Physics
Physics
5th Edition
ISBN: 9781260487008
Author: GIAMBATTISTA, Alan
Publisher: MCGRAW-HILL HIGHER EDUCATION
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Chapter 21, Problem 44P

(a)

To determine

The voltage amplitude across the capacitor and resistor.

(a)

Expert Solution
Check Mark

Answer to Problem 44P

The voltage amplitude across the capacitor is 0.97V and voltage across the resistor is 1.8V.

Explanation of Solution

The figure 2 shows the RC circuit for ac mains.

Physics, Chapter 21, Problem 44P , additional homework tip  1

Write the expression for current generated in an ac source.

  I=εmZ                                                                  (I)

Here, I is the current, εm is the maximum voltage, and Z is the impedance.

Write the expression for impedance RC circuit.

  Z=R2+XC2                                                       (II)

Here, R is the resistance and XC is the capacitive reactance.

Write the expression for capacitive reactance.

  XC=1ωC                                                              (III)

Here, ω is the angular frequency and C is the capacitance.

The expression for frequency of the ac source is.

  ω=2πf                                                                (IV)

Here, f is the frequency of the ac mains.

Conclusion:

Substitute the equation (II) and (III) in equation (I).

  I=εmR2+XC2=εmR2+(1ωC)2=εmR2+(1ω2C2)                                                 (V)

Substitute equation (IV) in the equation (V).

  I=εmR2+(14π2f2C2)

Substitute 2.0V for εm, 5.00kΩ for R, 120Hz for f, and 0.48μF for C to find I.

  I=(2.0V)[(5.00kΩ)(103Ω1kΩ)]2+(14(3.14)2(120Hz)2[(0.48μF)(106F1μF)]2)=0.35×103A=3.5×104A

Write the equation for the voltage across the capacitor.

  VC=IXC                                                                (VI)

Substitute the equation (III) and (IV) in the equation (VI).

  VC=IωC=I2πfC

Substitute 3.5×104A for I, 120Hz for f, and 0.48μF for C to find VC.

  VC=(3.5×104A)2(3.14)(120Hz)(0.48μF)(106F1μF)=0.0097×102V=0.97V

Write the equation for the voltage across the resistor.

  VR=IR                                                                           (VII)

Substitute 3.5×104A for I and 5.00kΩ for R to find VR.

  VR=(3.5×104A)(5.00kΩ)(103Ω1kΩ)=17.5×101V=1.8V

Therefore, the voltage across the capacitor is 0.97V and voltage across the resistor is 1.8V.

(b)

To determine

If the amplitude of voltage and source voltage add together gives 2.0V.

(b)

Expert Solution
Check Mark

Answer to Problem 44P

No, the amplitude of voltage do not add to give the source voltage.

Explanation of Solution

Since the voltage amplitude do not add as scalars to give the amplitude of the source voltage because the voltage across the resistor and capacitor are 90° out of phase. Similar to the impedance the source voltage is the square root of the sum of squares is given by.

  εm=VC2+VR2

Conclusion:

Thus, the amplitude of voltage does not give the source voltage by adding as scalars of voltage across the resistance and capacitors.

(c)

To determine

Draw the phasor diagram for the voltages.

(c)

Expert Solution
Check Mark

Answer to Problem 44P

The phasor diagram is drawn for the voltage across the resistance and capacitors.

Explanation of Solution

The phasor diagram is used to show the phase relationship between two or more sine waves having the same frequency. The voltage phasor diagram is drawn across the series RLC circuit such as voltage across resistor, voltage across inductor, and voltage across capacitor.

The figure 1 shows the phasor diagram.

Physics, Chapter 21, Problem 44P , additional homework tip  2

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Chapter 21 Solutions

Physics

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