The input voltage for the circuit given in the plot. Determine the output voltage v.(t). Take i(0)=6A. 20 2 H vi(1) (V) v(1) 20 201 vo(1) 1 t(s)
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A: Summary of ValuesXL=326.73ΩXC1=153.2ΩXC2=306.4ΩXS=173.53ΩXP≈135.18ΩZT≈168.05Ωθ≈53.5∘
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Q: DO NOT USE CHAT GPT OTHERWISE MASSIVE DISLIKE
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- An AC circuit contains a 24 resistor, a 15.9-mH inductor, and a 13.3F capacitor connected in parallel. The circuit is connected to a 240-V, 400-Hz power supply. Find the following values. XL=XC=IR=AIL=AIC=AP=WVARsL=VARsC=IT=AVA=PF=%=Assume that the voltage drop across the resistor, ER, is 78 V; the voltage drop across the capacitor, EC, is 104 V; and the circuit has a total impedance, Z, of 20 . The frequency of the AC voltage is 60 Hz. Find the missing values. ET ER78V EC104V IT IR IC Z20 R XC VA P VARSC PF CQ6. Figure Q6 shows a modulated waveform v(t) in microvolts as a function of time t in nanoseconds. 25 50 75 100 125 150 175 200 225 250 50 40 40 30 30 20 20 10 10 -10 -10 -20 -20 -30 -30 -40 -40 -50 -50 250 25 50 75 100 125 150 175 200 225 time/ns Figure Q6: Modulated waveform (a) Describe the modulation scheme. (b) What are the values of the carrier frequency and the modulation frequency? (c) What is the value of the modulation index? (d) What is the transmission efficiency (ratio of modulated to total power) in this example? (e) Sketch the spectrum of this modulated waveform indicating the relative magnitudes of the various spectral components. (f) The modulating wave in this example is substituted with a square wave of 50% duty cycle and of fundamental frequency 1.0 MHz. Sketch the absolute value of the spec- trum of the modulated waveform indicating the frequencies and relative magnitudes of the sideband components. (g) Demodulation of this type of signal is usually accomplished…
- I want to confirm if my work is correct. The problem is: For the Astable Multivibrator shown in the figure, take RA=1k, RB=0.5k and C=1microF and calculate the duty cycle and the frequency of the pulse that is generated. Note that you can calculate the frequency from 1/T. I've attached the figure and my work below. The formulas I used is the ones that were provided.thank you can you hand write clear pleaseGiven the input waveform, design a circuit that can generate the corresponding output waveform. Use silicon diode in the circuit design. 20 V 0 20 V 5.3 V 0 I 1 |-72- T T 2 Input Waveform transition level T Output Waveform T
- Draw a diagram of a 60 Hz AC voltage waveform that is being altered by a 3rd (2)harmonic where the 3rd harmonic is subtractive. (It may assist you to draw the fundamental and the 3rd harmonic then the combined waveform). (2)I need the solution in 30 minutesOUTPUT VOLTAGE (V) 2.0 1.8 1.6 1.0 0.8 0.6 0.2 0 <-50 a. TMP35 b. TMP36 c. TMP37 +Vs = 3V -25 0 50 25 TEMPERATURE (°C) 75 Figure 6. Output Voltage vs. Temperature 100 b 125 00337-007 Using the appropriate curve, develop a linear equation for the output temperature as a function of voltage.
- A signal x(t) is known to be sinusoidal with frequency 100 Hz. It is sampled by an A/D converter, and thefollowing two sequential values are observed: x(0.001) = 10, x(0.002) = 7. Determine the value of x(0.003).ISMA 3K un 3K un + Vs 7mH 3√1₂ Im mn SmH -+ 20 V t IMF Vc What is Vs. iz Ve at steady-state?This isn't apart of a test it is a homework question I added an image that contains the figure for this problem An RLC��� circuit with a 15 μF�F capacitor is connected to a variable-frequency power supply with an rms output voltage of 6.8 VV . The rms current in the circuit as a function of the driving frequency appears as in (Figure 1) . Part A What is the value of the resistor? Express your answer to two significant figures and include the appropriate units. figure 1 image for this question. Question 2 John is changing a lightbulb in a lamp. It's a warm summer evening, and the resistance of his damp skin is only 3300 ΩΩ . While one hand is holding the grounded metal frame of the lamp, the other hand accidentally touches the hot electrode in the base of the socket. The voltage of the socket is 120 VV . Use the data shown in (Figure 1) . Part A What is the current through his torso? Express your answer with the appropriate units.

