Deck 9: Magnetism and Electromagnetic Induction
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Deck 9: Magnetism and Electromagnetic Induction
1
Every spinning electron is
A)electrically charged.
B)is a tiny magnet.
C)both
D)none of the above
A)electrically charged.
B)is a tiny magnet.
C)both
D)none of the above
C
2
An iron nail is more strongly attracted to the
A)north pole of a magnet.
B)south pole of a magnet.
C)north or south pole-no difference.
A)north pole of a magnet.
B)south pole of a magnet.
C)north or south pole-no difference.
C
3
Magnet A has twice the magnetic field strength of magnet B and pulls on magnet B with a force of 100 N. The amount of force that magnet A exerts on magnet B is
A)at or about 50 N.
B)exactly 100 N.
C)more than 100 N.
D)not enough information
A)at or about 50 N.
B)exactly 100 N.
C)more than 100 N.
D)not enough information
B
4
A magnetic field easily penetrates
A)human flesh.
B)plastic coatings.
C)both
D)none of the above
A)human flesh.
B)plastic coatings.
C)both
D)none of the above
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5
Unlike electric charges, magnetic poles cannot be
A)located.
B)isolated.
C)destroyed.
A)located.
B)isolated.
C)destroyed.
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6
Break a bar magnet in half and each half is
A)a complete magnet.
B)a stronger magnet.
C)no longer magnetized.
A)a complete magnet.
B)a stronger magnet.
C)no longer magnetized.
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7
Every magnet contains at least
A)one pole.
B)two poles.
C)two or more poles.
A)one pole.
B)two poles.
C)two or more poles.
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8
Surrounding every moving electron is
A)a magnetic field.
B)an electric field.
C)both
D)neither
A)a magnetic field.
B)an electric field.
C)both
D)neither
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9
Like kinds of magnetic poles repel while unlike kinds of magnetic poles
A)attract.
B)repel also.
C)may attract or repel.
A)attract.
B)repel also.
C)may attract or repel.
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10
What is the cause of a magnetic field about a permanent magnet, and about a current-carrying wire?
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11
A bar magnet that holds a chain of nails illustrates
A)magnetic field displacement.
B)magnetic induction.
C)electromagnetic induction.
A)magnetic field displacement.
B)magnetic induction.
C)electromagnetic induction.
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12
A magnet will become weaker if it is
A)dropped on a hard surface.
B)held in a hot flame.
C)either
D)neither
A)dropped on a hard surface.
B)held in a hot flame.
C)either
D)neither
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13
The rule for the interaction of magnetic poles is similar to the rule for electric
A)circuits.
B)polarization.
C)charges.
A)circuits.
B)polarization.
C)charges.
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14
An iron rod becomes magnetic when
A)positive ions accumulate at one end and negative ions at the other end.
B)its atoms are aligned with positive charges on one side and negative charges on the other side.
C)the net spins of its electrons are in the same direction.
D)electron motion stops.
E)none of the above
A)positive ions accumulate at one end and negative ions at the other end.
B)its atoms are aligned with positive charges on one side and negative charges on the other side.
C)the net spins of its electrons are in the same direction.
D)electron motion stops.
E)none of the above
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15
The source of all magnetism is
A)tiny bits of iron.
B)tiny domains of aligned atoms.
C)ferromagnetic materials.
D)moving electric charge.
A)tiny bits of iron.
B)tiny domains of aligned atoms.
C)ferromagnetic materials.
D)moving electric charge.
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16
Several paper clips dangle from the north pole of a magnet. The induced pole in the bottom of the lowermost paper clip is a
A)north pole.
B)south pole.
C)north or south pole-no difference.
A)north pole.
B)south pole.
C)north or south pole-no difference.
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17
Refrigerator magnets
A)have short range.
B)are without magnetic poles.
C)both
A)have short range.
B)are without magnetic poles.
C)both
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18
Magnetic domains normally occur in
A)iron.
B)copper.
C)silver.
D)all of the above
E)none of the above
A)iron.
B)copper.
C)silver.
D)all of the above
E)none of the above
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19
Compared to the huge force that attracts an iron tack to a strong magnet, the force that the tack exerts on the magnet is
A)relatively small.
B)equally huge.
C)not enough information
A)relatively small.
B)equally huge.
C)not enough information
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20
Magnetism is due to the motion of electrons as they
A)move around the nucleus.
B)spin on their axes.
C)both
D)neither
A)move around the nucleus.
B)spin on their axes.
C)both
D)neither
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21
No magnetic force acts on a current carrying wire when it
A)carries a very small current.
B)is perpendicular to the magnetic field.
C)either or both
D)none of the above
A)carries a very small current.
B)is perpendicular to the magnetic field.
C)either or both
D)none of the above
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22
The intensity of cosmic rays bombarding the Earth's surface is largest at the
A)poles.
B)mid-latitudes.
C)equator.
A)poles.
B)mid-latitudes.
C)equator.
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23
An electromagnet consists of a
A)bar magnet that carries an electric current.
B)coil of wire.
C)current-carrying coil with a piece of iron inside.
A)bar magnet that carries an electric current.
B)coil of wire.
C)current-carrying coil with a piece of iron inside.
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24
Superconducting electromagnets
A)exist now.
B)may be possible in the near future.
C)are not possible.
D)are science fiction.
A)exist now.
B)may be possible in the near future.
C)are not possible.
D)are science fiction.
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25
Magnetic field lines about a current-carrying wire
A)extend radially from the wire.
B)circle the wire in closed loops.
C)both
D)neither
A)extend radially from the wire.
B)circle the wire in closed loops.
C)both
D)neither
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26
Surrounding our planet Earth are
A)cosmic rays.
B)magnetic fields.
C)both
A)cosmic rays.
B)magnetic fields.
C)both
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27
A magnetic field exists in a current-carrying coil of wire
A)if it contains a piece of iron.
B)with or without a contained piece of iron.
C)only if the current changes.
A)if it contains a piece of iron.
B)with or without a contained piece of iron.
C)only if the current changes.
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28
The magnetic field strength inside a current-carrying coil will be greater if the coil encloses a
A)vacuum.
B)wooden rod.
C)glass rod.
D)iron rod.
E)none of the above
A)vacuum.
B)wooden rod.
C)glass rod.
D)iron rod.
E)none of the above
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29
When the current in a wire is reversed, the direction of the surrounding magnetic field
A)also reverses.
B)remains steady.
C)collapses.
A)also reverses.
B)remains steady.
C)collapses.
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30
The minimum magnetic force on a moving electron occurs for motion
A)parallel to the magnetic field.
B)perpendicular to the magnetic field.
C)at an angle other than 90° to the magnetic field.
A)parallel to the magnetic field.
B)perpendicular to the magnetic field.
C)at an angle other than 90° to the magnetic field.
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31
A superconducting electromagnet makes use of
A)low-resistance coils of wire.
B)super-high temperatures.
C)high-speed electrons.
D)close packing of high-density magnetic domains.
A)low-resistance coils of wire.
B)super-high temperatures.
C)high-speed electrons.
D)close packing of high-density magnetic domains.
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32
Maximum magnetic force occurs when electrons move
A)in the same direction as the magnetic field.
B)opposite to the magnetic field direction.
C)perpendicular to the magnetic field direction.
D)at an angle other than 90° to the magnetic field direction.
E)none of the above
A)in the same direction as the magnetic field.
B)opposite to the magnetic field direction.
C)perpendicular to the magnetic field direction.
D)at an angle other than 90° to the magnetic field direction.
E)none of the above
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33
Moving electric charges will interact with
A)an electric field.
B)a magnetic field.
C)both
D)none of the above
A)an electric field.
B)a magnetic field.
C)both
D)none of the above
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34
Earth's magnetic field affects cosmic rays by
A)deflecting them.
B)slowing their speeds.
C)destroying them.
D)absorbing them.
A)deflecting them.
B)slowing their speeds.
C)destroying them.
D)absorbing them.
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35
The magnetic field lines about a current-carrying wire form
A)circles.
B)radial lines.
C)eddy currents.
D)spirals.
A)circles.
B)radial lines.
C)eddy currents.
D)spirals.
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36
When a current-carrying wire in a magnetic field experiences no force it is likely
A)upside down relative to the field.
B)overly insulated.
C)parallel to the field lines.
D)all of the above
A)upside down relative to the field.
B)overly insulated.
C)parallel to the field lines.
D)all of the above
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37
The magnetic field inside a current-carrying coil increases when
A)current is increased.
B)the number of loops of wire in the coil increases.
C)both.
D)none of the above
A)current is increased.
B)the number of loops of wire in the coil increases.
C)both.
D)none of the above
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38
A magnetic force acts most strongly on a current carrying wire when it
A)carries a very large current.
B)is perpendicular to the magnetic field.
C)either or both
D)none of the above
A)carries a very large current.
B)is perpendicular to the magnetic field.
C)either or both
D)none of the above
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39
Distinguish between a common bar magnet and an electromagnet.
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40
When a bar magnet is broken in half, the magnetic strength of each piece is
A)less than half.
B)about half.
C)the same.
D)somewhat increased.
A)less than half.
B)about half.
C)the same.
D)somewhat increased.
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41
A galvanometer calibrated to read potential difference is
A)an ammeter.
B)a voltmeter.
C)an ohm meter.
D)none of the above
A)an ammeter.
B)a voltmeter.
C)an ohm meter.
D)none of the above
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42
When a magnet is thrust into a coil of wire, a greater voltage is induced
A)with a greater number of loops in the coil.
B)with faster thrusting motion.
C)both
D)neither
A)with a greater number of loops in the coil.
B)with faster thrusting motion.
C)both
D)neither
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43
Voltage can be induced in a wire by
A)moving the wire near a magnet.
B)moving a magnet near the wire.
C)changing the current in a nearby wire.
D)all of the above
E)none of the above
A)moving the wire near a magnet.
B)moving a magnet near the wire.
C)changing the current in a nearby wire.
D)all of the above
E)none of the above
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44
A device that transforms electrical energy to mechanical energy is a
A)generator.
B)motor.
C)transformer.
D)magnet.
E)none of the above
A)generator.
B)motor.
C)transformer.
D)magnet.
E)none of the above
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45
Changing the magnetic field intensity in a closed loop of wires induces
A)current.
B)voltage.
C)both
D)neither
A)current.
B)voltage.
C)both
D)neither
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46
Thrust a magnet into a coil of wire and you'll induce
A)voltage.
B)current.
C)both
D)neither
A)voltage.
B)current.
C)both
D)neither
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47
A galvanometer measures
A)magnetic fields.
B)electric current.
C)electric voltage.
D)none of the above
A)magnetic fields.
B)electric current.
C)electric voltage.
D)none of the above
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48
Since magnetic force is always perpendicular to moving charges, magnetic force can only change an electron's
A)speed.
B)direction.
C)speed and direction.
A)speed.
B)direction.
C)speed and direction.
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49
An electric motor and electric generator are
A)very similar devices.
B)entirely different devices.
C)none of the above
A)very similar devices.
B)entirely different devices.
C)none of the above
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50
A galvanometer is a useful device in electric
A)electromagnets.
B)transformers.
C)generators and motors.
D)meters.
E)none of the above
A)electromagnets.
B)transformers.
C)generators and motors.
D)meters.
E)none of the above
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51
When a change of magnetic field occurs in a closed loop of wire,
A)a voltage is induced in the wire.
B)current is made to flow in the loop of wire.
C)electromagnetic induction occurs.
D)all of the above
E)none of the above
A)a voltage is induced in the wire.
B)current is made to flow in the loop of wire.
C)electromagnetic induction occurs.
D)all of the above
E)none of the above
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52
Which force field can both accelerate an electron and change its speed?
A)electric field.
B)magnetic field.
C)both
D)neither
A)electric field.
B)magnetic field.
C)both
D)neither
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53
What happens to a current-carrying wire in a magnetic field? How does orientation of the wire make a difference?
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54
An electric motor and electric generator differ in
A)the roles of input and output.
B)basic construction.
C)size.
D)quality.
A)the roles of input and output.
B)basic construction.
C)size.
D)quality.
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55
Electromagnetic induction was discovered by
A)Joseph Henry.
B)Michael Faraday.
C)both
D)neither
A)Joseph Henry.
B)Michael Faraday.
C)both
D)neither
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56
A device that transforms mechanical energy to electrical energy is a
A)generator.
B)motor.
C)transformer.
D)magnet.
E)none of the above
A)generator.
B)motor.
C)transformer.
D)magnet.
E)none of the above
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57
Which force field can increase a moving electron's speed?
A)electric field
B)magnetic field
C)both
D)neither
A)electric field
B)magnetic field
C)both
D)neither
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58
Faraday's law is the law that describes
A)electromagnetic induction.
B)the connection between current, voltage, and resistance.
C)the attraction and repulsion of magnetic poles.
D)the force between magnetic poles.
E)all of the above
A)electromagnetic induction.
B)the connection between current, voltage, and resistance.
C)the attraction and repulsion of magnetic poles.
D)the force between magnetic poles.
E)all of the above
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59
Electromagnetic induction occurs in a coil when there is a change in
A)electric field intensity in the coil.
B)magnetic field intensity in the coil.
C)voltage in the coil.
D)the coil's polarity.
E)electromagnetic polarity.
A)electric field intensity in the coil.
B)magnetic field intensity in the coil.
C)voltage in the coil.
D)the coil's polarity.
E)electromagnetic polarity.
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60
A galvanometer calibrated to read current is
A)an ammeter.
B)a voltmeter.
C)an ohm meter.
D)none of the above
A)an ammeter.
B)a voltmeter.
C)an ohm meter.
D)none of the above
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61
The main difference between a generator and a motor involves which terminal is
A)input.
B)output.
C)both
A)input.
B)output.
C)both
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62
Alternating current is normally produced by a
A)battery.
B)generator.
C)both
D)neither
A)battery.
B)generator.
C)both
D)neither
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63
Electromagnetic induction is employed in
A)credit cards.
B)computers.
C)iPads.
D)all of the above
E)none of the above
A)credit cards.
B)computers.
C)iPads.
D)all of the above
E)none of the above
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64
Voltage produced by a generator alternates because
A)it produces pulses of current.
B)the magnetic field that produces it alternates.
C)alternations in the mechanical energy input.
D)in effect it is an ac motor in reverse.
E)the current it produces alternates.
A)it produces pulses of current.
B)the magnetic field that produces it alternates.
C)alternations in the mechanical energy input.
D)in effect it is an ac motor in reverse.
E)the current it produces alternates.
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65
Compared to a motor, a generator is
A)one and the same.
B)its opposite.
C)of an entirely different design.
A)one and the same.
B)its opposite.
C)of an entirely different design.
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66
State Faraday's law of induction and explain what it means.
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67
A topic that most underlies electrical studies and all of physics is
A)Newton's laws of motion.
B)the conservation of momentum.
C)the conservation of energy.
A)Newton's laws of motion.
B)the conservation of momentum.
C)the conservation of energy.
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68
Which of these statements is true?
A)a battery produces dc and a generator produces ac
B)a battery produces ac and a generator produces dc
C)a battery and a generator produce dc
D)a battery and a generator produce ac
A)a battery produces dc and a generator produces ac
B)a battery produces ac and a generator produces dc
C)a battery and a generator produce dc
D)a battery and a generator produce ac
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69
When a magnet is thrust into a coil that has twice the number of loops, the induced voltage is
A)half.
B)the same, no different.
C)twice as much.
D)four times as much.
E)none of the above
A)half.
B)the same, no different.
C)twice as much.
D)four times as much.
E)none of the above
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70
The sloshing of electrons inside a generator need
A)an outside source of energy.
B)a copper lattice.
C)positive ions.
D)none of the above
A)an outside source of energy.
B)a copper lattice.
C)positive ions.
D)none of the above
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71
An electric generator of itself
A)can produce enough energy to light cities.
B)cannot produce energy, but convert energy of other forms to electric energy.
C)neither
A)can produce enough energy to light cities.
B)cannot produce energy, but convert energy of other forms to electric energy.
C)neither
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72
The metal detectors that travelers walk through at airports operate via
A)Ohm's law.
B)Faraday's law.
C)Coulomb's law.
D)Newton's laws.
E)civil laws.
A)Ohm's law.
B)Faraday's law.
C)Coulomb's law.
D)Newton's laws.
E)civil laws.
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73
The energy source for a generator may be
A)a waterfall.
B)steam from a turbine.
C)wind.
D)any of these
E)none of the above
A)a waterfall.
B)steam from a turbine.
C)wind.
D)any of these
E)none of the above
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74
Disregarding the effects of friction, a cyclist will coast farther when a lamp powered by a wheel generator is
A)of low wattage.
B)of high wattage.
C)burned out.
D)none of the above
A)of low wattage.
B)of high wattage.
C)burned out.
D)none of the above
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75
A transformer requires
A)alternating voltage.
B)direct current.
C)both
D)neither
A)alternating voltage.
B)direct current.
C)both
D)neither
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76
Power is the rate at which
A)energy is transferred.
B)voltage can be changed.
C)current can be induced.
A)energy is transferred.
B)voltage can be changed.
C)current can be induced.
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77
The frequency with which a magnet plunges into and out of a magnetic field equals the frequency of the induced
A)voltage.
B)current.
C)both
D)neither
A)voltage.
B)current.
C)both
D)neither
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78
How are electric motors and electric generators similar? Different?
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79
Metal detectors that locate metal beneath sand on a beach are activated by
A)electric fields.
B)magnetic fields.
C)electromagnetic induction.
D)alternating current.
A)electric fields.
B)magnetic fields.
C)electromagnetic induction.
D)alternating current.
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80
When a magnet is thrust into a coil of wire, the coil tends to
A)attract the magnet as it enters.
B)repel the magnet as it enters.
C)both
D)neither
A)attract the magnet as it enters.
B)repel the magnet as it enters.
C)both
D)neither
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