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MHT CET 2024 15th May Morning Shift

MHT CET / 150 questions

2026Wed, May 15, 2024 3:30 AM150 PYQs
1Alternating Current
Alternating current of peak value $\left(\frac{2}{\pi}\right)$ A flows through the primary coil of a transformer. The coefficient of mutual inductance between primary and secondary coils is 1 H . The peak e.m.f. induced in secondary coil (F...
MCQ+1 / -02024
2Alternating Current
When a coil is connected to a d.c. source of e.m.f. 12 volt; then the current of 4 A flows in it . If the same coil is connected to a 12 volt, 50 Hz a.c. source, then the current flowing in it is 2.4 A . Then self-inductance of the coil wil...
MCQ+1 / -02024
3Alternating Current
A series $\mathrm{L}-\mathrm{C}-\mathrm{R}$ circuit containing a resistance ' $R$ ' has angular frequency ' $\omega$ '. At resonance the voltage across resistance and inductor are ' $V_R$ ' and ' $\mathrm{V}_{\mathrm{L}}$ ' respectively, th...
MCQ+1 / -02024
4Alternating Current
In an a.c. circuit, the reactance of a coil is $\sqrt{3}$ times its resistance. The phase difference between the voltage across the coil to the current through the coil will be
MCQ+1 / -02024
5Atoms And Nuclei
The ratio of the areas of the electron orbits for the second excited state to the first excited state for the hydrogen atom is
MCQ+1 / -02024
6Atoms And Nuclei
A radioactive substance has half-life of 60 minute. During 3 hour, the amount of substance decayed would be
MCQ+1 / -02024
7Capacitor
Three condensers of capacities ' $\mathrm{C}_1$ ', ' $\mathrm{C}_2$ ', ' $\mathrm{C}_3$ ' are connected in series with a source of e.m.f. ' $V$ '. The potentials across the three condensers are in the ratio
MCQ+1 / -02024
8Current Electricity
A cell balances against a length of 150 cm on a potentiometer wire when it is shunted by a resistance of $5 \Omega$. But when it is shunted by a resistance of $10 \Omega$, then balancing length increases by 25 cm . The balancing length when...
MCQ+1 / -02024
9Current Electricity
A galvanometer has resistance $80 \Omega$ and it is shunted with resistance $20 \Omega$. If $20 \%$ of the main current flows through galvanometer, then what is the value of main current?
MCQ+1 / -02024
10Dual Nature Of Radiation
Electrons are accelerated through a potential difference of 16 kV . If the potential difference is increased to 64 kV , then de-Broglie wavelength associated with electron will
MCQ+1 / -02024
11Dual Nature Of Radiation
Two photons having energies twice and thrice the work function of metal are incident one after another on the metal surface. Then the ratio of maximum velocities of the photoelectrons emitted in the two cases is respectively
MCQ+1 / -02024
12Electromagnetic Induction
When the number of turns in a coil are made 3 times without any change in the length of the coil, its self inductance becomes
MCQ+1 / -02024
13Electromagnetic Induction
Two solenoids of equal number of turns have their lengths as well as radii in the same ratio $1: 3$. The ratio of their self inductance will be
MCQ+1 / -02024
14Electrostatics
Consider a long uniformly charged cylinder having constant volume charge density ' $\lambda$ ' and radius ' $R$ '. A Gaussian surface is in the form of a cylinder of radius ' $r$ ' such that vertical axis of both the cylinders coincide. For...
MCQ+1 / -02024
15Electrostatics
Two point charges $+8 q$ and $-2 q$ are located at $\mathrm{X}=0$ (origin) and $\mathrm{X}=\mathrm{L}$ respectively. The net electric field due to these two charges is zero at point $P$ on $X$-axis. The location of point $P$ from the origin...
MCQ+1 / -02024
16Electrostatics
If a unit positive charge is shifted from a region of low potential to a region of high potential, then the electric potential energy of the system
MCQ+1 / -02024
17Fluid Mechanics
Two capillary tubes A and B of the same internal diameter are kept vertically in two different liquids whose densities are in the ratio $4: 3$. If the surface tensions of these two liquids are in the ratio $6: 5$, then the ratio of rise of ...
MCQ+1 / -02024
18Fluid Mechanics
The angle of contact between glass and water is $0^{\circ}$ and water rises in a glass capillary upto 6 cm (Surface tension of water is T). Another liquid of surface tension ' $2 \mathrm{~T}^{\prime}$ ', angle of contact $60^{\circ}$ and re...
MCQ+1 / -02024
19Fluid Mechanics
When a mercury drop of radius ' $R$ ' splits up into 1000 droplets of radius ' $r$ ', the change in surface energy is ( $T=$ surface tension of mercury)
MCQ+1 / -02024
20Gravitation
A satellite of mass ' $m$ ' is revolving around the earth of mass ' $M$ ' in an orbit of radius ' $r$ ' with constant angular velocity ' $\omega$ '. The angular momentum of satellite is
( $\mathrm{G}=$ Universal constant of gravitation)
MCQ+1 / -02024
21Gravitation
The weights of an object are measured in a coal mine of depth ' $h_1$ ', then at sea level of height ' $h_2$ ' and lastly at the top of a mountain of height ' $h_3$ ' as $W_1, W_2$ and $W_3$ respectively. Which one of the following relation...
MCQ+1 / -02024
22Heat And Thermodynamics
Four moles of hydrogen, two moles of helium and one mole of water vapour form an ideal gas mixture. $\left[C_{\mathrm{v}}\right.$ for hydrogen $=\frac{5}{2} R, C_v$ for helium $=\frac{3}{2} R, \quad C_{\mathrm{v}}$ for water vapour $\left.=...
MCQ+1 / -02024
23Heat And Thermodynamics
A quantity of heat ' $Q$ ' is supplied to monoatomic ideal gas which expands at constant pressure. The fraction of heat converted into work is $\left[\gamma=\frac{\mathrm{C}_{\mathrm{p}}}{\mathrm{C}_{\mathrm{v}}}=\frac{5}{3}\right]$
MCQ+1 / -02024
24Heat And Thermodynamics
The ratio of work done by an ideal rigid diatomic gas to the heat supplied by the gas in an isobaric process is
MCQ+1 / -02024
25Heat And Thermodynamics
A sheet of steel is 40 cm long and 5 cm broad at $0^{\circ} \mathrm{C}$. The surface area of the sheet increases by $1.4 \mathrm{~cm}^2$ at $100^{\circ} \mathrm{C}$. Coefficient of linear expansion of steel is
MCQ+1 / -02024
26Heat And Thermodynamics
The internal energy of an ideal diatomic gas corresponding to volume ' $V$ ' and pressure ' P ' is 2.5 PV. The gas expands from 1 litre to 2 litre at a constant pressure of $10^5 \mathrm{~N} / \mathrm{m}^2$. The heat supplied to a gas is
MCQ+1 / -02024
27Heat And Thermodynamics
When a system is taken from state ' $a$ ' to state ' $c$ ' along a path abc, it is found that $\mathrm{Q}=80 \mathrm{cal}$ and $\mathrm{W}=35 \mathrm{cal}$. Along path adc $\mathrm{Q}=65 \mathrm{cal}$ the work done W along path adc is
MCQ+1 / -02024
28Laws Of Motion
The pulleys and strings shown in figure are smooth and of negligible mass. For the system to remain in equilibrium, angle $\theta$ should be
MCQ+1 / -02024
29Moving Charges And Magnetism
The strength of magnetic field at a perpendicular distance ' $x$ ' near a long straight conductor carrying current ' I ' is ' B '. The magnetic field at a distance $\frac{x}{3}$ from straight conductor will be
MCQ+1 / -02024
30Moving Charges And Magnetism
Two parallel wires separated by distance 'b' are carrying equal current ' $I$ ' in the same direction. The force per unit length of the wire is
MCQ+1 / -02024
31Moving Charges And Magnetism
Magnetic induction produced at the centre of a circular loop of radius ' $R$ ' carrying a current is ' B '. The magnetic moment of the loop is ( $\mu_0=$ permeability of free space)
MCQ+1 / -02024
32Ray Optics
For a symmetric (equilateral) prism, the prism formula can be written as
MCQ+1 / -02024
33Ray Optics
For a ray of light, the critical angle is minimum, when it travels from
MCQ+1 / -02024
34Rotational Motion
If the angular velocity of a body rotating about the given axis increases by $20 \%$, then its kinetic energy of rotation will increase by
MCQ+1 / -02024
35Rotational Motion
A thin uniform metal rod of mass ' $M$ ' and length ' $L$ ' is swinging about a horizontal axis passing through its end. Its maximum angular velocity is ' $\omega$ '. Its centre of mass rises to a maximum height of ( $\mathrm{g}=$ Accelerat...
MCQ+1 / -02024
36Rotational Motion
Three thin rods, each of mass ' $M$ ' and length ' $L$ ' are placed along $\mathrm{X}, \mathrm{Y}$ and Z axes which are mutually perpendicular. One end of each rod is at origin. M. I. of the system about Z axis is
MCQ+1 / -02024
37Semiconductor Devices And Logic Gates
For a transistor, current gain $(\beta)=50$. To change the collector current by $350 \mu \mathrm{~A}$, the base current should be changed by
MCQ+1 / -02024
38Semiconductor Devices And Logic Gates
Two different logic gates giving output ' 1 ' for the inputs $(1,0)$ and then for $(0,1)$ are
MCQ+1 / -02024
39Semiconductor Devices And Logic Gates
In an extrinsic n-type semiconductor, the free electrons donated by the impurity atoms occupy energy levels in
MCQ+1 / -02024
40Simple Harmonic Motion
Starting from mean position, a body oscillates simple harmonically with a period ' $T$ '. After what time will its kinetic energy be $75 \%$ of the total energy? $\left(\sin 30^{\circ}=0.5\right)$
MCQ+1 / -02024
41Simple Harmonic Motion
The maximum velocity of a particle, executing S.H.M. with an amplitude 7 mm is $4.4 \mathrm{~ms}^{-1}$

The period of oscillation is $\left[\pi=\frac{22}{7}\right]$
MCQ+1 / -02024
42Simple Harmonic Motion
A horizontal platform with a small object placed on it executes a linear S.H.M. in the vertical direction. The amplitude of oscillation is 40 cm . What should be the least period of these oscillations, so that the object is not detached fro...
MCQ+1 / -02024
43Wave Optics
In Young's double slit experiment, 'I' is the minimum intensity and ' $I_1$ ' is the intensity at a point where the path difference is $\frac{\lambda}{4}$ where ' $\lambda$ ' is the wavelength of light used. The ratio $I_1 \mathrm{I}_1$ is ...
MCQ+1 / -02024
44Wave Optics
In biprism experiment, the fringe width is 0.6 mm . The distance between $6^{\text {th }}$ dark fringe and $8^{\text {th }}$ bright fringe on the same side of central bright fringe is
MCQ+1 / -02024
45Wave Optics
In double slit experiment, instead of taking slits of equal widths, one slit is made twice as wide as the other. Then in interference pattern
MCQ+1 / -02024
46Waves
An open organ pipe of length ' $l$ ' is sounded together with another open organ pipe of length $\left(l+l_1\right)$ in their fundamental modes. Speed of sound in air is ' $V$ '. The beat frequency heard will be ( $\left.l_1< < l\right)$
MCQ+1 / -02024
47Waves
Two progressive waves $Y_1=\sin 2 \pi\left(\frac{t}{0 \cdot 4}-\frac{x}{4}\right)$ and $Y_2=\sin 2 \pi\left(\frac{t}{0 \cdot 4}+\frac{x}{4}\right)$ superpose to form a standing wave. ' $x$ ' and ' $y$ ' are in SI system. Amplitude of the pa...
MCQ+1 / -02024
48Waves
The driver of a car travelling with a speed ' $V_1$ ' $\mathrm{m} / \mathrm{s}$ towards a wall sounds a siren of frequency ' $n$ ' Hz. If the velocity of sound in air is $\mathrm{V} \mathrm{m} / \mathrm{s}$, then the frequency of sound refl...
MCQ+1 / -02024
49Waves
When a sonometer wire vibrates in third overtone there are
MCQ+1 / -02024
50Work Energy And Power
A body of mass 1 kg starts from rest and moves with uniform acceleration. In 2 seconds, its velocity is $10 \mathrm{~m} / \mathrm{s}$. The power exerted on the body in one second is
MCQ+1 / -02024

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