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MHT CET 2026 13th April Morning Shift

MHT CET / 150 questions

2026Mon, Apr 13, 2026 3:30 AM150 PYQs
1Alternating Current
In series LCR circuit C = 2 uF, L=1 mH and R= 10 $\Omega$. What is the ratio of energies stored in the capacitor and inductor when maximum current flows through circuit?
MCQ+1 / -02026
2Alternating Current
In series LCR resonant circuit, R=800 $\Omega$, C = 2 $\mu$F and voltage across resistance is 200 V. The angular frequency is 250 rad/s. At resonance the voltage across the capacitance is
MCQ+1 / -02026
3Alternating Current
An alternating e.m.f. is given by $e = e_0 \sin \omega t$. In what time the e.m.f. will have half its maximum value, if 'e' starts from zero? ($\sin 30^\circ = 0.5$)
MCQ+1 / -02026
4Alternating Current
A resistor of 100 $\Omega$, inductor of self inductance $\left(\dfrac{4}{\pi^2}\right)$ H and a capacitor of unknown capacity are connected in series to an a.c. source of 200 V and 50 Hz. When the current and voltage are in phase, the value...
MCQ+1 / -02026
5Atoms And Nuclei
The ratio of centripetal acceleration for an electron revolving in 3rd and 5th Bohr orbit of hydrogen atom is
MCQ+1 / -02026
6Atoms And Nuclei
An electron is revolving in a circular orbit of radius 'r' in hydrogen atom. Using Bohr's theory, the angular momentum of the electron is(M = magnetic dipole moment, m = mass of electron)
MCQ+1 / -02026
7Capacitor
The capacitance of a capacitor becomes $\dfrac{7}{6}$ times the original value if dielectric slab of thickness $t = \dfrac{2d}{3}$ is introduced between the plates, where 'd' is the distance of separation between the plates. The dielectric ...
MCQ+1 / -02026
8Capacitor
Two identical parallel plate air capacitors are connected in series to a battery of e.m.f. 'V'. If one of the capacitor is inserted in liquid of dielectric constant 'K' then potential difference of the other capacitor will become
MCQ+1 / -02026
9Capacitor
A condenser of capacity $C_1$ is charged to potential $V_1$ and then disconnected. Uncharged capacitor of capacity $C_2$ is connected in parallel with $C_1$. The resultant potential $V_2$ is
MCQ+1 / -02026
10Center Of Mass
A stationary body explodes into two parts of masses $M_1$ and $M_2$. They move in opposite directions with velocities $V_1$ and $V_2$. The ratio of their kinetic energies is
MCQ+1 / -02026
11Circular Motion
A string of length 'L' fixed at one end carries a mass 'm' at the other end. The string makes $\dfrac{3}{\pi}$ r.p.s. around the vertical axis through fixed end. The tension in the string is
MCQ+1 / -02026
12Circular Motion
The relative angular speed of hour hand and minute hand of clock is
MCQ+1 / -02026
13Circular Motion
A simple pendulum oscillates with an angular amplitude $\theta$. If the maximum tension in the string is twice the minimum tension then $\theta$ is
MCQ+1 / -02026
14Current Electricity
A potentiometer wire is 4 m long and potential difference of 3V is maintained between the ends. The e.m.f. of the cell which balances against a length of 100 cm of the poteniometer wire is
MCQ+1 / -02026
15Current Electricity
Two wires A and B of equal lengths are connected in left and right gap respectively of a metre bridge, null point is obtained at 40 cm from left end. Diameters of the wires A and B are in the ratio 3:1 respectively, the ratio of specific re...
MCQ+1 / -02026
16Current Electricity
Which of the following graph represents the temperature (T) dependence of resistivity ($\rho$) of a semiconductor?
MCQ+1 / -02026
17Dual Nature Of Radiation
Energy of the incident photons on the photosensitive metal surface is 3W and then 5W where 'W' is the work function of that metal. The ratio of velocities of the emitted photoelectrons is
MCQ+1 / -02026
18Dual Nature Of Radiation
Which one of the four graphs showing lines P, Q, R and S between maximum kinetic energy (E) and intensity of incident radiation (I) is correct?
MCQ+1 / -02026
19Electromagnetic Induction
The current flowing through the inductor of self inductance 'L' is continuously increasing at constant rate. The variation of induced e.m.f. (e) versus $\dfrac{dI}{dt}$ is shown graphically by figure
MCQ+1 / -02026
20Electromagnetic Induction
Two coils P and Q have mutual inductance 'M' H. If the current in the coil P is $I = I_0 \sin \omega t$, then the maximum value of e.m.f. induced in coil Q is
MCQ+1 / -02026
21Electrostatics
A charge 'Q' C is placed at the centre of a cube. The electric flux through two opposite faces of the cube is($\epsilon_0$ = permittivity of free space)
MCQ+1 / -02026
22Fluid Mechanics
Two small drops of liquid of same radius coalesce to form a big drop. The ratio of the total surface energies after and before the change is
MCQ+1 / -02026
23Fluid Mechanics
Three liquids have same surface tension and have densities $\rho_1, \rho_2$ and $\rho_3$ $(\rho_1 > \rho_2 > \rho_3)$. In three identical capillaries rise of liquid is same. The corresponding angles of contact $\theta_1, \theta_2$ and $\the...
MCQ+1 / -02026
24Fluid Mechanics
The work done in splitting a water drop of radius 'R' into 64 droplets is (T is the surface tension of water)
MCQ+1 / -02026
25Gravitation
A body is projected vertically from earth's surface of radius R with velocity equal to half the escape velocity. The maximum height reached by the body is
MCQ+1 / -02026
26Heat And Thermodynamics
A celsius and a Fahrenheit thermometer are dipped in boiling water. The temperature of water is lowered until the Farenheit thermometer shows $140^\circ$. What is the fall in temperature on the Celsius thermometer?
MCQ+1 / -02026
27Heat And Thermodynamics
Rate of radiation by a black body is 'R' at temperature 'T'. Another body has same area but emissivity is 0.2 and temperature 3T. Its rate of radiation is
MCQ+1 / -02026
28Heat And Thermodynamics
A black rectangular surface of area A emits energy E per unit time at $27^\circ$ C. If length and breadth is reduced to $\left(\dfrac{1}{4}\right)^{th}$ of initial value and temperature is raised to $327^\circ$ C, then energy emitted per un...
MCQ+1 / -02026
29Heat And Thermodynamics
The change in internal energy of the mass of gas, when the volume changes from V to 2V at constant pressure P is ($\gamma$ is the ratio of specific heat at constant pressure to that of volume) ($\gamma = \dfrac{C_p}{C_v}$)
MCQ+1 / -02026
30Heat And Thermodynamics
An ideal gas expands adiabatically ($\gamma = 1.5$). To reduce the r.m.s. velocity of the molecules 3 times the gas has to be expanded
MCQ+1 / -02026
31Magnetism And Matter
An iron rod is placed parallel to magnetic field intensity 2000 A/m. The magnetic flux through rod is $6 \times 10^{-4}$ wb and its cross sectional area is 3 cm$^2$. The magnetic permeability of the rod in wb/A-m is
MCQ+1 / -02026
32Moving Charges And Magnetism
The magnetic flux near the axis and inside the air core solenoid of length 60 cm carrying current I is $\dfrac{\pi}{2} \times 10^{-6}$ Wb. Its magnetic moment will be (cross-sectional area is very small as compared to length of solenoid, $\...
MCQ+1 / -02026
33Moving Charges And Magnetism
If the number of turns in the coil of a moving coil galvanometer decreases, the resistance of the galvanometer,
MCQ+1 / -02026
34Ray Optics
If a parallel beam of light is incident on spherical mirrors then after reflection they pass through focal point. If F is the focal length and R is the radius of curvature of mirror then
MCQ+1 / -02026
35Rotational Motion
A body slides down a smooth inclined plane of inclination $\theta$ and reaches the bottom with velocity 'V'. If the same body is a ring which rolls down the same inclined plane then linear velocity at the bottom of the plane is
MCQ+1 / -02026
36Rotational Motion
A disc of radius 0.4 m and mass 1 kg rotates about an axis passing through its centre and perpendicular to its plane. The angular acceleration is 10 rad/s$^2$. The tangential force applied to the rim of the disc is
MCQ+1 / -02026
37Semiconductor Devices And Logic Gates
In common emitter mode of transistor, the d.c. current gain is 20, the emitter current is 7 mA. The collector current is
MCQ+1 / -02026
38Semiconductor Devices And Logic Gates
In transistor amplifier, base emitter junction is forward biased and collector base junction is reversed biased. The current gain is
MCQ+1 / -02026
39Simple Harmonic Motion
A spring executes S.H.M. with mass 10 kg attached to it. The force constant of spring is 10 N/m. If at any instant its velocity is 40 cm/s, the displacement at that instant is(Amplitude of S.H.M. is 0.5 m)
MCQ+1 / -02026
40Units And Measurement And Dimensions
The period of oscillation of a simple pendulum is $T = 2\pi (L/g)^{1/2}$. Measured value of 'L' is 10 cm known to 1 mm accuracy and time for 100 oscillations is 50 second, using a watch of 1 second resolution. The percentage error in the me...
MCQ+1 / -02026
41Units And Measurement And Dimensions
According to Boyle's law, the product PV remains constant. The SI unit of PV is same as that of
MCQ+1 / -02026
42Vector Algebra
The vector sum of the two forces $\vec{A}$ and $\vec{B}$ is perpendicular to their vector difference. Hence forces $\vec{A}$ and $\vec{B}$ are
MCQ+1 / -02026
43Wave Optics
Choose the correct statement from the following.Brewster's angle for a transparent medium is
MCQ+1 / -02026
44Wave Optics
In Young's double slit experiment, the angular width of a fringe is found to be $0.2^\circ$ on a screen placed 1m away. The wavelength of light used in 600 nm. If the entire apparatus is immersed in water of refractive index 4/3. the angula...
MCQ+1 / -02026
45Wave Optics
According to corpuscular theory of light, Which is NOT the property of light?
MCQ+1 / -02026
46Waves
Waves having a velocity 10m/s, strike a stationary boat near the sea shore. The distance between two consecutive crests of the waves is 40m. After how many second, the consecutive waves strike the boat?
MCQ+1 / -02026
47Waves
A musical instrument P produces sound waves of frequency 'n' and amplitude 'A'. Another musical instrument Q produces sound waves of frequency n/4. The waves produced by P and Q have equal energies. The amplitude of waves produced by Q will...
MCQ+1 / -02026
48Waves
In a stationary wave, all the particles
MCQ+1 / -02026
49Waves
In fundamental mode, the time required for the sound wave to reach upto the closed end of a pipe filled with air is $t$ second. The frequency of vibration of air column is($\lambda$ = wavelength of the wave)
MCQ+1 / -02026
50Waves
A sonometer wire is vibrating in third overtone. There are
MCQ+1 / -02026

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