1
WB JEE 2024
MCQ (Single Correct Answer)
+1
-0.25
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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 $$3^{\text {rd }}$$ diffraction minimum for $$\lambda_2$$. Then

A
$$\frac{\lambda_1}{\lambda_2}=\frac{2}{3}$$
B
$$\frac{\lambda_1}{\lambda_2}=\frac{5}{7}$$
C
$$\frac{\lambda_1}{\lambda_2}=\frac{3}{2}$$
D
$$\frac{\lambda_1}{\lambda_2}=\frac{7}{5}$$
2
WB JEE 2024
MCQ (Single Correct Answer)
+1
-0.25
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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

WB JEE 2024 Physics - Motion Question 1 English

A
WB JEE 2024 Physics - Motion Question 1 English Option 1
B
WB JEE 2024 Physics - Motion Question 1 English Option 2
C
WB JEE 2024 Physics - Motion Question 1 English Option 3
D
WB JEE 2024 Physics - Motion Question 1 English Option 4
3
WB JEE 2024
MCQ (Single Correct Answer)
+1
-0.25
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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 $$\theta$$ with the $$x$$-axis as shown in the figure. The variation of the angular momentum of the particle about the origin with $$\theta$$ will be

WB JEE 2024 Physics - Rotational Motion Question 1 English

A
WB JEE 2024 Physics - Rotational Motion Question 1 English Option 1
B
WB JEE 2024 Physics - Rotational Motion Question 1 English Option 2
C
WB JEE 2024 Physics - Rotational Motion Question 1 English Option 3
D
WB JEE 2024 Physics - Rotational Motion Question 1 English Option 4
4
WB JEE 2024
MCQ (Single Correct Answer)
+1
-0.25
Change Language

WB JEE 2024 Physics - Center of Mass Question 1 English

The position of the centre of mass of the uniform plate as shown in the figure is

A
$$\left(-\frac{\mathrm{a}}{2},-\frac{\mathrm{b}}{2}\right)$$
B
$$\left(\frac{\mathrm{a}}{8}, \frac{\mathrm{b}}{8}\right)$$
C
$$\left(-\frac{\mathrm{b}}{6},-\frac{\mathrm{a}}{6}\right)$$
D
$$\left(-\frac{a}{6},-\frac{b}{6}\right)$$
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