Chapter 31: Q19P (page 936)
Using the loop rule, derive the differential equation for an LCcircuit (Equation).
Short Answer
The differential equation for a circuit is .
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Chapter 31: Q19P (page 936)
Using the loop rule, derive the differential equation for an LCcircuit (Equation).
The differential equation for a circuit is .
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(a) In an oscillating LC circuit, in terms of the maximum charge Q on the capacitor, what is the charge there when the energy in the electric field is of that in the magnetic field? (b) What fraction of a period must elapse following the time the capacitor is fully charged for this condition to occur?
A coil of inductanceand unknown resistance and a capacitor are connected in series with an alternating emf of frequency . If the phase constant between the applied voltage and the current is , what is the resistance of the coil?
In Figure, set , , , , and . (a) What is Z? (b) What is ?(c) What is I?(d) Draw a phasor diagram.

Fig. A single-loop circuit containing a resistor, a capacitor, and an inductor. A generator, represented by a sine wave in a circle, produces an alternating emf that establishes an alternating current; the directions of the emf and current are indicated here at only one instant.
LCoscillators have been used in circuits connected to loudspeakers to create some of the sounds of electronic music. What inductance must be used with a 6.7 µF capacitor to produce a frequency of10 kHz, which is near the middle of the audible range of frequencies?
What direct current will produce the same amount of thermal energy, in a particular resistor, as an alternating current that has a maximum value of 2.60 A?
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