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 generator supplies 100 V to a transformer’s primary coil, which has50turns. If the secondary coil has 500 turns, what is the secondary voltage?
A resistor is connected, as in Figure to an ac generator with .
(a) What is the amplitude of the resulting alternating current if the frequency of the emf is ? (b) What is the amplitude of the resulting alternating current if the frequency of the emf is ?

A resistor is connected across an alternating-current generator.
In an oscillating LCcircuit with, the current is given by, where tis in seconds, Iin amperes, and the phase constant in radians.(a) How soon afterwill the current reach its maximum value? (b) What is the inductance L? (c) What is the total energy?
Question: Figure 31-25 shows the current i and driving emffor a series RLC circuit. Relative to the emf curve, does the current curve shift leftward or rightward and does the amplitude of that curve increase or decrease if we slightly increase (a) , (b) , and (c) ?

In Figure, ,and , and the ideal battery has emf . The switch is kept at a for a long time and then thrown to position b.
(a)What is the frequency? (b)What is the current amplitude of the resulting oscillations?

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