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5) ENG: The circuit shown in figure Xis jh a uniform magnetic field that is Into the page and is decreasing in magnitude at the rate of 150 tesla/second The ammeter feads: A 0 15 A B. 035A C. 0.50 A D 0.65 A

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5) ENG: The circuit shown in figure Xis jh a uniform magnetic field that is
Into the page and is decreasing in magnitude at the rate of 150
tesla/second The ammeter feads:
A 0 15 A
B. 035A
C. 0.50 A D 0.65 A

5) ENG: The circuit shown in figure Xis jh a uniform magnetic field that is Into the page and is decreasing in magnitude at the rate of 150 tesla/second The ammeter feads: A 0 15 A B. 035A C. 0.50 A D 0.65 A

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MillieElite · Tutor for 8 years

Answer

B. 0.35 A

Explain

The problem involves Faraday's Law of Electromagnetic Induction, which states that a changing magnetic field induces an electromotive force (EMF) in a circuit. The induced EMF (\( \mathcal{E} \)) can be calculated using the formula \( \mathcal{E} = -\frac{d\Phi_B}{dt} \), where \( \Phi_B \) is the magnetic flux. Given the rate of change of the magnetic field, we can determine the induced current using Ohm's Law \( I = \frac{\mathcal{E}}{R} \), where \( R \) is the resistance of the circuit.
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