WB JEE 2024
WB JEE / 40 questions
2026Sun, Apr 28, 2024 4:30 AM40 PYQs
1Alternating Current
In a series LCR circuit, the rms voltage across the resistor and the capacitor are \(30 \mathrm{~V}\) and \(90 \mathrm{~V}\) respectively. If the applied voltage is \(50 \sqrt{2} \sin \omega t\), then the peak voltage across the inductor i...
MCQ+1 / -0.252024
2Alternating Current
The variation of impedance \(\mathrm{Z}\) of a series \(\mathrm{L C R}\) circuit with frequency of the source is shown in the figure. Which of the following statement(s) is/are true ?
MCQM+2 / -02024
3Atoms And Nuclei
Which of the following statement(s) is/are truc in respect of nuclear binding energy ?
(i) The mass energy of a nucleus is larger than the total mass energy of its individual protons and neutrons.
(ii) If a nucleus could be separated into i...
(i) The mass energy of a nucleus is larger than the total mass energy of its individual protons and neutrons.
(ii) If a nucleus could be separated into i...
MCQ+1 / -0.252024
4Capacitor
The equivalent capacitance of a combination of connected capacitors shown in the figure between the points \(\mathrm{P}\) and \(\mathrm{N}\) is
MCQ+1 / -0.252024
5Center Of Mass
A uniform rod \(\mathrm{AB}\) of length \(1 \mathrm{~m}\) and mass \(4 \mathrm{~kg}\) is sliding along two mutually perpendicular frictionless walls OX and OY. The velocity of the two ends of the \(\operatorname{rod} \mathrm{A}\) and $$\ma...
MCQM+2 / -02024
6Center Of Mass
The position of the centre of mass of the uniform plate as shown in the figure is
MCQ+1 / -0.252024
7Current Electricity
Consider a circuit where a cell of emf \(E_0\) and internal resistance \(\mathrm{r}\) is connected across the terminal \(\mathrm{A}\) and \(\mathrm{B}\) as shown in figure. The value of \(\mathrm{R}\) for which the power generated in the c...
MCQ+1 / -0.252024
8Dual Nature Of Radiation
Monochromatic light of wavelength \(\lambda=4770 \mathop A\limits^o\) is incident separately on the surfaces of four different metals A, B, C and D. The work functions of A, B, C and D are $$4.2 \mathrm{~eV}, 3.7 \mathrm{~eV}, 3.2 \mathrm{...
MCQM+2 / -02024
9Dual Nature Of Radiation
A beam of light of wavelength \(\lambda\) falls on a metal having work function \(\phi\) placed in a magnetic field B. The most energetic electrons, perpendicular to the field are bent in circular arcs of radius R. If the experiment is perf...
MCQ+1 / -0.252024
10Electromagnetic Induction
Two straight conducting plates form an angle \(\theta\) where their ends are joined. A conducting bar in contact with the plates and forming an isosceles triangle with them starts at the vertex at time \(t=0\) and moves with constant veloci...
MCQ+1 / -0.252024
11Electromagnetic Waves
The electric field of a plane electromagnetic wave in a medium is given by
\(\overrightarrow{\mathrm{E}}(x, y, z, t)=\mathrm{E}_0 \hat{\mathrm{n}} \mathrm{e}^{i k_o[(x+y+z)-c t]}\)
where \(\mathrm{c}\) is the speed of light in free space....
\(\overrightarrow{\mathrm{E}}(x, y, z, t)=\mathrm{E}_0 \hat{\mathrm{n}} \mathrm{e}^{i k_o[(x+y+z)-c t]}\)
where \(\mathrm{c}\) is the speed of light in free space....
MCQM+2 / -02024
12Electronic Devices
In the given network of AND and OR gates, output Q can be written as (assuming n even)
MCQ+2 / -0.52024
13Electronic Devices
A \(2 \mathrm{~V}\) cell is connected across the points \(\mathrm{A}\) and \(\mathrm{B}\) as shown in the figure. Assume that the resistance of each diode is zero in forward bias and infinity in reverse bias. The current supplied by the cel...
MCQ+1 / -0.252024
14Electrostatics
Consider the integral form of the Gauss' law in electrostatics
\(\oint {\overrightarrow E .d\overrightarrow S } = {Q \over {{\varepsilon _0}}}\)
Which of the following statements are correct?
\(\oint {\overrightarrow E .d\overrightarrow S } = {Q \over {{\varepsilon _0}}}\)
Which of the following statements are correct?
MCQM+2 / -02024
15Electrostatics
Three point charges \(\mathrm{q},-2 \mathrm{q}\) and \(\mathrm{q}\) are placed along \(x\) axis at \(x=-{a}, 0\) and $a$ respectively. As \(\mathrm{a} \rightarrow 0\) and \(\mathrm{q} \rightarrow \infty\) while $$\mathrm{q} \mathrm{a}^2=\ma...
MCQ+1 / -0.252024
16Electrostatics
A charge Q is placed at the centre of a cube of sides a. The total flux of electric field through the six surfaces of the cube is
MCQ+1 / -0.252024
17Geometrical Optics
When a convex lens is placed above an empty tank, the image of a mark at the bottom of the tank, which is 45 cm from the lens is formed 36 cm above the lens. When a liquid is poured in the tank to a depth of 40 cm, the distance of the image...
MCQ+2 / -0.52024
18Geometrical Optics
If \(\hat{n}_1, \hat{n}_2\) and \(\hat{\mathrm{t}}\) represent, unit vectors along the incident ray, reflected ray and normal to the surface respectively, then
MCQ+1 / -0.252024
19Geometrical Optics
Two convex lens \((\mathrm{L}_1\) and \(\mathrm{L}_2)\) of equal focal length \(\mathrm{f}\) are placed at a distance \(\frac{\mathrm{f}}{2}\) apart. An object is placed at a distance \(4 \mathrm{f}\) in the left of \(\mathrm{L_1}\) as show...
MCQ+1 / -0.252024
20Gravitation
A satellite of mass \(\mathrm{m}\) rotates round the earth in a circular orbit of radius R. If the angular momentum of the satellite is J, then its kinetic energy \((\mathrm{K})\) and the total energy (E) of the satellite are
MCQ+1 / -0.252024
21Heat And Thermodynamics
The internal energy of a thermodynamic system is given by \(U=a s^{4 / 3} V^\alpha\) where \(\mathrm{s}\) is entropy, \(\mathrm{V}\) is volume and '\(\mathrm{a}\)' and '\(\alpha\)' are constants. The value of \(\alpha\) is
MCQ+1 / -0.252024
22Heat And Thermodynamics
The speed distribution for a sample of \(\mathrm{N}\) gas particles is shown below. \(\mathrm{P}(\mathrm{v})=0\) for \(\mathrm{v}>2 \mathrm{v}_0\). How many particles have speeds between \(1.2 \mathrm{v}_0\) and \(1.8 \mathrm{v}_0\) ?
MCQ+1 / -0.252024
23Laws Of Motion
What force \(\mathrm{F}\) is required to start moving this \(10 \mathrm{~kg}\) block shown in the figure if it acts at an angle of \(60^{\circ}\) as shown? \((\mu_s=0.6)\)
MCQ+1 / -0.252024
24Magnetism
A charged particle moving with a velocity \(\vec{v}=v_1 \hat{i}+v_2 \hat{j}\) in a magnetic field \(\vec{B}\) experiences a force \(\vec{F}=F_1 \hat{i}+F_2 \hat{j}\). Here \(v_1, v_2, F_1, F_2\) all are constants. Then $$\overrightarrow{\ma...
MCQ+1 / -0.252024
25Motion
The acceleration-time graph of a particle moving in a straight line is shown in the figure. If the initial velocity of the particle is zero then the velocity-time graph of the particle will be
MCQ+1 / -0.252024
26Properties Of Matter
A metal plate of area \(10^{-2} \mathrm{~m}^2\) rests on a layer of castor oil, \(2 \times 10^{-3} \mathrm{~m}\) thick, whose coefficient of viscosity is \(1.55 \mathrm{~Ns} \mathrm{~m}^{-2}\). The approximate horizontal force required to m...
MCQ+2 / -0.52024
27Properties Of Matter
The elastic potential energy of a strained body is
MCQ+1 / -0.252024
28Properties Of Matter
A body floats with \(\frac{1}{n}\) of its volume keeping outside of water. If the body has been taken to height \(\mathrm{h}\) inside water and released, it will come to the surface after time t. Then
MCQ+1 / -0.252024
29Properties Of Matter
Water is filled in a cylindrical vessel of height \(\mathrm{H}\). A hole is made at height \(\mathrm{z}\) from the bottom, as shown in the figure. The value of z for which the range (R) of the emerging water through the hole will be maximum...
MCQ+2 / -0.52024
30Rotational Motion
A small sphere of mass m and radius r slides down the smooth surface of a large hemispherical bowl of radius R. If the sphere starts sliding from rest, the total kinetic energy of the sphere at the lowest point \(\mathrm{A}\) of the bowl wi...
MCQ+1 / -0.252024
31Rotational Motion
A small ball of mass m is suspended from the ceiling of a floor by a string of length \(\mathrm{L}\). The ball moves along a horizontal circle with constant angular velocity \(\omega\), as shown in the figure. The torque about the centre (...
MCQ+1 / -0.252024
32Rotational Motion
The position vector of a particle of mass \(\mathrm{m}\) moving with a constant velocity \(\vec{v}\) is given by \(\vec{r}=x(t) \hat{i}+b \hat{j}\), where \(\mathrm{b}\) is a constant. At an instant, \(\vec{r}\) makes an angle \(\theta\) wi...
MCQ+1 / -0.252024
33Simple Harmonic Motion
A particle of mass '\(m\)' moves in one dimension under the action of a conservative force whose potential energy has the form of \(U(x)=-\frac{\alpha x}{x^2+\beta^2}\) where \(\alpha\) and \(\beta\) are dimensional parameters. The angular ...
MCQ+1 / -0.252024
34Units And Measurements
Which of the following quantity has the dimension of length ?
(h is Planck's constant, m is the mass of electron and c is the velocity of light)
(h is Planck's constant, m is the mass of electron and c is the velocity of light)
MCQ+1 / -0.252024
35Units And Measurements
The Power \((\mathrm{P})\) radiated from an accelerated charged particle is given by \(\mathrm{P} \propto \frac{(q \mathrm{a})^{\mathrm{m}}}{\mathrm{c}^{\mathrm{n}}}\) where \(\mathrm{q}\) is the charge, \(\mathrm{a}\) is the acceleration o...
MCQ+1 / -0.252024
36Vector Algebra
Let \(\theta\) be the angle between two vectors \(\vec{A}\) and \(\vec{B}\). If \(\hat{a}_{\perp}\) is the unit vector perpendicular to \(\vec{A}\), then the direction of $$
\overrightarrow{\mathrm{B}}-\mathrm{B} \sin \theta \hat{\mathrm{a}...
\overrightarrow{\mathrm{B}}-\mathrm{B} \sin \theta \hat{\mathrm{a}...
MCQ+1 / -0.252024
37Wave Optics
Light of wavelength \(6000 \mathop A\limits^o\) is incident on a thin glass plate of r.i. 1.5 such that the angle of refraction into the plate is \(60^{\circ}\). Calculate the smallest thickness of the plate which will make dark fringe by r...
MCQ+1 / -0.252024
38Wave Optics
In a single-slit diffraction experiment, the slit is illuminated by light of two wavelengths \(\lambda_1\) and \(\lambda_2\). It is observed that the \(2^{\text {nd }}\) order diffraction minimum for \(\lambda_1\) coincides with the $$3^{\t...
MCQ+1 / -0.252024
39Waves
Longitudinal waves cannot
MCQ+1 / -0.252024
40Work Power And Energy
The following figure shows the variation of potential energy \(V(x)\) of a particle with distance \(x\). The particle has
MCQ+2 / -0.52024
