(a)
The value of
(a)
Answer to Problem 66AP
The value of
Explanation of Solution
Write the expression for the rms voltage when the switch
Here,
Write the expression for impedance when switch
Here,
Substitute
Write the expression for current when the switch is at position
Here,
Write the expression for impedance when the switch is at position
Substitute
Conclusion:
Substitute
Substitute
Subtract equation (VI) by (VII) to solve for
Therefore, the value of
(b)
The value of
(b)
Answer to Problem 66AP
The value of
Explanation of Solution
Write the expression for current when the switch is at position
Here,
Write the expression for impedance when the switch is at position
Substitute
Write the expression to calculate the capacitance.
Here,
Conclusion:
Substitute
Substitute
Therefore, the value of
(c).
The value of
(c).
Answer to Problem 66AP
The value of
Explanation of Solution
Write the expression to calculate the inductance.
Here,
Conclusion:
Substitute
Substitute
Therefore, the value of
(d).
Whether more than one set of values are possible.
(d).
Answer to Problem 66AP
The other possible value of
Explanation of Solution
Conclusion:
Substitute
Take the negative root.
Substitute
Therefore, the other possible value of
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Chapter 33 Solutions
Physics for Scientists and Engineers with Modern Physics, Technology Update
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- A resistor and inductor are connected in series across an ac generator. The emf of the generator is given by v(t)=V0cost , where V0=120V and =120rad/s ; also, R=400 and L = 1.5 H. (a) What Is the impedance of the circuit? (b) What is the amplitude of the current through the resistor? (C) Write an expression for the current through the resistor. (d) Write expressions representing the voltages across the resistor and across the inductor.arrow_forwardA capacitor, a coil, and two resistors of equal resistance are arranged in an AC circuit as shown in Figure P33.66 (page 1028). An AC source provides an emf of Vrms = 20.0 V at a frequency of 60.0 Hz. When the double throw switch S is open as shown in the figure, the rms current is 183 mA. When the switch is closed in position a, the rms current is 298 mA. When the switch is closed in position b, the rms current is 137 mA. Determine the values of (a) R, (b) C, and (c) L. (d) Is more than one set of values possible? Explain.arrow_forwardAn ac source of emf delivers 5.0 mW of power at an rms current of 2.0 mA when it is connected to the primary cod of a transformer. The rms voltage across the secondary coil is 20 V. (a) What are die voltage across the primary coil and the current through the secondary coil? (b) What is the ratio of secondary to primary turns for the transformer?arrow_forward
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