Photo AI

Figure 8 shows two magnets with their N poles facing each other - Edexcel - GCSE Physics - Question 5 - 2023 - Paper 2

Question icon

Question 5

Figure-8-shows-two-magnets-with-their-N-poles-facing-each-other-Edexcel-GCSE Physics-Question 5-2023-Paper 2.png

Figure 8 shows two magnets with their N poles facing each other. On Figure 8, draw the shape and direction of the magnetic field between the two magnets. (2) Figu... show full transcript

Worked Solution & Example Answer:Figure 8 shows two magnets with their N poles facing each other - Edexcel - GCSE Physics - Question 5 - 2023 - Paper 2

Step 1

On Figure 8, draw the shape and direction of the magnetic field between the two magnets.

96%

114 rated

Answer

To represent the magnetic field between the two magnets, draw at least four lines curving from the North pole of one magnet to the North pole of the other. Each line should indicate the direction of the magnetic field, which emanates outward from the North poles and curves towards the South poles. Ensure the lines do not cross each other and are clearly marked.

Step 2

Describe the forces acting on the upper magnet.

99%

104 rated

Answer

The upper magnet experiences several forces:

  1. Magnetic Field Interaction: The magnetic field of the lower magnet interacts with the magnetic field of the upper magnet, resulting in magnetic repulsion since both N poles are facing each other.

  2. Repulsive Force: The repulsive force acts upwards on the upper magnet due to the interaction of like poles.

  3. Gravitational Force: The weight of the upper magnet acts downwards, pulling it toward the lower magnet.

  4. Equilibrium: The forces are balanced if the upward repulsive force is equal to the downward gravitational force, leading to the upper magnet floating stably in the air.

Step 3

State the direction of the force on the wire.

96%

101 rated

Answer

The direction of the force on the wire is perpendicular to both the magnetic field and the direction of the current. If the current flows in a certain direction, use the right-hand rule to determine that direction.

Step 4

State the direction of the force on the magnet.

98%

120 rated

Answer

The force on the magnet acts in the opposite direction to the force on the wire, meaning if the wire experiences a force in one direction, the magnet experiences a force in the opposite direction due to Newton's Third Law of Motion.

Step 5

Calculate the length of the wire in the magnetic field.

97%

117 rated

Answer

To find the length of the wire in the magnetic field, use the equation:

F=BILF = BIL

Where:

  • FF is the force on the wire (0.15 N)
  • BB is the magnetic flux density (0.50 T)
  • II is the current (2.7 A)

Rearranging the equation gives:

L=FBIL = \frac{F}{BI}

Substituting the values:

L=0.150.50×2.7=0.11 mL = \frac{0.15}{0.50 \times 2.7} = 0.11 \text{ m}

Thus, the length of the wire in the magnetic field is 0.11 m.

Join the GCSE students using SimpleStudy...

97% of Students

Report Improved Results

98% of Students

Recommend to friends

100,000+

Students Supported

1 Million+

Questions answered

;