Consider a series RLC circuit. To double the rms emf Erms while holding the rms current Irms constant one could O double the resistance, keep the inductance constant, quarter the capacitance, and double the angular frequency. O double the resistance, halve both the inductance and capacitance, and hold the angular frequency constant. O halve the resistance, double the inductance, halve the capacitance, and hold the angular frequency constant.. O halve the resistance, halve the inductance, double the capacitance, and hold the angular frequency constant. O double each the resistance, inductance, capacitance, and angular frequency.

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Consider a series RLC circuit. To double the rms emf Erms while holding the rms current Irms
constant one could
O double the resistance, keep the inductance constant, quarter the capacitance, and double the angular
frequency.
O double the resistance, halve both the inductance and capacitance, and hold the angular frequency constant.
O halve the resistance, double the inductance, halve the capacitance, and hold the angular frequency constant..
O halve the resistance, halve the inductance, double the capacitance, and hold the angular frequency constant.
O double each the resistance, inductance, capacitance, and angular frequency.
Transcribed Image Text:Consider a series RLC circuit. To double the rms emf Erms while holding the rms current Irms constant one could O double the resistance, keep the inductance constant, quarter the capacitance, and double the angular frequency. O double the resistance, halve both the inductance and capacitance, and hold the angular frequency constant. O halve the resistance, double the inductance, halve the capacitance, and hold the angular frequency constant.. O halve the resistance, halve the inductance, double the capacitance, and hold the angular frequency constant. O double each the resistance, inductance, capacitance, and angular frequency.
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