MHT CET 2023 9th May Morning Shift
MHT CET / 50 questions
2026Tue, May 9, 2023 3:30 AM50 PYQs
1Alternating Current
The coil of an a.c. generator has 100 turns, each of cross-sectional area \(2 \mathrm{~m}^2\). It is rotating at constant angular speed \(30 ~\mathrm{rad} / \mathrm{s}\), in a uniform magnetic field of \(2 \times 10^{-2} \mathrm{~T}\). If t...
MCQ+1 / -02023
2Alternating Current
A capacitor, an inductor and an electric bulb are connected in series to an a.c. supply of variable frequency. As the frequency of the supply is increased gradually, then the electric bulb is found to
MCQ+1 / -02023
3Alternating Current
In an \(\mathrm{AC}\) circuit, the current is \(\mathrm{i}=5 \sin \left(100 \mathrm{t}-\frac{\pi}{2}\right) \mathrm{A}\) and voltage is \(\mathrm{e}=200 \sin (100 \mathrm{t})\) volt. Power consumption in the circuit is $$\left(\cos 90^{\cir...
MCQ+1 / -02023
4Atoms And Nuclei
The ratio of wavelengths for transition of electrons from \(2^{\text {nd }}\) orbit to \(1^{\text {st }}\) orbit of Helium \(\left(\mathrm{He}^{++}\right)\) and Lithium \(\left(\mathrm{Li}^{++1}\right)\) is (Atomic number of Helium \(=2\), ...
MCQ+1 / -02023
5Atoms And Nuclei
For an electron moving in the \(\mathrm{n}^{\text {th }}\) Bohr orbit the deBroglie wavelength of an electron is
MCQ+1 / -02023
6Atoms And Nuclei
If an electron in a hydrogen atom jumps from an orbit of level \(n=3\) to orbit of level \(n=2\), then the emitted radiation frequency is (where R = Rydberg's constant, C = Velocity of light)
MCQ+1 / -02023
7Capacitor
The capacitance of a parallel plate capacitor is \(2.5 ~\mu \mathrm{F}\). When it is half filled with a dielectric as shown in figure, its capacitance becomes \(5 ~\mu \mathrm{F}\). The dielectric constant of the dielectric is
MCQ+1 / -02023
8Capacitor
The ratio of potential difference that must be applied across parallel and series combination of two capacitors \(C_1\) and \(C_2\) with their capacitance in the ratio \(1: 2\) so that energy stored in these two cases becomes same is
MCQ+1 / -02023
9Capacitor
The potential energy of charged parallel plate capacitor is \(v_0\). If a slab of dielectric constant \(\mathrm{K}\) is inserted between the plates, then the new potential energy will be
MCQ+1 / -02023
10Center Of Mass
A body falls on a surface of coefficient of restitution 0.6 from a height of \(1 \mathrm{~m}\). Then the body rebounds to a height of
MCQ+1 / -02023
11Current Electricity
A galvanometer of resistance \(\mathrm{G}\) is shunted with a resistance of \(10 \%\) of \(\mathrm{G}\). The part of the total current that flows through the galvanometer is
MCQ+1 / -02023
12Current Electricity
In a meter bridge experiment null point is obtained at \(l \mathrm{~cm}\) from the left end. If the meter bridge wire is replaced by a wire of same material but twice the area of across-section, then the null point is obtained at a distance
MCQ+1 / -02023
13Dual Nature Of Radiation
From a metallic surface photoelectric emission is observed for frequencies \(v_1\) and \(v_2\left(v_1 > v_2\right)\) of the incident light. The maximum values of the kinetic energy of the photoelectrons emitted in the two cases are in the r...
MCQ+1 / -02023
14Electromagnetic Induction
The magnetic flux through a loop of resistance \(10 ~\Omega\) varying according to the relation \(\phi=6 \mathrm{t}^2+7 \mathrm{t}+1\), where \(\phi\) is in milliweber, time is in second at time \(\mathrm{t}=1 \mathrm{~s}\) the induced e.m....
MCQ+1 / -02023
15Electromagnetic Induction
An electron (mass \(\mathrm{m}\) ) is accelerated through a potential difference of '\(V\)' and then it enters in a magnetic field of induction '\(B\)' normal to the lines. The radius of the circular path is (\(\mathrm{e}=\) electronic char...
MCQ+1 / -02023
16Electromagnetic Induction
A conducting wire of length \(2500 \mathrm{~m}\) is kept in east-west direction, at a height of \(10 \mathrm{~m}\) from the ground. If it falls freely on the ground then the current induced in the wire is (Resistance of wire $$=25 \sqrt{2} ...
MCQ+1 / -02023
17Electromagnetic Induction
Self inductance of solenoid is
MCQ+1 / -02023
18Electrostatics
A solid metallic sphere has a charge \(+3 Q\). Concentric with this sphere is a conducting spherical shell having charge \(-\mathrm{Q}\). The radius of the sphere is '\(A\)' and that of the spherical shell is '\(B\)'. \((B > A)\). The elect...
MCQ+1 / -02023
19Fluid Mechanics
Water is flowing through a horizontal pipe in stream line flow. At the narrowest part of the pipe
MCQ+1 / -02023
20Fluid Mechanics
The excess of pressure in a first soap bubble is three times that of other soap bubble. Then the ratio of the volume of first bubble to other is
MCQ+1 / -02023
21Fluid Mechanics
The radii of two soap bubbles are \(r_1\) and \(r_2\). In isothermal condition they combine with each other to form a single bubble. The radius of resultant bubble is
MCQ+1 / -02023
22Gravitation
A thin rod of length '\(L\)' is bent in the form of a circle. Its mass is '\(M\)'. What force will act on mass '\(m\)' placed at the centre of this circle?
( \(\mathrm{G}=\) constant of gravitation)
( \(\mathrm{G}=\) constant of gravitation)
MCQ+1 / -02023
23Gravitation
A body weighs \(300 \mathrm{~N}\) on the surface of the earth. How much will it weigh at a distance \(\frac{R}{2}\) below the surface of earth? ( \(R \rightarrow\) Radius of earth)
MCQ+1 / -02023
24Gravitation
A seconds pendulum is placed in a space laboratory orbiting round the earth at a height '\(3 \mathrm{R}\)' from the earth's surface. The time period of the pendulum will be ( \(R=\) radius of earth)
MCQ+1 / -02023
25Heat And Thermodynamics
A jar '\(\mathrm{P}\)' is filled with gas having pressure, volume and temperature \(\mathrm{P}, \mathrm{V}, \mathrm{T}\) respectively. Another gas jar \(Q\) filled with a gas having pressure \(2 \mathrm{P}\), volume \(\frac{\mathrm{V}}{4}\)...
MCQ+1 / -02023
26Heat And Thermodynamics
For a gas having '\(\mathrm{X}\)' degrees of freedom, '\(\gamma\)' is (\(\gamma=\) ratio of specific heats \(=\mathrm{C_P / C_V}\))
MCQ+1 / -02023
27Heat And Thermodynamics
Two uniform brass rods \(A\) and \(B\) of length '\(l\)' and '\(2 l\)' and their radii '\(2 r\)' and '\(r\)' respectively are heated to same temperature. The ratio of the increase in the volume of \(\operatorname{rod} \mathrm{A}\) to that o...
MCQ+1 / -02023
28Heat And Thermodynamics
A gas at N.T.P. is suddenly compressed to \(\left(\frac{1}{4}\right)^{\text {th }}\) of its original volume. The final pressure in (Given \(\gamma=\) ratio of sp. heats \(=\frac{3}{2}\) ) atmosphere is ( \(\mathrm{P}=\) original pressure)
MCQ+1 / -02023
29Heat And Thermodynamics
In a thermodynamic process, there is no exchange of heat between the system and surroundings. Then the thermodynamic process is
MCQ+1 / -02023
30Heat And Thermodynamics
According to kinetic theory of gases, which one of the following statements is wrong?
MCQ+1 / -02023
31Magnetism And Matter
The materials suitable for making electromagnets should have
MCQ+1 / -02023
32Moving Charges And Magnetism
A long straight wire carrying a current of \(25 \mathrm{~A}\) rests on the table. Another wire PQ of length \(1 \mathrm{~m}\) and mass \(2.5 \mathrm{~g}\) carries the same current but in the opposite direction. The wire PQ is free to slide ...
MCQ+1 / -02023
33Ray Optics
The angle of prism is \(A\) and one of its refracting surface is silvered. Light rays falling at an angle of incidence '\(2 \mathrm{A}\)' on the first surface return back through the same path after suffering reflection at the silvered surf...
MCQ+1 / -02023
34Rotational Motion
A square lamina of side '\(b\)' has same mass as a disc of radius '\(R\)' the moment of inertia of the two objects about an axis perpendicular to the plane and passing through the centre is equal. The ratio \(\frac{b}{R}\) is
MCQ+1 / -02023
35Rotational Motion
A solid sphere rolls without slipping on an inclined plane at an angle \(\theta\). The ratio of total kinetic energy to its rotational kinetic energy is
MCQ+1 / -02023
36Rotational Motion
Two discs of same mass and same thickness (t) are made from two different materials of densities '\(d_1\)' and '\(d_2\)' respectively. The ratio of the moment of inertia \(I_1\) to \(I_2\) of two discs about an axis passing through the cent...
MCQ+1 / -02023
37Semiconductor Devices And Logic Gates
For an intrinsic semiconductor \(\left(\mathrm{n}_{\mathrm{h}}\right.\) and \(\mathrm{n}_{\mathrm{e}}\) are the number of holes per unit volume and number of electrons per unit volume respectively)
MCQ+1 / -02023
38Semiconductor Devices And Logic Gates
A \(5.0 \mathrm{~V}\) stabilized power supply is required to be designed using a \(12 \mathrm{~V}\) DC power supply as input source. The maximum power rating of zener diode is \(2.0 \mathrm{~W}\). The minimum value of resistance $$R_{\mathr...
MCQ+1 / -02023
39Semiconductor Devices And Logic Gates
To get the truth table shown, from the following logic circuit, the Gate G should be
MCQ+1 / -02023
40Simple Harmonic Motion
A rubber ball filled with water, having a small hole is used as the bob of a simple pendulum. The time period of such a pendulum
MCQ+1 / -02023
41Simple Harmonic Motion
The maximum velocity of a particle performing S.H.M. is '\(\mathrm{V}\)'. If the periodic time is made \(\left(\frac{1}{3}\right)^d\) and the amplitude is doubled, then the new maximum velocity of the particle will be
MCQ+1 / -02023
42Wave Optics
A beam of unpolarized light passes through a tourmaline crystal A and then it passes through a second tourmaline crystal B oriented so that its principal plane is parallel to that of A. The intensity of emergent light is \(I_0\). Now B is r...
MCQ+1 / -02023
43Wave Optics
In a diffraction pattern due to single slit of width '\(a\)', the first minimum is observed at an angle of \(30^{\circ}\) when the light of wavelength \(5400 \mathop A\limits^o\) is incident on the slit. The first secondary maximum is obser...
MCQ+1 / -02023
44Wave Optics
In a single slit experiment, the width of the slit is doubled. Which one of the following statements is correct?
MCQ+1 / -02023
45Wave Optics
The rays of different colours fail to converge at a point after passing through a thick converging lens. This defect is called
MCQ+1 / -02023
46Waves
When both source and listener are approaching each other the observed frequency of sound is given by \(\left(V_L\right.\) and \(V_S\) is the velocity of listener and source respectively, \(\mathrm{n}_0=\) radiated frequency)
MCQ+1 / -02023
47Waves
Equation of simple harmonic progressive wave is given by \(y=\frac{1}{\sqrt{a}} \sin \omega t \pm \frac{1}{\sqrt{b}} \cos \omega t\) then the resultant amplitude of the wave is \(\left(\cos 90^{\circ}=0\right)\)
MCQ+1 / -02023
48Waves
When a string of length '\(l\)' is divided into three segments of length \(l_1, l_2\) and \(l_3\). The fundamental frequencies of three segments are \(\mathrm{n}_1, \mathrm{n}_2\) and \(\mathrm{n}_3\) respectively. The original fundamental ...
MCQ+1 / -02023
49Waves
A closed organ pipe of length '\(L_1\)' and an open organ pipe contain diatomic gases of densities '\(\rho_1\)' and '\(\rho_2\)' respectively. The compressibilities of the gases are same in both pipes, which are vibrating in their first ove...
MCQ+1 / -02023
50Work Energy And Power
A stone is projected vertically upwards with speed '\(v\)'. Another stone of same mass is projected at an angle of \(60^{\circ}\) with the vertical with the same speed '\(v\)'. The ratio of their potential energies at the highest points of ...
MCQ+1 / -02023
More 2026 MHT CET papers
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