Electromagnetism

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Question 8
Hard

An experiment is carried out using a small circular probe coil placed at the center of a Helmholtz coil pair connected to a sinusoidal alternating current supply. The plane of the probe coil is oriented such that the normal to its face makes an angle ϕ\phiϕ with the central axis of the Helmholtz coils.

Helmholtz coils and probe coil setup

The maximum alternating induced electromotive force (e.m.f.) across the ends of the probe coil is Vmax⁡V_{\max}Vmax​.

a.

Name an instrument that can be used to determine Vmax⁡V_{\max}Vmax​.

[1]
b.

The equation for Vmax⁡V_{\max}Vmax​ is:

Vmax⁡=ΓI0ANfcos⁡ϕV_{\max} = \Gamma I_0 A N f \cos \phiVmax​=ΓI0​ANfcosϕ

where:

  • I0I_0I0​ is the peak current in the Helmholtz coils
  • AAA is the cross-sectional area of the probe coil
  • NNN is the number of turns of the probe coil
  • fff is the frequency of the alternating current
  • Γ=3.6×10−3 V A−1 m−2 s\Gamma = 3.6 \times 10^{-3} \text{ V A}^{-1} \text{ m}^{-2} \text{ s}Γ=3.6×10−3 V A−1 m−2 s

The magnitude of the induced e.m.f. can be determined using Faraday's law of electromagnetic induction:

e.m.f.=rate of change of magnetic flux linkage\text{e.m.f.} = \text{rate of change of magnetic flux linkage}e.m.f.=rate of change of magnetic flux linkage

Suggest which quantity, or quantities, in the equation for Vmax⁡V_{\max}Vmax​ are linked to:

  1. the 'rate' part of the law
  2. the 'change of magnetic flux linkage' part of the law
[2]
c.

A student plots a straight-line graph of Vmax⁡V_{\max}Vmax​ against cos⁡ϕ\cos \phicosϕ.

Determine the frequency fff, including its absolute uncertainty. Write your value of fff to 2 significant figures.

Given data:

  • I0=(4.8±0.2) AI_0 = (4.8 \pm 0.2) \text{ A}I0​=(4.8±0.2) A
  • A=(7.2±0.1)×10−5 m2A = (7.2 \pm 0.1) \times 10^{-5} \text{ m}^2A=(7.2±0.1)×10−5 m2
  • N=3500N = 3500N=3500
  • gradient of line=ΓI0ANf=(0.28±0.01) V\text{gradient of line} = \Gamma I_0 A N f = (0.28 \pm 0.01) \text{ V}gradient of line=ΓI0​ANf=(0.28±0.01) V
[4]

Electromagnetism Questions

  1. A Level
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  3. /Electromagnetism