Consider a magnetic field probe consisting of a flat circular loop of wire with radius 10 cm. The probe's terminals correspond to a small gap in the loop. This probe is placed in a uniform magnetic field having magnitude B(t) = B₁ sin(2πft + a), where f = 100 kHz and a is an unknown constant. (By uniform, we mean that the magnetic field has the same magnitude and direction at all points in space.) The orientation of the loop with respect to the magnetic field vector is unknown. The voltage at the terminals is measured for all possible orientations of the probe, and it is found that the maximum voltage is 20 mV peak- to-peak. What is Bo?
Consider a magnetic field probe consisting of a flat circular loop of wire with radius 10 cm. The probe's terminals correspond to a small gap in the loop. This probe is placed in a uniform magnetic field having magnitude B(t) = B₁ sin(2πft + a), where f = 100 kHz and a is an unknown constant. (By uniform, we mean that the magnetic field has the same magnitude and direction at all points in space.) The orientation of the loop with respect to the magnetic field vector is unknown. The voltage at the terminals is measured for all possible orientations of the probe, and it is found that the maximum voltage is 20 mV peak- to-peak. What is Bo?
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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