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NEET 2024 (Re-Examination)

NEET / 50 questions

2026Mon, Jun 24, 2024 8:30 AM50 PYQs
1Alternating Current
A step up transformer is connected to an ac mains supply of \(220 \mathrm{~V}\) to operate at \(11000 \mathrm{~V}, 88\) watt. The current in the secondary circuit, ignoring the power loss in the transformer, is
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2Alternating Current
The amplitude of the charge oscillating in a circuit decreases exponentially as \(Q=Q_0 e^{-R t/2 L}\), where \(Q_0\) is the charge at \(t=0 \mathrm{~s}\). The time at which charge amplitude decreases to \(0.50 Q_0\) is nearly:
[Given that ...
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3Alternating Current
In the circuit shown below, the inductance \(L\) is connected to an ac source. The current flowing in the circuit is \(I=I_0 \sin \omega t\). The voltage drop \(\left(V_L\right)\) across \(L\) is
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4Atoms And Nuclei
The spectral series which corresponds to the electronic transition from the levels \(n_2=5,6, \ldots\) to the level \(n_1=4\) is
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5Atoms And Nuclei
Water is used as a coolant in a nuclear reactor because of its
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6Atoms And Nuclei
Select the correct statements among the following :
A. Slow neutrons can cause fission in \({ }_{92}^{235} \mathrm{U}\) than fast neutrons.
B. \(\alpha\)-rays are Helium nuclei.
C. \(\beta\)-rays are fast moving electrons or positrons.
D. $...
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7Atoms And Nuclei
Some energy levels of a molecule are shown in the figure with their wavelengths of transitions. Then :
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8Capacitor
A \(12 \mathrm{~pF}\) capacitor is connected to a \(50 \mathrm{~V}\) battery, the electrostatic energy stored in the capacitor in \(\mathrm{nJ}\) is
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9Capacitor
The capacitance of a capacitor with charge \(q\) and a potential difference \(V\) depends on
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10Capacitor
The steady state current in the circuit shown below is :
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11Current Electricity
A uniform wire of diameter \(d\) carries a current of \(100 \mathrm{~mA}\) when the mean drift velocity of electrons in the wire is \(v\). For a wire of diameter \(\frac{d}{2}\) of the same material to carry a current of $$200 \mathrm{~mA}$...
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12Current Electricity
The given circuit shows a uniform straight wire \(A B\) of \(40 \mathrm{~cm}\) length fixed at both ends. In order to get zero reading in the galvanometer \(G\), the free end of \(J\) is to be placed from \(B\) at:
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13Current Electricity
A uniform metal wire of length \(l\) has \(10 \Omega\) resistance. Now this wire is stretched to a length \(2l\) and then bent to form a perfect circle. The equivalent resistance across any arbitrary diameter of that circle is
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14Dual Nature Of Radiation And Matter
An electron and an alpha particle are accelerated by the same potential difference. Let \(\lambda_e\) and \(\lambda_\alpha\) denote the de-Broglie wavelengths of the electron and the alpha particle, respectively, then:
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15Dual Nature Of Radiation And Matter
If \(\phi\) is the work function of photosensitive material in \(\mathrm{eV}\) and light of wavelength of numerical value \(\lambda=\frac{h c}{e}\) metre, is incident on it with energy above its threshold value at an instant then the maximu...
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16Electromagnetic Induction
Let us consider two solenoids \(A\) and \(B\), made from same magnetic material of relative permeability \(\mu_r\) and equal area of cross-section. Length of \(A\) is twice that of \(B\) and the number of turns per unit length in \(A\) is h...
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17Electromagnetic Waves
The electromagnetic radiation which has the smallest wavelength are
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18Electromagnetic Waves
If the ratio of relative permeability and relative permittivity of a uniform medium is \(1: 4\). The ratio of the magnitudes of electric field intensity \((E)\) to the magnetic field intensity \((H)\) of an EM wave propagating in that mediu...
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19Electrostatics
A metal cube of side \(5 \mathrm{~cm}\) is charged with \(6 \mu \mathrm{C}\). The surface charge density on the cube is
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20Electrostatics
The value of electric potential at a distance of \(9 \mathrm{~cm}\) from the point charge \(4 \times 10^{-7} \mathrm{C}\) is [Given \(\frac{1}{4 \pi \varepsilon_0}=9 \times 10^9 \mathrm{~N} \mathrm{~m}^2 \mathrm{C}^{-2}\)] :
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21Geometrical Optics
Given below are two statements:
Statement I : Image formation needs regular reflection and/or refraction.
Statement II : The variety in colour of objects we see around us is due to the constituent colours of the light incident on them.
In t...
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22Gravitation
The escape velocity for earth is \(v\). A planet having 9 times mass that of earth and radius, 16 times that of earth, has the escape velocity of:
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23Gravitation
An object of mass \(100 \mathrm{~kg}\) falls from point \(A\) to \(B\) as shown in figure. The change in its weight, corrected to the nearest integer is (\(R_E\) is the radius of the earth)
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24Heat And Thermodynamics
Given below are two statements: One is labelled as Assertion \(\mathbf{A}\) and the other is labelled as Reason \(\mathbf{R}\).
Assertion A: Houses made of concrete roofs overlaid with foam keep the room hotter during summer.
Reason R: The ...
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25Heat And Thermodynamics
The equilibrium state of a thermodynamic system is described by
A. Pressure
B. Total heat
C. Temperature
D. Volume
E. Work done
Choose the most appropriate answer from the options given below.
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26Heat And Thermodynamics
According to the law of equipartition of energy, the number of vibrational modes of a polyatomic gas of constant \(\gamma=\frac{C_p}{C_v}\) is (\(C_P\) where \(C_V\) are the specific heat capacities of the gas at constant pressure and const...
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27Laws Of Motion
A box of mass \(5 \mathrm{~kg}\) is pulled by a cord, up along a frictionless plane inclined at \(30^{\circ}\) with the horizontal. The tension in the cord is \(30 \mathrm{~N}\). The acceleration of the box is (Take $$g=10 \mathrm{~m} \math...
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28Magnetism And Matter
The magnetic potential energy, when a magnetic bar of magnetic moment \(\vec{m}\) is placed perpendicular to the magnetic field \(\vec{B}\) is
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29Magnetism And Matter
The incorrect relation for a diamagnetic material (all the symbols carry their usual meaning and \(\varepsilon\) is a small positive number) is
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30Magnetism And Matter
The magnetic moment and moment of inertia of a magnetic needle as shown are, respectively, \(1.0 \times 10^{-2} \mathrm{~A} \mathrm{~m}^2\) and \(\frac{10^{-6}}{\pi^2} \mathrm{~kg} \mathrm{~m}^2\). If it completes 10 oscillations in $$10 \m...
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31Magnetism And Matter
The magnetic moment of an iron bar is \(M\). It is now bent in such a way that it forms an arc section of a circle subtending an angle of \(60^{\circ}\) at the centre. The magnetic moment of this arc section is
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32Motion In A Plane
A bob is whirled in a horizontal circle by means of a string at an initial speed of \(10 \mathrm{~rpm}\). If the tension in the string is quadrupled while keeping the radius constant, the new speed is:
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33Motion In A Plane
Let \(\omega_1, \omega_2\) and \(\omega_3\) be the angular speed of the second hand, minute hand and hour hand of a smoothly running analog clock, respectively. If \(x_1, x_2\) and \(x_3\) are their respective angular distances in 1 minute ...
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34Motion In A Straight Line
A particle is moving along \(x\)-axis with its position (x) varying with time \((t)\) as \(x=\alpha t^4+\beta t^2+\gamma t+\delta\). The ratio of its initial velocity to its initial acceleration, respectively, is:
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35Oscillations
A particle executing simple harmonic motion with amplitude A has the same potential and kinetic energies at the displacement
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36Oscillations
The two-dimensional motion of a particle, described by \(\vec{r}=(\hat{i}+2 \hat{j}) A \cos \omega t\) is a/an:
A. parabolic path
B. elliptical path
C. periodic motion
D. simple harmonic motion
Choose the correct answer from the options giv...
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37Properties Of Matter
An ideal fluid is flowing in a non-uniform cross-sectional tube \(X Y\) (as shown in the figure) from end \(X\) to end \(Y\). If \(K_1\) and \(K_2\) are the kinetic energy per unit volume of the fluid at \(X\) and \(Y\) respectively, then t...
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38Rotational Motion
The radius of gyration of a solid sphere of mass \(5 \mathrm{~kg}\) about \(X Y\) is \(5 \mathrm{~m}\) as shown in figure. The radius of the sphere is \(\frac{5 x}{\sqrt{7}} \mathrm{~m}\), then the value of $x$ is:
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39Semiconductor Electronics
When the output of an OR gate is applied as input to a NOT gate, then the combination acts as a
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40Semiconductor Electronics

The I-V characteristics shown above are exhibited by a
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41Semiconductor Electronics
The output Y for the inputs A and B of the given logic circuit is:
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42Units And Measurement
In an electrical circuit, the voltage is measured as \(V=(200 \pm 4)\) volt and the current is measured as \(I=(20 \pm 0.2)\) A. The value of the resistance is:
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43Units And Measurement
The pitch of an error free screw gauge is \(1 \mathrm{~mm}\) and there are 100 divisions on the circular scale. While measuring the diameter of a thick wire, the pitch scale reads \(1 \mathrm{~mm}\) and \(63^{\text {rd }}\) division on the ...
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44Units And Measurement
The potential energy of a particle moving along \(x\)-direction varies as \(V=\frac{A x^2}{\sqrt{x}+B}\). The dimensions of \(\frac{A^2}{B}\) are:
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45Wave Optics
Two slits in Young's double slit experiment are \(1.5 \mathrm{~mm}\) apart and the screen is placed at a distance of \(1 \mathrm{~m}\) from the slits. If the wavelength of light used is \(600 \times 10^{-9} \mathrm{~m}\) then the fringe sep...
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46Wave Optics
Interference pattern can be observed due to superposition of the following waves:
A. \(y=a \sin \omega t\)
B. \(y=a \sin 2 \omega t\)
C. \(y=a \sin (\omega t-\phi)\)
D. \(y=a \sin 3 \omega t\)
Choose the correct answer from the options give...
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47Wave Optics
A beam of unpolarized light of intensity I0 is passed through a polaroid A, then through another polaroid B,
oriented at \(60^\circ\) and finally through another polaroid C, oriented at 45\(^\circ\) relative to B as shown. The intensity of
...
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48Waves
The displacement of a travelling wave \(y=C \sin \frac{2 \pi}{\lambda}\) (at \(-x\)) where \(t\) is time, \(x\) is distance and \(\lambda\) is the wavelength, all in S.I. units. Then the frequency of the wave is
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49Work Energy And Power
An object moving along horizontal \(x\)-direction with kinetic energy \(10 \mathrm{~J}\) is displaced through \(x=(3 \hat{i}) \mathrm{m}\) by the force \(\vec{F}=(-2 \hat{i}+3 \hat{j}) \mathrm{N}\). The kinetic energy of the object at the e...
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50Work Energy And Power
An object falls from a height of \(10 \mathrm{~m}\) above the ground. After striking the ground it loses \(50 \%\) of its kinetic energy. The height upto which the object can rebounce from the ground is:
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