Chapter 22
Induction, AC Circuits, and Electrical Technologies
By Boundless
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Faraday's law of induction states that an electromotive force is induced by a change in the magnetic flux.
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Faraday's law of induction states that the EMF induced by a change in magnetic flux is
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Motion in a magnetic field that is stationary relative to the Earth induces motional EMF (electromotive force).
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Back EMF, eddy currents, and magnetic damping are all due to induced EMF and can be explained by Faraday's law of induction.
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Faraday's law of induction states that changing magnetic field produces an electric field:
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Electric generators convert mechanical energy to electrical energy; they induce an EMF by rotating a coil in a magnetic field.
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An electric motor is a device that converts electrical energy into mechanical energy.
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Inductance is the property of a device that tells how effectively it induces an emf in another device or on itself.
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A a motional EMF is an electromotive force (EMF) induced by motion relative to a magnetic field B.
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Mechanical work done by an external force to produce motional EMF is converted to heat energy; energy is conserved in the process.
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Magnetic field stores energy. The energy density is given as
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Transformers transform voltages from one value to another; its function is governed by the transformer equation.
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Induction is the process in which an emf is induced by changing magnetic flux, such as a change in the current of a conductor.
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An RL circuit consists of an inductor and a resistor, in series or parallel with each other, with current driven by a voltage source.
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Response of an RLC circuit depends on the driving frequency—at large enough frequencies, inductive (capacitive) term dominates.
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In a circuit with a resistor and an AC power source, Ohm's law still applies (V = IR).
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The voltage across a capacitor lags the current. Due to the phase difference, it is useful to introduce phasors to describe these circuits.
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In an AC circuit with an inductor, the voltage across an inductor "leads" the current because of the Lenz' law.
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Resonance is the tendency of a system to oscillate with greater amplitude at some frequencies—in an RLC series circuit, it occurs at
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Power delivered to an RLC series AC circuit is dissipated by the resistance in the circuit, and is given as