temperature (T) can be doubled
MCQ+1 / -02021
23Heat And Thermodynamics
A polyatomic gas \((\gamma=4 / 3)\) is compressed to \(\left(\frac{1}{8}\right)^{\text {th }}\) of its volume adiabatically. If its initial pressure is \(\mathrm{P}_0\), its new pressure will be
MCQ+1 / -02021
24Heat And Thermodynamics
If the temperature of the sun is doubled, the rate of energy received by the earth will be increased by a factor
MCQ+1 / -02021
25Heat And Thermodynamics
Which of the following statements is true?
(\(\Delta \mathrm{U}=\) increase in internal energy, \(\mathrm{dW}=\) work done by the system)
(\(\Delta \mathrm{U}=\) increase in internal energy, \(\mathrm{dW}=\) work done by the system)
MCQ+1 / -02021
26Heat And Thermodynamics
Let '\(\mathrm{W}_1\)' be the work done in blowing a soap bubble of radius '\(r\)' from soap solution at room temperature. The soap solution is now heated and second soap bubble of radius '\(2 r\)' is blown from the heated soap solution. If...
MCQ+1 / -02021
27Heat And Thermodynamics
A cylindrical rod is having temperatures \(\theta_1\) and \(\theta_2\) at its ends. The rate of heat flow is '\(Q\)' \(\mathrm{J}{\mathrm{s}}^{-1}\). All the linear dimensions of the rod are doubled by keeping the temperatures constant. Wha...
MCQ+1 / -02021
28Heat And Thermodynamics
For a gas molecule with 6 degrees of freedom, which one of the following relation between gas constant '\(\mathrm{R}\)' and molar specific heat '\(\mathrm{C}_{\mathrm{v}}\)' is correct?
MCQ+1 / -02021
29Magnetism And Matter
The permeability of a metal is \(0.1256 ~\mathrm{TmA}^{-1}\). Its relative permeability will be \(\mathrm{\left( {{{{\mu _0}} \over {4\pi }} = {{10}^{ - 7}}\,SI\,unit} \right)}\) (\(\pi=3.14\))
MCQ+1 / -02021
30Moving Charges And Magnetism
When a battery is connected to the two ends of a diagonal of a square conductor frame of side '\(a\)', the magnitude of magnetic field at the centre will be ( \(\mu_0=\) permeability of free space)
MCQ+1 / -02021
31Moving Charges And Magnetism
Two concentric coplanar circular loops of radii '\(r{ }_1\)' and '\(r_2\)' respectively carry currents '\(i_1\)' and '\(\mathrm{i}_2\)' in opposite directions (one clockwise and other anticlockwise). The magnetic induction at the centre of ...
MCQ+1 / -02021
32Moving Charges And Magnetism
Assuming the atom is in the ground state, the expression for the magnetic field at a point nucleus in hydrogen atom due to circular motion of electron is [\(\mu_0=\) permeability of free space, \(\mathrm{m}=\) mass of electron, $$\epsilon_0...
MCQ+1 / -02021
33Ray Optics
A biconvex lens \(\left(R_1=R_2=30 \mathrm{~cm}\right)\) has focal length equal to the focal length of concave mirror. The radius of curvature of concave mirror is [Refractive index of material of lens \(=1.6\) ]
MCQ+1 / -02021
34Ray Optics
The critical angle for light going from medium A into medium B is \(\theta\). The speed of light in the medium A is \(\mathrm{V}_{\mathrm{A}}\). What is the speed of light in the medium \(\mathrm{B}\) ?
MCQ+1 / -02021
35Rotational Motion
Two rotating bodies \(P\) and \(Q\) of masses '\(\mathrm{m}\)' and '\(2 \mathrm{~m}\)' with moment of inertia \(I_P\) and \(I_Q\left(I_Q > I_P\right)\) have equal Kinetic energy of rotation. If \(\mathrm{L}_P\) and \(\mathrm{L}_Q\) be their...
MCQ+1 / -02021
36Rotational Motion
A solid sphere of mass '\(M\)' and radius '\(R\)' is rotating about its diameter. A solid cylinder of same mass and same radius is also rotating about its geometrical axis with an angular speet twice that of the sphere. The ratio of the kin...
MCQ+1 / -02021
37Semiconductor Devices And Logic Gates
A logic gate which gives output 'HIGH' only when its two input terminals are at different logic levels with respect to each other is
MCQ+1 / -02021
38Semiconductor Devices And Logic Gates
Choose the FALSE statement from the following.
MCQ+1 / -02021
39Semiconductor Devices And Logic Gates
In an n-p-n transistor 200 electrons enter the emitter in 10\(^{-8}\) second. If 1% electrons are lost in the base, then the current that enters the emitter and the current amplification factor are respectively [e = 1.6 \(\times\) 10$$^{-19...
MCQ+1 / -02021
40Simple Harmonic Motion
A mass \(0.4 \mathrm{~kg}\) performs S.H.M. with a frequency \(\frac{16}{\pi} \mathrm{Hz}\). At a certain displacement it has kinetic energy \(2 \mathrm{~J}\) and potential energy \(1.2 \mathrm{~J}\). The amplitude of oscillation is
MCQ+1 / -02021
41Simple Harmonic Motion
If the amplitude of linear S.H.M. is decreased then
MCQ+1 / -02021
42Wave Optics
In Young's double slit experiment, the \(10^{\text {th }}\) maximum of wavelength '\(\lambda_1\)' is at a distance of '\(Y_1\)' from the central maximum. When the wavelength of the source is changed to '\(\lambda_2\)', \(5^{th}\) maximum is...
MCQ+1 / -02021
43Wave Optics
A single slit diffraction pattern is formed with white light. For what wavelength of light the \(3^{\text {rd }}\) secondary maximum in diffraction pattern coincides with the \(2^{\text {nd }}\) secondary maximum in the pattern of red light...
MCQ+1 / -02021
44Wave Optics
The width of central maximum of a diffraction pattern on a single slit does not depend upon
MCQ+1 / -02021
45Waves
A sound wave is travelling with a frequency of \(50 \mathrm{~Hz}\). The phase difference between the two points in the path of a wave is \(\frac{\pi}{3}\). The distance between those two points is (Velocity of sound in air $$=330 \mathrm{~m...
MCQ+1 / -02021
46Waves
A transverse wave given by \(y=2 \sin (0.01 x+30 t)\) moves on a stretched string from one end to another end in 0.5 second. If '\(x\)' and '\(y\)' are in \(\mathrm{cm}\) and '\(\mathrm{t}\)' is in second, then the length of the string is
MCQ+1 / -02021
47Waves
A pipe open at both ends of length 1.5 m is dipped in water such that the second overtone of vibrating air column is resonating with a tuning fork of frequency 330 Hz. If speed of sound in air is 330 m/s then the length of the pipe immersed...
MCQ+1 / -02021
48Waves
A sonometer wire resonates with a given tuning fork forming standing waves with five antinodes between the two bridges when a mass of \(9 \mathrm{~kg}\) is suspended from the wire. When this mass is replaced by a mass \(\mathrm{M}\), the wi...
MCQ+1 / -02021
49Work Energy And Power
A car of mass '\(m\)' moving with velocity '\(u\)' on a straight road in a straight line, doubles its velocity in time t. The power delivered by the engine of a car for doubling the velocity is
MCQ+1 / -02021
50Work Energy And Power
A bob of a simple pendulum of mass 'm' is displaced through 90\(^\circ\) from mean position and released. When the bob is at lowest position, the tension in the string is
MCQ+1 / -02021
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