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NEET Mock Test - 29 - NEET MCQ


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30 Questions MCQ Test Additional Study Material for NEET - NEET Mock Test - 29

NEET Mock Test - 29 for NEET 2024 is part of Additional Study Material for NEET preparation. The NEET Mock Test - 29 questions and answers have been prepared according to the NEET exam syllabus.The NEET Mock Test - 29 MCQs are made for NEET 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for NEET Mock Test - 29 below.
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NEET Mock Test - 29 - Question 1

The coil of choke in a circuit

NEET Mock Test - 29 - Question 2

Sharp peak point A represents

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NEET Mock Test - 29 - Question 3

When a proton is accelerated with 1 volt potential difference, then its kinetic energy is

NEET Mock Test - 29 - Question 4

The threshold frequency for photo electric effect for a metal surface is found to be 4. 8 x 1016 H z . The stopping potential required when the metal is irradiated by radiation of frequency 5.6 x 1016 H z is (taking h = 6.6 x 10 − 34 J sec and e = 1.6 x 10 − 19 C)

Detailed Solution for NEET Mock Test - 29 - Question 4

NEET Mock Test - 29 - Question 5

Cream gets separated out of milk when it is churned, it is due to

NEET Mock Test - 29 - Question 6

We have two wires A and B of same mass and same material. The diameter of the wire A is half of that B. If the resistance of wire A is 24 ohm then the resistance of wire B will be

NEET Mock Test - 29 - Question 7

For a cell terminal potential difference is 2.2 V When circuit is open and reduces to 1.8 V when cell is connected to a resistance of R=5 Ω. Determine the internal resistance of the cell (r)

NEET Mock Test - 29 - Question 8

Photon of 5.5eV energy fall on the surface of the metal emitting photoelectrons of maximum kinetic energy 4.0eV. The stopping voltage required for these electrons are

Detailed Solution for NEET Mock Test - 29 - Question 8

Energy of photon is 5.5 eV and the maximum kinetic energy of the photo electrons is 4 eV.

The maximum kinetic energy is given by :

Emax = eVo

Vo is stopping potential

4 eV = eVo

Vo = 4V

So, the stopping  voltage required for these electrons is 4 volt.

These all three waves are of very high frequency such as frequency of microwave is 300 ghz,infrared 430 thz so this frequency can't produce these higher waves . The correct option is b

NEET Mock Test - 29 - Question 9

Which of the following statements is correct

NEET Mock Test - 29 - Question 10

In photoelectric effect if the intensity of light is doubled then maximum kinetic energy of photoelectrons will become

NEET Mock Test - 29 - Question 11

Out of the folowing statement which is NOT true?

NEET Mock Test - 29 - Question 12

A loop of area 0.1 m2 rotates with a speed of 60 rps perpendicualr to a magnetic field of 0.4 T. If there are 100 turns in the loop, maximum voltage induced in the loop is

NEET Mock Test - 29 - Question 13

Which of the following electromagnetic waves have the smallest wavelength?

NEET Mock Test - 29 - Question 14

The electric field intensity of the surface of a solid charged sphere of radius r and volume charge density ρ, is given by

NEET Mock Test - 29 - Question 15

The ratio of charge to potential of a capacitor is known as its

NEET Mock Test - 29 - Question 16

A black body has a wavelength of λ at temperature 2000 K. Its corresponding wavelength at temperature 3000 K will be

NEET Mock Test - 29 - Question 17

Radius of the earth is 6400 km. The radius of the orbit of a stationary satellite is about

NEET Mock Test - 29 - Question 18

At a given temperature the ratio of r.m.s. velocities of hydrogen molecule and helium atom will be

NEET Mock Test - 29 - Question 19

The vector sum of two forces is perpendicular to their vector differences. In that case, the forces

Detailed Solution for NEET Mock Test - 29 - Question 19

If two vector are perpendicular then their dot product must be equal to zero. According to problem

i.e., two vector are equal to each other in magnitude.

NEET Mock Test - 29 - Question 20

A galvanometer of resistance 100Ω gives full scale deflection, when 100 μA current is passed through it. If it is used as an ammeter by using a resistance of 0.1 Ω, then minimum value of current in the circuit so that ammeter gives full scale deflection now is,

NEET Mock Test - 29 - Question 21

If a diamagnetic solution is poured into a U-tube and one arm of this U-tube is placed between the poles of a strong magnet, with the meniscus in line with the field, then the level of solution will

NEET Mock Test - 29 - Question 22

The pole strength of a 12cm long bar magnet is 20 A-m. The magnetic induction at a point 10cm away from the centre of the magnet on its axial line is

Detailed Solution for NEET Mock Test - 29 - Question 22

We known 2l = 12cm = 0.12m
m = 20 Am and d = 0.1m

NEET Mock Test - 29 - Question 23

A capillary tube when immersed vertically in a liquid records a rise of 3 mm. If the tube is immersed in the liquid at an angle of 60° with the vertical, then height of the liquid in the capillary tube will be

NEET Mock Test - 29 - Question 24

Two wires of same radius and length are subjected to the same load. One wire is of steel and the other is of copper. If Young's modulus of steel is twice that of copper, then ratio of elastic potential energies stored per unit volume in steel wire to that in copper wire is

NEET Mock Test - 29 - Question 25

The function of the moderator in a nuclear reactor is

NEET Mock Test - 29 - Question 26

The work done by a simple pendulum, in one complete oscillations, is

NEET Mock Test - 29 - Question 27

In a Rutherford scattering experiment when a projectile of charge z1 and mass M1 approaches a target nucleus of charge z2 and mass M2, the distance of closest approach is r0. The energy of the projectile is:

NEET Mock Test - 29 - Question 28

The amount of energy released when one milligram of matter is annihilated is

NEET Mock Test - 29 - Question 29

A convex lens of focal length 0.5 m and concave lens of focal length 1 m are combined .The power of resulting lens will be

NEET Mock Test - 29 - Question 30

The refracting angle of a prism A is small. The correct statement for the dispersive power of a prism is that dispersive power

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