MHT CET 2021 21th September Morning Shift
MHT CET / 50 questions
2026Tue, Sep 21, 2021 3:30 AM50 PYQs
1Alternating Current
In the graphical representation of e.m.f. '\(\mathrm{e}\)' and current '\(\mathrm{i}\)' versus '\(\omega \mathrm{t}\)' for an a.c. circuit, both emf and current reach zero, minimum and maximum value at the same time. The circuit element con...
MCQ+1 / -02021
2Alternating Current
An alternating voltge is represented by \(\mathrm{V}=80 \sin (100 \pi \mathrm{t}) \cos (100 \pi \mathrm{t})\) volt. The peak voltage is
MCQ+1 / -02021
3Alternating Current
A series combination of resistor 'R' and capacitor 'C' is connected to an a.c. source of angular frequency '\(\omega\)'. Keeping the voltage same, if the frequency is changed to \(\frac{\omega}{3}\) the current becomes half of the original ...
MCQ+1 / -02021
4Atoms And Nuclei
When an electron in hydrogen atom jumps from third excited state to the ground state, the de-Broglie wavelength associated with the electron becomes
MCQ+1 / -02021
5Atoms And Nuclei
'\(\lambda_1\)' is the wavelength of series limit of Lyman series, '\(\lambda_2\)' is the wavelength of the first line line of Lyman series and '\(\lambda_3\)' is the series limit of the Balmer series. Then the relation between $$\lambda_1,...
MCQ+1 / -02021
6Capacitor
The resultant capacity between points A and B in the given circuit is
MCQ+1 / -02021
7Capacitor
An air filled parallel plate capacitor has a capacity \(2 \mathrm{~pF}\). The sepeartion of the plates is doubled and the interspace between the plates is filled with dielectric material, then the capacity is increased to \(6 ~\mathrm{pF}\)...
MCQ+1 / -02021
8Center Of Mass
A particle of mass '\(m\)' collides with another stationary particle of mass '\(M\)'. A particle of mass '\(\mathrm{m}\)' stops just after collision. The coefficient of restitution is
MCQ+1 / -02021
9Circular Motion
A particle moves in a circular orbit of radius '\(r\)' under a central attractive force, \(F=-\frac{k}{r}\), where \(\mathrm{k}\) is a constant. The periodic time of its motion is proportional to
MCQ+1 / -02021
10Current Electricity
In a meter bridge experiment, the balance point is obtained at length \(\ell_1 \mathrm{~cm}\) from left end when resistances in the left gap and right gap are \(5 \Omega\) and \(R \Omega\) respectively. When the resistance \(R\) is shunted ...
MCQ+1 / -02021
11Current Electricity
Two wires '\(\mathrm{A}\)' and '\(\mathrm{B}\)' of equal length are connected in left and right gap respectively of meter bridge, null point is obtained at \(40 \mathrm{~cm}\), from the left end. Diameters of the wires '\(A\)' and '\(B\)' a...
MCQ+1 / -02021
12Dual Nature Of Radiation
Light of frequency two times the threshold frequency is incident on photosensitive material. If the incident frequency is made \(\left(\frac{1}{3}\right)^{\text {rd }}\) and intensity is doubled, then the photoelectric current will
MCQ+1 / -02021
13Dual Nature Of Radiation
On a photosensitive surface, if the intensity of incident radiation is increased, the stopping potential
MCQ+1 / -02021
14Electromagnetic Induction
The magnetic potential energy stored in a certain inductor is \(25 \mathrm{~mJ}\), when the current in the inductor is \(50 \mathrm{~mA}\). This inductor is of inductance
MCQ+1 / -02021
15Electromagnetic Induction
A wire of length '\(L\)'; having resistance '\(R\)' falls from a height '\(\ell\)' in earth's horizontal magnetic field '\(B\)'. The current through the wire is ( \(\mathrm{g}=\) acceleration due to gravity)
MCQ+1 / -02021
16Electromagnetic Induction
A coil of radius '\(\mathrm{r}\)' is placed on another coil (whose radius is '\(\mathrm{R}\)' and current through it is changing) so that their centres coincide. ( \(R > r\) ). If both coplanar, then the mutual inductance between them is pr...
MCQ+1 / -02021
17Electrostatics
'\(\mathrm{F}\)' is the force between the two identical charged particles placed at a distance '\(\mathrm{Y}\)' from each other. If the distance between the charges is reduced to half the previous distance then force between them becomes
MCQ+1 / -02021
18Fluid Mechanics
The surface tension of most of the liquid decreases with rise in
MCQ+1 / -02021
19Fluid Mechanics
The velocity of a small ball of mass '\(M\)' and density '\(\mathrm{d}_1\)' when dropped in a container filled with glycerine becomes constant after some time. If the density of glycerine is '\(\mathrm{d}_2\)', the viscous force acting on t...
MCQ+1 / -02021
20Fluid Mechanics
Two small drops of mercury each of radius '\(R\)' coalesce to form a large single drop. The ratio of the total surface energies before and after the change is
MCQ+1 / -02021
21Gravitation
A pendulum is oscillating with frequency '\(n\)' on the surface of the earth. It is taken to a depth \(\frac{R}{2}\) below the surface of earth. New frequency of oscillation at depth \(\frac{R}{2}\) is
[ \(R\) is the radius of earth]
[ \(R\) is the radius of earth]
MCQ+1 / -02021
22Gravitation
When the value of acceleration due to gravity '\(g\)' becomes \(\frac{g}{3}\) above surface of height '\(h\)' then relation between '\(h\)' and '\(R\)' is
( \(\mathrm{R}=\) radius of earth)
( \(\mathrm{R}=\) radius of earth)
MCQ+1 / -02021
23Gravitation
A particle of mass '\(m\)' is kept at rest at a height \(3 R\) from the surface of earth, where '\(R\)' is radius of earth and '\(M\)' is the mass of earth. The minimum speed with which it should be projected, so that it does not return bac...
MCQ+1 / -02021
24Heat And Thermodynamics
The molar specific heats of an ideal gas at constant pressure and volume are denoted by '\(\mathrm{C}_{\mathrm{p}}\)' and '\(C_v\)' respectively. If \(\gamma=\frac{C_p}{C_v}\) and '\(R\)' is universal gas constant, then \(C_v\) is equal to
MCQ+1 / -02021
25Heat And Thermodynamics
The temperature difference bewtween two sides of metal plate, \(3 \mathrm{~cm}\) thick is \(15^{\circ} \mathrm{C}\). Heat is transmitted through plate at the rate of \(900 \mathrm{~kcal}\) per minute per \(\mathrm{m}^2\) at steady state. Th...
MCQ+1 / -02021
26Heat And Thermodynamics
A black body has maximum wavelength '\(\lambda_{\mathrm{m}}\)' at temperature \(2000 \mathrm{~K}\). Its corresponding wavelength at temperature \(3000 \mathrm{~K}\) will be
MCQ+1 / -02021
27Heat And Thermodynamics
A monoatomic gas at pressure '\(\mathrm{P}\)' having volume '\(\mathrm{V}\)' expands isothermally to a volume \(2 \mathrm{~V}\) and then adiabatically to a volume \(16 \mathrm{~V}\). The final pressure of the gas is $$\left(\gamma=\frac{5}{...
MCQ+1 / -02021
28Heat And Thermodynamics
A black reactangular surface of area '\(a\)' emits energy '\(\mathrm{E}\)' per second at \(27^{\circ} \mathrm{C}\). If length and breadth is reduced to \(\left(\frac{1}{3}\right)^{\text {rd }}\) of initial value and temperature is raised to...
MCQ+1 / -02021
29Heat And Thermodynamics
Find the value of \(-\)197\(^\circ\)C temperature in Kelvin.
MCQ+1 / -02021
30Heat And Thermodynamics
Which one of the following equations specifies an isobaric process? \([Q=\) heat supplied \(\Delta P, \Delta V\) and \(\Delta T\) are change in pressure, volume and temperature respectively]
MCQ+1 / -02021
31Magnetism And Matter
What is susceptibility of a medium, if its relative permeability is 0.85?
MCQ+1 / -02021
32Motion
A bomb is dropped by an aeroplane flying horizontally with a velocity \(200 \mathrm{~km} / \mathrm{hr}\) and at a height of \(980 \mathrm{~m}\). At the time of dropping a bomb, the distance of the aeroplane from the target on the ground to ...
MCQ+1 / -02021
33Moving Charges And Magnetism
A charge moves with velocity '\(V\)' through electric field \((E)\) as well as magnetic field (B). then the force acting on it is
MCQ+1 / -02021
34Moving Charges And Magnetism
A long solenoid carrying a current produces a magnetic field B along its axis. If the number of turns per \(\mathrm{cm}\) is doubled and the current is made \(\left(\frac{1}{3}\right)^{\text {rd }}\) then the new value of the magnetic field...
MCQ+1 / -02021
35Ray Optics
A ray of light is incident at an angle 'I' on one face of thin prism. The ray emerges normally from the other face. Refractive index of the glass prism is '\(n\)' and angle of prism is '\(A\)'. The value of '\(\mathrm{I}\)' is
MCQ+1 / -02021
36Ray Optics
A glass cube of length \(24 \mathrm{~cm}\) has a small air bubble trapped inside. When viewed normally from one face it is \(10 \mathrm{~cm}\) below the surface. When viewed normally from the opposite face, its apparent distance is $$6 \mat...
MCQ+1 / -02021
37Ray Optics
A particle executes linear S.H.M.
The mean position of oscillation is at the principal axis of a convex lens of focal length \(8 \mathrm{~cm}\). the mean position of oscillation is at 14 cm from the lens with amplitude 1 cm. The amplitude o...
The mean position of oscillation is at the principal axis of a convex lens of focal length \(8 \mathrm{~cm}\). the mean position of oscillation is at 14 cm from the lens with amplitude 1 cm. The amplitude o...
MCQ+1 / -02021
38Rotational Motion
The moment of inertia of a circular disc of radius \(2 \mathrm{~m}\) and mass \(1 \mathrm{~kg}\) about an axis XY passing through its centre of mass and perpendicular to the plane of the disc is \(2 \mathrm{~kg} \mathrm{~m}^2\). The moment ...
MCQ+1 / -02021
39Rotational Motion
The moment of inertia of a body about a given axis is \(1.2 \mathrm{~kg} / \mathrm{m}^3\). Initially the body is at rest. In order to produce rotational kinetic energy of \(1500 \mathrm{~J}\), an angular acceleration of $$25 \mathrm{rad} / ...
MCQ+1 / -02021
40Semiconductor Devices And Logic Gates
In a pure silicon, number of electrons and holes per unit volume are \(1.6 \times 10^{16} \mathrm{~m}^{-3}\). If silicon is doped with Boron in a way that on doping hole density increases to \(4 \times 10^{22} \mathrm{~m}^{-3}\). Then elect...
MCQ+1 / -02021
41Semiconductor Devices And Logic Gates
For a transitor, \(\frac{1}{\alpha_{\mathrm{DC}}}-\frac{1}{\beta_{\mathrm{DC}}}\) is equal to [ \(\alpha_{\mathrm{DC}}\) and \(\beta_{\mathrm{DC}}\) are current amplification factors]
MCQ+1 / -02021
42Semiconductor Devices And Logic Gates
The current in the following circuit is
MCQ+1 / -02021
43Wave Optics
In diffraction experiment, from a single slit, the angular width of central maximum does NOT depend upon
MCQ+1 / -02021
44Wave Optics
In biprism experiment, 21 fringes are observed in a given region using light of wavelength 4800 \(\mathop A\limits^o\). If light of wavelength 5600 \(\mathop A\limits^o\) is used, the number of fringes in the same region will be
MCQ+1 / -02021
45Wave Optics
A double slit experiment is immersed in water of refractive index 1.33. The slit separationis 1 \(\mathrm{mm}\) and the distance between slit and screen is \(1.33 \mathrm{~m}\). The slits are illuminated by a light of wavelength $$6300\,\ma...
MCQ+1 / -02021
46Waves
A closed organ pipe of length '\(\mathrm{L}_c\)' and an open organ pipe of length '\(\mathrm{L}_{\mathrm{o}}\)' contain different gases of densities '\(\rho_1\)' and '\(\rho_2\)' respectively. The compressibility of the gases is the same in...
MCQ+1 / -02021
47Waves
A progressive wave of frequency 50 Hz is travelling with velocity 350 m/s through a medium. The change in phase at a given time interval of 0.01 second is
MCQ+1 / -02021
48Waves
A simple harmonic progressive wave is given by \(Y=Y_0 \sin 2 \pi\left(n t-\frac{x}{\lambda}\right)\). If the wave velocity is \(\left(\frac{1}{8}\right)^{\text {th }}\) the maximum particle velocity then the wavelength is
MCQ+1 / -02021
49Waves
In fundamental mode, the time required for the sound wave to reach upto the closed end of pipe filled with air is \(t\) second. The frequency of vibration of air column is
MCQ+1 / -02021
50Work Energy And Power
A sphere of mass 25 gram is placed on a vertical spring. It is compressed by \(0.2 \mathrm{~m}\) using a force \(5 \mathrm{~N}\). When the spring is released, the sphere will reach a height of $$\left(\mathrm{g}=10 \mathrm{~m} / \mathrm{s}^...
MCQ+1 / -02021
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