1
JEE Main 2025 (Online) 8th April Evening Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

A body of mass 2 kg moving with velocity of $ \vec{v}_{in} = 3 \hat{i} + 4 \hat{j} \text{ ms}^{-1} $ enters into a constant force field of 6N directed along positive z-axis. If the body remains in the field for a period of $ \frac{5}{3} $ seconds, then velocity of the body when it emerges from force field is.

A

$ 3\hat{i} + 4\hat{j} + \sqrt{5} \hat{k} $

B

$ 4\hat{i} + 3\hat{j} + 5\hat{k} $

C

$ 3\hat{i} + 4\hat{j} - 5\hat{k} $

D

$ 3\hat{i} + 4\hat{j} + 5\hat{k} $

2
JEE Main 2025 (Online) 8th April Evening Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

A block of mass 2 kg is attached to one end of a massless spring whose other end is fixed at a wall. The spring-mass system moves on a frictionless horizontal table. The spring's natural length is 2 m and spring constant is 200 N/m. The block is pushed such that the length of the spring becomes 1 m and then released. At distance x m (x < 2) from the wall, the speed of the block will be

A

$10\left[1-(2-x)^2\right]^{\frac{1}{2}} \ m/s$

B

$10\left[1-(2-x)^2\right]^{\frac{3}{2}} \ m/s$

C

$10\left[1-(2-x)^2\right] \ m/s$

D

$10\left[1-(2-x)^2\right]^2 \ m/s$

3
JEE Main 2025 (Online) 8th April Evening Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

In a Young's double slit experiment, the source is white light. One of the slits is covered by red filter and another by a green filter. In this case:

A

there shall be alternate interference fringes of red and green.

B

there shall be an interference pattern for red distinct from that for green.

C

there shall be an interference pattern, where each fringe's pattern center is green and outer edges is red.

D

there shall be no interference fringes.

4
JEE Main 2025 (Online) 8th April Evening Shift
Numerical
+4
-1
Change Language

A sample of a liquid is kept at 1 atm. It is compressed to 5 atm which leads to a change of volume of 0.8 cm3. If the bulk modulus of the liquid is 2 GPa, the initial volume of the liquid was _______ litre.

(Take 1 atm = 105 Pa)

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