Magnetic Flux

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Magnetic Flux: Overview

This Topic covers sub-topics such as Magnetic Flux, Magnetic Flux for Constant Magnetic Field and, Magnetic Flux for Variable Magnetic Field

Important Questions on Magnetic Flux

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The magnetic flux through each of five faces of a neutral playing dice is given ϕ B = ± NWb , where N (= 1 to 5) is the number of spots on the face. The flux is positive (out-ward) for N even and negative (inward) for N odd. What is the flux through the sixth face of the die?

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(i) In an a.c. generator, coil of N turns and area A is rotated at v revolution per second in a uniform magnetic field B. Write the expression for the emf produced.

(ii) A 100 turn coil of area   0.1  m 2  rotates at half a revolution per second. It is placed in a magnetic field 0.01 T perpendicular to the axis of rotation of the coil. Calculate the maximum voltage generated in the coil.

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The dimensional formula of magnetic flux is

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When the current in a coil changes from 5 A to 2 A in 0.1 s, an average voltage of 50 V is produced. The self-inductance of the coil is

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A circuit consists of a coil with inductance L and an uncharged capacitor of capacitance C. The coil is in a constant uniform magnetic field such that the flux through the coil is ϕ. At time t=0 min, the magnetic field is abruptly switched OFF. Let ω0=1/LC and ignore the resistance of the circuit. Then,

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Which one is the correct relation between magnetic flux ϕ. magnetic field (B), area surface A and angle between the magnetic field lines and perpendicular distance normal to the surface area(θ)

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Which of the following operations between the magnetic field and the area gives the magnetic flux?

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The above plot represents the variation of induced current in a coil of 10 Ω resistance with time. If the current is induced due to change in magnetic flux linked with the coil, then find the magnitude of change in flux through the coil during t=0 to t=5 s:

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A circular loop of radius 0.3 cm is parallel to a much bigger circular loop of radius 20 cm. Both loops are co-axial. The distance between their centres is 15 cm. If a current of 2.0 A flows through the smaller loop, then what is the flux linked with the bigger loop?

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A circular coil of wire carrying constant current I, forms a magnetic dipole. The magnetic flux through an infinite plane that contains the circular coil and excluding the circular coil area is given by ϕ. The magnetic flux through the area of the circular coil area is given by ϕ0. Choose correct option:

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An infinitely long cylinder is kept parallel to a uniform magnetic field B direction along positive z-axis. The direction of induced current on the surface of cylinder a seen from the z-axis will be

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The phase difference between the flux linked with a coil rotating in a uniform magnetic field and induced emf produced in it is

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A coil of area 5 cm2 having 20 turns is placed in a uniform magnetic field of 103 gauss. The normal to the plane of coil makes an angle 30o with the magnetic field. The flux through the coil is

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A material of 0.25 cm2 cross-sectional area is placed in a magnetic field of strength (H) 1000 A m-1 . Then the magnetic flux produced is (Susceptibility of material is 313) (Permeability of free space, μ0=4π×10-7 H m-1) 

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Which of the following instruments is used to measure magnetic field

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In given figure, a wire loop has been bent so that it has three segments ab (a quarter circle), bc (a square corner) & ca (straight line). Here are three choices for a magnetic field through the loop


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(i) B1=3i^+7j^-5tk^

(ii) B2=5ti^+4j^-15k^

(iii) B3=2i^-5tj^-12k^ where B is in milli tesllas and t is in second if the induced current in the loop due to B1 , B2, B3 are i1, i2, i3 respectively then4

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In given figure, a wire loop has been bent so that it has three segments AB (a quarter circle), BC (a square corner) & CA (straight). Here are three choices for a magnetic field through the loop -

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(i) B1=3i^+7j^-5tk^

(ii) B2=5ti^-4j^-15k^

(iii) B3=2i^-5t j^-12k^

Where B is in milli tesla and t is in second if the induced current in the loop due to B1, B2, B3 are i1, i2, i3 respectively, then-

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If the magnetic field is parallel to a surface, then the magnetic flux through the surface is

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Assertion: The net magnetic flux coming out of a closed surface is always zero.

Reason: Unlike poles of equal strength exist together.

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Assertion: The magnetic flux through a closed surface is zero

Reason: Gauss's law is applied in the case of electric flux only