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What is a magnetic field? A magnetic field is a region or area in space where magnetic effects are felt - Leaving Cert Physics - Question 10 - 2006

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What is a magnetic field? A magnetic field is a region or area in space where magnetic effects are felt. It is the space around a magnet where it can exert a magnet... show full transcript

Worked Solution & Example Answer:What is a magnetic field? A magnetic field is a region or area in space where magnetic effects are felt - Leaving Cert Physics - Question 10 - 2006

Step 1

What is a magnetic field?

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Answer

A magnetic field is a region or area in space where magnetic effects are felt, such as the attraction between magnets.

Step 2

Describe an experiment to show the magnetic field due to a current in a solenoid.

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Answer

  1. Apparatus: Power source, closed circuit with a solenoid, and iron filings. 2. Procedure: Connect the solenoid to a power source to turn on the current. 3. Observation: Sprinkle iron filings around the solenoid and observe the pattern they form. The filings will align along the magnetic field lines that emerge from the solenoid. 4. Conclusion: The direction of the magnetic field can be determined using the right-hand grip rule, and the strength can be shown to vary with the number of turns and current. 5. Diagram: Include a labeled diagram showing the solenoid and the arrangement of iron filings.

Step 3

Give one use of an electromagnet. State one advantage of an electromagnet over an ordinary magnet.

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Answer

One use of an electromagnet is in electric bells.

An advantage of an electromagnet is that the strength can be varied by changing the current.

Step 4

Name a device based on this effect.

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An example of a device based on this effect is a relay or an electric bell.

Step 5

Describe what will happen if (a) the current flows in the opposite direction;

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Answer

If the current flows in the opposite direction, the direction of the force experienced by the aluminum foil will also reverse.

Step 6

(b) a larger current flows through the aluminum foil;

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Answer

A larger current flowing through the aluminum foil will result in a greater upward force due to the increased interaction with the magnetic field.

Step 7

(c) the aluminum foil is placed parallel to the magnetic field.

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Answer

If the aluminum foil is placed parallel to the magnetic field, there will be no upward force acting on it; it will experience no motion.

Step 8

Calculate the force on the aluminum foil of length 10 cm if a current of 1.5 A flows through it when it is placed in a magnetic field of flux density 3.0 T.

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Answer

The force on the aluminum foil can be calculated using the formula: F=IimesLimesBF = I imes L imes B where:

  • FF is the force,
  • II is the current (1.5 A),
  • LL is the length of the foil (0.1 m), and
  • BB is the magnetic flux density (3.0 T).

Thus, substituting the values: F=1.5imes0.1imes3.0=0.45extN.F = 1.5 imes 0.1 imes 3.0 = 0.45 ext{ N}.

So, the force acting on the aluminum foil is 0.45 N.

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