Electromagnetism

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Question 4
Hard

An experiment is set up to determine the magnetic flux density BBB between the poles of a permanent magnet.

Diagram of the experimental setup showing a U-shaped permanent magnet resting on a digital balance on a horizontal bench. The digital balance displays '91.5 g'. A horizontal current-carrying wire passes through the region between the poles of the magnet. An arrow on the wire indicates that the current I flows from left to right. A top-view inset diagram shows the wire passing between the South (S) and North (N) poles of the magnet, perpendicular to the magnetic field lines.

The magnet is placed on the digital balance. The current-carrying wire is horizontal, fixed in place, and oriented at right angles to the magnetic field between the poles of the magnet.

The following data are collected:

  • Length of the wire in the uniform magnetic field of the magnet = 8.0±0.2 cm8.0 \pm 0.2 \text{ cm}8.0±0.2 cm
  • Balance reading with no current in the wire = 90.0 g90.0 \text{ g}90.0 g
  • Balance reading with current in the wire = 91.5 g91.5 \text{ g}91.5 g
  • Current in the wire = 2.5±0.1 A2.5 \pm 0.1 \text{ A}2.5±0.1 A

Calculate the magnetic flux density BBB, including its absolute uncertainty. Ignore the absolute uncertainty in the balance readings and use g=9.81 m s−2g = 9.81 \text{ m s}^{-2}g=9.81 m s−2.

Give your value for BBB to 2 significant figures and its absolute uncertainty to 1 significant figure.

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Electromagnetism Questions

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