MHT CET 2021 21th September Evening Shift
MHT CET / 150 questions
2026Tue, Sep 21, 2021 8:30 AM150 PYQs
1Alternating Current
In LCR series resonant circuit, at resonance, voltage across 'L' and 'C' will cancel each other because they are
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2Alternating Current
The inductive reactance of a coil is R\(\Omega\). If the inductance of a coil is doubled and frequency of a.c. supply is also doubled then the new inductive reactance will be
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3Alternating Current
Three pure inductors each of inductance 6H are connected as shown in the figure. Their equivalent inductance between the points 'P' and 'Q' is
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4Alternating Current
The instantaneous value of an alternating current is given by \(\mathrm{i}=50 \sin (100 \pi \mathrm{t})\). It will achieve a value of \(25 \mathrm{~A}\) after a time interval of \(\left(\sin 30^{\circ}=0.5\right)\)
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5Alternating Current
In a step up transformer, which one of the following statements is correct?
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6Atoms And Nuclei
Ratio centripetal acceleration for an electron revolving in 3rd and 5th Bohr orbit of hydrogen atom is
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7Capacitor
Two identical parallel plate air capacitors are connected in series to a battery of emf '\(\mathrm{V}\)'. If one of the capacitor is inserted in liquid of dielectric constant '\(\mathrm{K}\)' then, potential difference of the other capacito...
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8Capacitor
A condenser of capacity '\(\mathrm{C}_1\)' is charged to potential '\(\mathrm{V}_1\)' and then disconnected. Uncharged capacitor of capacity '\(\mathrm{C}_2\)' is connected in parallel with '\(\mathrm{C}_1\)'. The resultant potential '$$\ma...
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9Center Of Mass
A molecule of mass 'm' moving with velocity 'v' makes 5 elastic collisions with a wall of container per second. The change in momentum of the wall per second in 5 collisions will be
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10Circular Motion
The angle of banking '\(\theta\)' for a meter gauge railway line is given by \(\theta=\tan ^{-1}\left(\frac{1}{20}\right)\). What is the elevation of the outer rail above the inner rail?
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11Current Electricity
A moving coil galvanometer is converted into an ammeter, reading upto \(0.04 \mathrm{~A}\) by connecting a shunt of resistance '\(3 \mathrm{r}\)' across it and then into an ammeter reading upto \(0.8 \mathrm{~A}\), when a shunt of resistanc...
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12Current Electricity
A current through 1 \(\Omega\) resistance in the following circuit is
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13Dual Nature Of Radiation
The wave number of the last line of the Balmer series in the hydrogen spectrum will be \(\left(\right.\) Rydberg's cons \(\left.\tan t, R=\frac{10^7}{\mathrm{~m}}\right)\)
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14Dual Nature Of Radiation
Photoemission from metal surface takes place for frequencies '\(v_1\)' and '\(v_2\)' of incident rays \(\left(v_1>v_2\right)\). Maximum kinetic energy of photoelectrons emitted is in the ratio \(1: \mathrm{K}\). The threshold frequency of m...
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15Dual Nature Of Radiation
A proton and alpha particle are accelerated through the same potential difference. The ratio of the de-Broglie wavelength of proton to that of alpha particle will be (mass of alpha particle is four times mass of proton.)
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16Electrostatics
When a piece of polythene is rubbed with wool, a negative charge of \(4 \times 10^{-7} \mathrm{C}\) is developed on the polythene. The number of electrons transferred from wool to polythene is $$[e=1.6 \times\left.10^{-19} \mathrm{C}\right]...
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17Electrostatics
A hollow metal sphere has a radius 'r'. The potential difference between a point on its surface and at a point at a distance '3r' from its centre is 'V'. The electric intensity at the distance '3r' from the centre of the sphere will be :
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18Fluid Mechanics
Under isothermal conditions, two soap bubbles of radii '\(r_1\)' and '\(r_2\)' combine to form a single soap bubble of radius '\(R\)'. The surface tension of soap solution is ( \(P=\) outside pressure)
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19Fluid Mechanics
In a capillary tube having area of cross-section A, water rises to a height 'h'. If cross-sectional area is reduced to \(\frac{A}{9}\), the rise of water in the capillary tube is
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20Fluid Mechanics
Water rises upto a height \(10 \mathrm{~cm}\) in a capillary tube. It will rise to a height which is much more than \(10 \mathrm{~cm}\) in a very long capillary tube if the apparatus is kept.
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21Fluid Mechanics
A big water drop is divided into 8 equal droplets. \(\Delta \mathrm{P}_{\mathrm{s}}\) and \(\Delta \mathrm{P}_{\mathrm{B}}\) be the excess pressure inside a smaller and bigger drop respectively. The relation between $$\Delta \mathrm{P}_{\ma...
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22Gravitation
For a body of mass '\(m\)', the acceleration due to gravity at a distance '\(R\)' from the surface of the earth is \(\left(\frac{g}{4}\right)\). Its value at a distance \(\left(\frac{R}{2}\right)\) from the surface of the earth is ( \(R=\) ...
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23Gravitation
The ratio of energy required to raise a satellite of mass '\(m\)' to height '\(h\)' above the earth's surface to that required to put it into the orbit at same height is [ \(\mathrm{R}=\) radius of earth]
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24Heat And Thermodynamics
What is the ratio of the velocity of sound in hydrogen \(\left(\gamma=\frac{7}{5}\right)\) to that in helium \(\left(\gamma=\frac{5}{3}\right)\) at the same temperature? (Molecular weight of hydrogen and helium is 2 and 4 respectively.)
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25Heat And Thermodynamics
Equal volumes of two gases are kept in different containers having densities in the ratio 1 : 16. They exert equal pressures on the wall of their respective containers. Then the ratio of their r.m.s. velocities is
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26Heat And Thermodynamics
In thermodynamics, for an isochoric process, which one of the following statement is INCORRECT?
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27Heat And Thermodynamics
If '\(\mathrm{E}\)' is the kinetic energy per mole of an ideal gas and '\(\mathrm{T}\)' is the absolute temperature, then the universal gas constant is given as
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28Heat And Thermodynamics
Two rods of same length and material are joined end to end. They transfer heat in 8 second. When they are joined in parallel they transfer same amount of heat in same conditions in time
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29Magnetism And Matter
The north pole of a long horizontal bar magnet is being brought towards closed circuit consisting of a coil. The direction of induced current produced in it is
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30Motion
A body at rest falls through a height 'h' with velocity 'V'. If it has to fall down further for its velocity to become three times, the distance travelled in that interval is
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31Moving Charges And Magnetism
A, B and C are three parallel conductors of equal lengths carrying currents \(\mathrm{I}, \mathrm{I}\) and \(2 \mathrm{I}\) respectively. Distance between A and B is '\(x\)' and that between B and C is also '\(x\)'. \(F_1\) is the force exe...
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32Moving Charges And Magnetism
Magnetic moment of revolving electron of charge (e) and mass (m) in terms of angular momentum (L) of electron is :
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33Moving Charges And Magnetism
The magnetic flux near the axis and inside the air core solenoid of length \(60 \mathrm{~cm}\) carrying current '\(\mathrm{I}\)' is \(1.57 \times 10^{-6} \mathrm{~Wb}\). Its magnetic moment will be $$\left[\mu_0=4 \pi \times 10^{-7}\right.$...
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34Ray Optics
The refractive index of glass is 1.5 and that of water is 1.33 . The critical angle for a ray of light going from glass to water is
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35Ray Optics
A convex lens is dipped in a liquid whose refractive index is equal to refractive index of lens material. Then its focal length will
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36Rotational Motion
A particle performs rotational motion with an angular momentum 'L'. If frequency of rotation is doubled and its kinetic energy becomes one fourth, the angular momentum becomes.
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37Rotational Motion
Three rings each of mass 'M' and radius 'R' are arranged as shown in the figure. The moment of inertia of system about axis YY' will be
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38Semiconductor Devices And Logic Gates
Combination of NAND gates is shown in the figure. It is equivalent to
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39Semiconductor Devices And Logic Gates
In an ideal junction diode, the current flowing through PQ is
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40Semiconductor Devices And Logic Gates
LED is manufactured using zinc selenide then it emits.
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41Simple Harmonic Motion
A child is sitting on a swing which performs S.H.M. It has minimum and maximum heights from ground \(0.75 \mathrm{~cm}\) and \(2 \mathrm{~m}\) respectively. Its maximum speed will be $$\left[\mathrm{g}=10 \frac{\mathrm{m}}{\mathrm{s}^2}\rig...
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42Simple Harmonic Motion
A pendulum clock is running fast. To correct its time, we should
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43Simple Harmonic Motion
A particle is performing S.H.M. with maximum velocity '\(v\)'. If the amplitude is tripled and periodic time is doubled then maximum velocity will be
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44Wave Optics
Two coherent sources of wavelength '\(\lambda\)' produce steady interference pattern. The path difference corresponding to 10\(^{th}\) order maximum will be
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45Wave Optics
In Young's experiment, fringes are obtained on a screen placed at a distance \(75 \mathrm{~cm}\) from the slits. When the separation between two narrow slits is doubled, then the fringe width is decreased. In order to obtain the initial fri...
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46Wave Optics
Two coherent sources 'P' and 'Q' produce interference at point 'A' on the screen, where there is a dark band which is formed between 4th and 5th bright band. Wavelength of light used is 6000 \(\mathop A\limits^o\). The path difference PA a...
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47Waves
Equation of two simple harmonic waves are given by \({Y_1} = 2\sin 8\pi \left( {{t \over {0.2}} - {x \over 2}} \right)m\) and \({Y_2} = 4\sin 8\pi \left( {{t \over {0.16}} - {x \over {1.6}}} \right)m\) then both waves have
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48Waves
A pipe closed at one end has length \(0.8 \mathrm{~m}\). At its open end \(0.5 \mathrm{~m}\) long uniform string is vibrating in its \(2^{\text {nd }}\) harmonic and it resonates with the fundamental frequency of the pipe. If the tension in...
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49Waves
The equation of simple harmonic wave produced in the string under tension \(0.4 \mathrm{~N}\) is given by \(\mathrm{y=4 \sin (3 x+60 t) ~m}\). The mass per unit length of the string is
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50Work Energy And Power
Three bodies P, Q and R have masses 'm' kg, '2m' kg and '3m' kg respectively. If all the bodies have equal kinetic energy, then greater momentum will be for body/bodies.
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