A series RLC circuit is connected to an AC source that provides a current of I(t) = I,cos(wt). What statements about this circuit are true? Circle all answers that apply. (A) The voltage across the inductor leads the voltage across the capacitor by a factor of T. (B) The voltage across the inductor leads the voltage across the capacitor by a factor of п/2. (C) The voltage across the resistor is always in phase with the voltage from the source. (D) The voltage across the resistor is always in phase with the current. (E) At resonance, impedance will be at a minimum and the phase factor ø will be 0. (F) At resonance, impedance will be at a maximum and the phase factor o will be п/2.

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Chapter21: Resistive-capacitive Series Circuits
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A series RLC circuit is connected to an AC source that provides a current of
I(t) = I,cos(wt). What statements about this circuit are true? Circle all answers that
apply.
(A) The voltage across the inductor leads the voltage across the capacitor by a factor
of T.
(B) The voltage across the inductor leads the voltage across the capacitor by a factor
of п/2.
(C) The voltage across the resistor is always in phase with the voltage from the source.
(D) The voltage across the resistor is always in phase with the current.
(E) At resonance, impedance will be at a minimum and the phase factor ø will be 0.
(F) At resonance, impedance will be at a maximum and the phase factor o will be
п/2.
Transcribed Image Text:A series RLC circuit is connected to an AC source that provides a current of I(t) = I,cos(wt). What statements about this circuit are true? Circle all answers that apply. (A) The voltage across the inductor leads the voltage across the capacitor by a factor of T. (B) The voltage across the inductor leads the voltage across the capacitor by a factor of п/2. (C) The voltage across the resistor is always in phase with the voltage from the source. (D) The voltage across the resistor is always in phase with the current. (E) At resonance, impedance will be at a minimum and the phase factor ø will be 0. (F) At resonance, impedance will be at a maximum and the phase factor o will be п/2.
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