PracBeeLogin

MHT CET 2023 11th May Evening Shift

MHT CET / 50 questions

2026Thu, May 11, 2023 9:30 AM50 PYQs
1Alternating Current
The a.c. source is connected to series LCR circuit. If voltage across \(R\) is \(40 \mathrm{~V}\), that across \(\mathrm{L}\) is \(80 \mathrm{~V}\) and that across \(\mathrm{C}\) is \(40 \mathrm{~V}\), then the e.m.f. '\(e\)' of a.c. source...
MCQ+1 / -02023
2Alternating Current
In a series LCR circuit, \(\mathrm{C}=2 \mu \mathrm{F}, \mathrm{L}=1 \mathrm{mH}\) and \(\mathrm{R}=10 \Omega\). The ratio of the energies stored in the inductor and the capacitor, when the maximum current flows in the circuit, is
MCQ+1 / -02023
3Alternating Current
The a.c. source of e.m.f. with instantaneous value '\(e\)' is given by \(e=200 \sin (50 t)\) volt. The r.m.s. value of current in a circuit of resistance \(50 \Omega\) is
MCQ+1 / -02023
4Atoms And Nuclei
According to Bohr's theory of hydrogen atom, the total energy of the electron in the \(\mathrm{n}^{\text {th }}\) stationary orbit is
MCQ+1 / -02023
5Atoms And Nuclei
Bohr model is applied to a particle of mass '\(\mathrm{m}\)' and charge '\(\mathrm{q}\)' moving in a plane under the influence of a transverse magnetic field '\(B\)'. The energy of the charged particle in the \(\mathrm{n}^{\text {th }}\) le...
MCQ+1 / -02023
6Atoms And Nuclei
The orbital magnetic moment associated with orbiting electron of charge '\(e\)' is
MCQ+1 / -02023
7Capacitor
Two spherical conductors of capacities \(3 \mu \mathrm{F}\) and \(2 \mu \mathrm{F}\) are charged to same potential having radii \(3 \mathrm{~cm}\) and \(2 \mathrm{~cm}\) respectively. If '\(\sigma_1\)' and '\(\sigma_2\)' represent surface d...
MCQ+1 / -02023
8Capacitor
Three identical capacitors of capacitance '\(\mathrm{C}\)' each are connected in series and this connection is connected in parallel with one more such identical capacitor. Then the capacitance of whole combination is
MCQ+1 / -02023
9Capacitor
A parallel plate capacitor is charged by a battery and battery remains connected. The dielectric slab of constant '\(\mathrm{K}\)' is inserted between the plates and then taken out. Then electric field between the plates
MCQ+1 / -02023
10Center Of Mass
A ball kept at \(20 \mathrm{~m}\) height falls freely in vertically downward direction and hits the ground. The coefficient of restitution is 0.4. Velocity of the ball first rebound is \(\left[\mathrm{g}=10 \mathrm{~ms}^{-2}\right]\)
MCQ+1 / -02023
11Circular Motion
In a conical pendulum the bob of mass '\(\mathrm{m}\)' moves in a horizontal circle of radius '\(r\)' with uniform speed '\(\mathrm{V}\)'. The string of length '\(\mathrm{L}\)' describes a cone of semi vertical angle '\(\theta\)'. The centr...
MCQ+1 / -02023
12Current Electricity
Two batteries, one of e.m.f. \(12 \mathrm{~V}\) and internal resistance \(2 \Omega\) and other of e.m.f. \(6 \mathrm{~V}\) and internal resistance \(1 \Omega\), are connected as shown in the figure. What will be the reading of the voltmeter...
MCQ+1 / -02023
13Current Electricity
Potential difference between the points P and Q is nearly
MCQ+1 / -02023
14Dual Nature Of Radiation
When a metallic surface is illuminated with radiation of wavelength '\(\lambda\)', the stopping potential is '\(\mathrm{V}\)'. If the same surface is illuminated with radiation of wavelength '\(2 \lambda\)', the stopping potential is '$$\le...
MCQ+1 / -02023
15Dual Nature Of Radiation
A metal surface of work function \(1 \cdot 13 \mathrm{~eV}\) is irradiated with light of wavelength \(310 \mathrm{~nm}\). The retarding potential required to stop the escape of photoelectrons is [Take $$\frac{\mathrm{hc}}{\mathrm{e}}=1240 \...
MCQ+1 / -02023
16Electromagnetic Induction
The magnetic flux through a circuit of resistance '\(R\)' changes by an amount \(\Delta \phi\) in the time \(\Delta t\). The total quantity of electric charge '\(Q\)' which passes during this time through any point of the circuit is
MCQ+1 / -02023
17Electromagnetic Induction
The self inductance '\(L\)' of a solenoid of length '\(l\)' and area of cross-section '\(\mathrm{A}\)', with a fixed number of turns '\(\mathrm{N}\)' increases as
MCQ+1 / -02023
18Electromagnetic Induction
A coil having effective area '\(A\)' is held with its plane normal to a magnitude field of induction '\(\mathrm{B}\)'. The magnetic induction is quickly reduced to \(25 \%\) of its initial value in 1 second. The e.m.f. induced in the coil (...
MCQ+1 / -02023
19Electromagnetic Waves
An electromagnetic wave, whose wave normal makes an angle of \(45^{\circ}\) with the vertical, travelling in air strikes a horizontal liquid surface. While travelling through the liquid it gets deviated through \(15^{\circ}\). What is the s...
MCQ+1 / -02023
20Electrostatics
An electron of mass '\(\mathrm{m}\)' and charge '\(\mathrm{q}\)' is accelerated from rest in a uniform electric field of strength '\(E\)'. The velocity acquired by the electron, when it travels a distance '\(\mathrm{L}\)', is
MCQ+1 / -02023
21Fluid Mechanics
A liquid drop of radius '\(R\)' is broken into '\(n\)' identical small droplets. The work done is [T = surface tension of the liquid]
MCQ+1 / -02023
22Fluid Mechanics
A fluid of density '\(\rho\)' is flowing through a uniform tube of diameter '\(d\)'. The coefficient of viscosity of the fluid is '\(\eta\)', then critical velocity of the fluid is
MCQ+1 / -02023
23Fluid Mechanics
What should be the diameter of a soap bubble, in order that the excess pressure inside it is \(25.6 \mathrm{~Nm}^{-2}\) ? [surface tension of soap solution \(\left.=3 \cdot 2 \times 10^{-2} \mathrm{~Nm}^{-2}\right]\)
MCQ+1 / -02023
24Gravitation
The radius of the orbit of a geostationary satellite is (mean radius of earth is '\(R\)', angular velocity about own axis is '\(\omega\)' and acceleration due to gravity on earth's surface is '\(g\)')
MCQ+1 / -02023
25Gravitation
The ratio of energy required to raise a satellite to a height '\(h\)' above the earth's surface to that required to put it into the orbit at the same height is (\(\mathrm{R}=\) radius of earth)
MCQ+1 / -02023
26Heat And Thermodynamics
For a gas, \(\frac{\mathrm{R}}{\mathrm{C}_{\mathrm{v}}}=0 \cdot 4\), where \(\mathrm{R}\) is universal gas constant and \(\mathrm{C}_{\mathrm{v}}\) is molar specific heat at constant volume. The gas is made up of molecules which are
MCQ+1 / -02023
27Heat And Thermodynamics
Two bodies \(\mathrm{A}\) and \(\mathrm{B}\) at temperatures '\(\mathrm{T}_1\)' \(\mathrm{K}\) and '\(\mathrm{T}_2\)' \(\mathrm{K}\) respectively have the same dimensions. Their emissivities are in the ratio \(1: 3\). If they radiate the sa...
MCQ+1 / -02023
28Heat And Thermodynamics
If temperature of gas molecules is raised from \(127^{\circ} \mathrm{C}\) to \(527^{\circ} \mathrm{C}\), the ratio of r.m.s. speed of the molecules is respectively
MCQ+1 / -02023
29Heat And Thermodynamics
According to Boyle's law, the product PV remains constant. The unit of \(\mathrm{PV}\) is same as that of
MCQ+1 / -02023
30Heat And Thermodynamics
The difference in length between two rods \(\mathrm{A}\) and \(\mathrm{B}\) is \(60 \mathrm{~cm}\) at all temperatures. If \(\alpha_{\mathrm{A}}=18 \times 10^{-6} /{ }^{\circ} \mathrm{C}\) and $$\beta_{\mathrm{B}}=27 \times 10^{-6} /{ }^{\c...
MCQ+1 / -02023
31Heat And Thermodynamics
An ideal gas expands adiabatically. \((\gamma=1 \cdot 5)\) To reduce the r.m.s. velocity of the molecules 3 times, the gas has to be expanded
MCQ+1 / -02023
32Motion
Two cars A and B start from a point at the same time in a straight line and their positions are represented by \(\mathrm{R}_{\mathrm{A}}(\mathrm{t})=\) at \(+\mathrm{bt}^2\) and $$\mathrm{R}_{\mathrm{B}}(\mathrm{t})=x \mathrm{t}-\mathrm{t}^...
MCQ+1 / -02023
33Moving Charges And Magnetism
Two long conductors separated by a distance '\(\mathrm{d}\)' carry currents \(I_1\) and \(I_2\) in the same direction. They exert a force '\(F\)' on each other. Now the current in one of them is increased to two times and its direction is r...
MCQ+1 / -02023
34Moving Charges And Magnetism
A circular arc of radius '\(r\)' carrying current '\(\mathrm{I}\)' subtends an angle \(\frac{\pi}{16}\) at its centre. The radius of a metal wire is uniform. The magnetic induction at the centre of circular arc is \(\left[\mu_0=\right.\) pe...
MCQ+1 / -02023
35Ray Optics
A double convex lens of focal length '\(F\)' is cut into two equal parts along the vertical axis. The focal length of each part will be
MCQ+1 / -02023
36Rotational Motion
Two bodies have their moments of inertia I and 2I respectively about their axis of rotation. If their kinetic energies of rotation are equal, their angular momenta will be in the ratio
MCQ+1 / -02023
37Rotational Motion
From a disc of mass '\(M\)' and radius '\(R\)', a circular hole of diameter '\(R\)' is cut whose rim passes through the centre. The moment of inertia of the remaining part of the disc about perpendicular axis passing through the centre is
MCQ+1 / -02023
38Semiconductor Devices And Logic Gates
In the study of transistor as an amplifier if \(\alpha=\frac{I_C}{I_E}=0.98\) and \(\beta=\frac{I_C}{I_B}=49\), where \(I_C, I_B\) and \(\mathrm{I}_{\mathrm{E}}\) are collector, base and emitter current respectively then $$\left(\frac{1}{\a...
MCQ+1 / -02023
39Semiconductor Devices And Logic Gates
If \(p\)-\(n\) junction diode is in forward bias then
MCQ+1 / -02023
40Semiconductor Devices And Logic Gates
In the digital circuit the inputs are as shown in figure. The Boolean expression for output \(\mathrm{Y}\) is
MCQ+1 / -02023
41Simple Harmonic Motion
The upper end of the spring is fixed and a mass '\(m\)' is attached to its lower end. When mass is slightly pulled down and released, it oscillates with time period 3 second. If mass '\(\mathrm{m}\)' is increased by \(1 \mathrm{~kg}\), the ...
MCQ+1 / -02023
42Wave Optics
A beam of light of wavelength \(600 \mathrm{~nm}\) from a distant source falls on a single slit \(1 \mathrm{~mm}\) wide and the resulting diffraction pattern is observed on a screen \(2 \mathrm{~m}\) away. The distance between the first dar...
MCQ+1 / -02023
43Wave Optics
In Young's double slit experiment, the fifth maximum with wavelength '\(\lambda_1\)' is at a distance '\(y_1\)' and the same maximum with wavelength '\(\lambda_2\)' is at a distance '\(y_2\)' measured from the central bright band. Then $$\f...
MCQ+1 / -02023
44Wave Optics
In Young's double slit experiment, green light is incident on two slits. The interference pattern is observed on a screen. Which one of the following changes would cause the observed fringes to be more closely spaced?
MCQ+1 / -02023
45Waves
A transverse wave in a medium is given by \(y=A \sin 2(\omega t-k x)\). It is found that the magnitude of the maximum velocity of particles in the medium is equal to that of the wave velocity. What is the value of \(A\) ?
MCQ+1 / -02023
46Waves
A rectangular block of mass '\(\mathrm{m}\)' and crosssectional area A, floats on a liquid of density '\(\rho\)'. It is given a small vertical displacement from equilibrium, it starts oscillating with frequency '\(n\)' equal to ( \(g=\) acc...
MCQ+1 / -02023
47Waves
A sound of frequency \(480 \mathrm{~Hz}\) is emitted from the stringed instrument. The velocity of sound in air is \(320 \mathrm{~m} / \mathrm{s}\). After completing 180 vibrations, the distance covered by a wave is
MCQ+1 / -02023
48Waves
A sonometer wire '\(A\)' of diameter '\(\mathrm{d}\)' under tension '\(T\)' having density '\(\rho_1\)' vibrates with fundamental frequency '\(n\)'. If we use another wire '\(B\)' which vibrates with same frequency under tension '$$2 \mathr...
MCQ+1 / -02023
49Waves
The path difference between two waves, represented by \(\mathrm{y}_1=\mathrm{a}_1 \sin \left(\omega \mathrm{t}-\frac{2 \pi \mathrm{x}}{\lambda}\right)\) and \(y_2=a_2 \cos \left(\omega t-\frac{2 \pi x}{\lambda}+\phi\right)\) is
MCQ+1 / -02023
50Waves
Two progressive waves are travelling towards each other with velocity \(50 \mathrm{~m} / \mathrm{s}\) and frequency \(200 \mathrm{~Hz}\). The distance between the two consecutive antinodes is
MCQ+1 / -02023

More 2026 MHT CET papers