Lesson 3.7.5.4
3.7.5.4 Electromagnetic induction Quiz: AQA Physics, Unit 7
20 questions
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Lesson 3.7.5.4, Electromagnetic induction: 20 multiple choice questions for the AQA Physics (7408), Unit 7: Fields and their consequences (A-level only), written with Revision Ninja.
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The 20 questions
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What does Faraday's law state about the magnitude of an induced emf?
- It equals the flux linkage divided by the time taken
- It equals the current multiplied by the flux linkage
- It equals the rate of change of flux linkage
- It equals the flux density multiplied by the coil area
-
What does Lenz's law state about the direction of an induced current?
- It flows in a direction that opposes the change producing it
- It flows in the same direction as the change in flux, to add to it
- It always flows in the direction that increases the change in flux
- It is independent of the direction in which the flux is changing
-
Which equation gives the induced emf in a coil of N turns when the flux changes by delta Phi in time delta t?
- emf = N x delta Phi / delta t
- emf = N x Phi / delta t
- emf = N x B x delta t / A
- emf = N x delta Phi / delta t squared
-
A 200-turn coil has flux changing from 0 to 5.0 x 10^-4 Wb in 0.10 s. What is the average induced emf?
- 0.10 V
- 1.0 V
- 10 V
- 0.010 V
-
A straight conductor of length 0.25 m moves at 4.0 m/s perpendicular to a field of 0.20 T. What emf is induced across it?
- 3.2 V
- 0.80 V
- 0.20 V
- 0.050 V
-
A 50-turn coil of area 0.020 m^2 rotates uniformly in a field of 0.10 T at angular speed 100 rad/s. What is the peak emf?
- 100 V
- 5.0 V
- 1.0 V
- 10 V
-
A 100-turn coil of area 0.02 m^2 in a field of 0.05 T rotates at 50 Hz. What is the peak emf?
- 157 V
- 16 V
- 1.6 V
- 0.16 V
-
The flux through a single-turn coil changes uniformly from 0.040 Wb to 0.010 Wb in 0.02 s. What is the induced emf?
- 1.5 V
- 0.030 V
- 0.50 V
- 3.0 V
-
A north pole is pushed into a coil. What pole does the induced current produce at the face nearer the magnet?
- a north pole, which repels the magnet
- a north pole, which attracts the magnet
- no pole, since an induced current produces no magnetic field
- a south pole, which attracts the magnet
-
At what point in its rotation does a coil in a uniform field have its maximum induced emf?
- when its plane is parallel to the field, since the rate of change of flux is then greatest
- the emf is constant at all angles of rotation
- when its flux linkage is greatest, at the normal position
- when its plane is perpendicular to the field, since the flux is then greatest
-
A 0.50 m rod moves at 2.0 m/s across a field of 0.40 T and is part of a 25 ohm circuit. What current flows?
- 16 mA
- 1.6 mA
- 160 mA
- 0.40 A
-
Why must Lenz's law hold, linked to conservation of energy?
- A magnet is repelled by any changing field whatever its motion
- The induced emf depends only on the speed of the magnet
- An aiding induced current would create energy from nothing as the magnet was pushed in
- Induced currents always flow in the coil's own direction whatever the change
-
A 400-turn coil has flux falling from 3.0 mWb to zero in 0.25 s. What is the average emf?
- 0.0030 V
- 4.8 V
- 1.2 V
- 0.48 V
-
A 100-turn coil of area 0.0050 m^2 in a field of 0.40 T turns from normal alignment to parallel in 0.020 s. What is the average emf?
- 20 V
- 0.20 V
- 5.0 V
- 10 V
-
A 0.30 m rod moves at 1.5 m/s across a field of 0.25 T. What emf is developed across its ends?
- 0.11 V
- 0.045 V
- 1.1 V
- 0.75 V
-
A 100-turn coil has an induced emf of 2.0 V. What is the rate of change of flux?
- 0.020 Wb/s
- 2.0 Wb/s
- 200 Wb/s
- 0.0020 Wb/s
-
A loop of area 0.030 m^2 lies normal to a field that changes at 0.50 T/s. What emf is induced?
- 1.5 V
- 0.015 V
- 0.0015 V
- 0.15 V
-
The induced emf in a coil is doubled. Which change is consistent with Faraday's law?
- The total flux change is halved
- The time taken for the flux change is doubled
- The rate of change of flux linkage is doubled
- The number of turns is halved and the time is doubled
-
A 40-turn coil has a constant induced emf of 0.60 V. What is the rate of change of flux?
- 0.015 Wb/s
- 0.15 Wb/s
- 1.5 Wb/s
- 0.024 Wb/s
-
A flat coil rotates with angular speed omega in a uniform field. If omega is doubled with N, B and A unchanged, what happens to the peak emf?
- It halves
- It doubles
- It quadruples
- It is unchanged
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