Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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Textbook Question
Chapter 13, Problem 32P
Write the analytical expression for the waveform of Fig. 13.94 with the phase angle in radians.
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Chapter 13 Solutions
Introductory Circuit Analysis (13th Edition)
Ch. 13 - For the sinusoidal waveform in Fig. 13.85: a. What...Ch. 13 - For the sinusoidal signal in Fig. 13.86: a. What...Ch. 13 - For the periodic square-wave waveform in Fig....Ch. 13 - For the waveform of Fig. 13.88: a. Does this...Ch. 13 - Find the period of a periodic waveform whose...Ch. 13 - Find the frequency of a repeating waveform whose...Ch. 13 - If a periodic waveform has a frequency of 1 kHz,...Ch. 13 - Find the period of a sinusoidal waveform that...Ch. 13 - What is the frequency of periodic waveform that...Ch. 13 - For the oscilloscope pattern of Fig. 13.89: a....
Ch. 13 - For the waveform of Fig. 13.90: a. What is the...Ch. 13 - Convert the following degrees to radians: a. 40 b....Ch. 13 - Convert the following radians to degrees: /3 1.2...Ch. 13 - Find the angular velocity of a waveform with a...Ch. 13 - Find the angular velocity of a waveform with a...Ch. 13 - Find the frequency and period of sine waves having...Ch. 13 - Given f=60Hz, determine how long it will take the...Ch. 13 - If a sinusoidal waveform passes through an angle...Ch. 13 - Find the amplitude and frequency of the following...Ch. 13 - Sketch 6 sin 754t with the abscissa angle in...Ch. 13 - Sketch 8sin280t with the abscissa angle in...Ch. 13 - If e=300sin157t, how long (in second) does it take...Ch. 13 - Giveni=0.5sindetermine=72.Ch. 13 - Givenv=20determine=1.2.Ch. 13 - Givenv=30103determinetheanglesatwhichuwillbe6mV.Ch. 13 - If v=40Vat=30andt=1ms, determine the mathematical...Ch. 13 - Sketch sin (377t+60) with the abscissa angle in...Ch. 13 - Sketch the following waveforms: 50sin(wt+0)...Ch. 13 - Write the analytical expression for the waveforms...Ch. 13 - Write the analytical expression for the waveform...Ch. 13 - Write the analytical expression for the waveform...Ch. 13 - Write the analytical expression for the waveform...Ch. 13 - Find the phase relationship between the following...Ch. 13 - Find the phase relationship between the following...Ch. 13 - Prob. 35PCh. 13 - Find the phase relationship between the following...Ch. 13 - The sinusoidal voltage v=160sin(21000t+60) is...Ch. 13 - Prob. 38PCh. 13 - For the waveform of Fig. 13.95, find the time when...Ch. 13 - For the oscilloscope display in Fig. 13.97:...Ch. 13 - Find the average value of the periodic waveform in...Ch. 13 - Find the average value of the periodic waveforms...Ch. 13 - Find the average value of the periodic waveform of...Ch. 13 - Find the average value of the periodic waveform of...Ch. 13 - Find the average value of the periodic function of...Ch. 13 - Find the average value of the periodic waveform in...Ch. 13 - For the waveform in Fig. 13.104: Determine the...Ch. 13 - For the waveform in Fig. 13.105: Determine the...Ch. 13 - Find the rms values of the following sinusoidal...Ch. 13 - Write the sinusoidal expressions for voltages and...Ch. 13 - Find the rms value of the periodic waveform in...Ch. 13 - Find the rms value of the periodic waveform in...Ch. 13 - What are the average and rms values of the square...Ch. 13 - For each waveform in Fig. 13.109, determine the...Ch. 13 - For the waveform of Fig. 13.110: Carefully sketch...Ch. 13 - Determine the reading of the meter for each...
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- Given the periodic voltage waveform applied to a pure capacitor of 110 uF, determine the average voltage, instantaneous voltage when time t=11 ms, and RMS value of the voltage waveform. The choices are presented on the image.arrow_forward46. What is the angular frequency of a waveform having a period of 1 millisecond? A. 2000pi rad/s B. 1000pi rad/s C. 2000/pi rad/s D. 1000/pi rad/sarrow_forwardWhat is the angular frequency of a waveform having a period of 1 millisecond? Kindly provide a CLEAR and COMPLETE solution. #46 a. 200π rad/s b. 100π rad/s c. 2000/π rad/s d. 1000/π rad/sarrow_forward
- Find the RMS value of a periodic voltage that has a value of 20 V for one half-period and -10 V for the other half period. 13.8 V B. 14.8 V C. 15.8 V D. 16.8 V E.NOTAarrow_forwardAn alternating voltage is given by v = 200 sin(628.4t – 0.41) volts. Find the following: a) The peak value b) The r.m.s value c) The periodic time d) The frequency e) The phase angle (in degree)arrow_forward49. The sinusoidal waveform is the fundamental type of waveform used in AC and is commercially distributed. True False 51. Peak factor of a signal is the ratio of the peak or maximum value to the RMS (root-median-square) value. True False 52. Periodic signals are signals that recur at a irregular time interval True Falsearrow_forward
- Q1\ For the periodic waveform in Fig. 13.82: a. What is the peak value? b. What is the instantaneous value at 3 μs and at 9 μs? c. What is the peak-to-peak value of the waveform? d. What is the period of the waveform? e. How many cycles are shown From t=0 μs to t=9 μs? 8 4v (mV) 0 1 3 4 5 9 10(s) Fig. 13.82arrow_forwardFind the rms value of the periodic waveform below over one full cyclearrow_forward38 - How many times is the maximum value reached in 2 seconds for a sinusoidal signal?a) 2 timesB) 4 timesC) It changes depending on the frequencyD) 1 timeE) 3 timesarrow_forward
- A full wave rectified sinusoidal voltage is clipped at 1/√2 of its maximum value. What are the average and RMS values of such a voltagearrow_forward39. Find the average value of the perIodic waveforms of Fig. 13.94 over one full cycle. 11 (mA) -1 cycle- 10 10 5- 1 2 3 4 5 6 7/8 9 10 t(s) -5 S. 27 wt -10 -10 -15 Sine wave 1 cycle- (b)arrow_forwardIf the waveform of a voltage has a Form Factor of 1.15 and a Peak Factor of 1.5, and if the peak value is 4.5kV, calculate the average and the r.m.s. values of the voltage.arrow_forward
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