The value of C required for sinusoidal oscillations of frequency 1 kHz in the circuit of the figure is
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- The attached image shows a circuit with an AC voltage source, a resistor, inductor, and capacitor connected in series. The circuit has the following characteristics: Resistor resistance: 10 ohm Capacitor capacitance: 0.05 F Inductor inductance: 13 H Current Amplitude: 4 A Voltage amplitude across the source: 60 V Frequency at the source: 0.3 Hz Voltage amplitude across the resistor: 35 V Voltage amplitude across the capacitor: 37 V Voltage amplitude across the inductor: 80 V (a) Calculate the RMS voltages from the amplitudes above. From the RMS voltages across the capacitor, inductor and resistor, calculate the RMS voltage of the AC source. Hint: Vrms = V0/sqrt(2) Vrms = sqrt( (Vrms,R)2 + (Vrms, L - Vrms, C)2 ) (b) Calculate the RMS value of the current (c) Using the resistance, capacitance, inductance, and the frequency of the AC voltage, calculate the impedance Z. From this, and the previously measured value of Vrms, find the RMS value of the current in the circuit.Assignment 2: Complex Waveforms - due Jan 24 A stringed instrument generates a complex waveform with the following components: 250 Hz with an amplitude of 5 500 Hz with an amplitude of 3 750 Hz with an amplitude of 1 What is the fundamental frequency? What other harmonics are represented? What would be the equation for this waveform? (Hint: the equation only tells us the relationship between the harmonics, and not the actual frequencies represented.) Calculate the amplitude values every 10 degrees and graph the waveform. You are welcome to do this in a spreadsheet if you know how. Please complete this assignment on graph paper and scan or digitally photograph your work.An electrical circuit with a sinusoidal voltage source, a resistor, and a capacitor all connected in series. The voltage across the capacitor: Select one: a. Leads the current in the capacitor by exactly 90o b. Is in phase with the sinusoidal voltage source c. Is in phase with the voltage across the resistor d. Leads the current in the circuit by 90o e. Lags the current in the circuit by 90o
- A series circuit consisting of 17ohm resistance and 20mH inductane is connected across a 220V(RMS) 60Hz supply. Determine the magnitude of the total current in the circuit.A-coil has a resistance of 30Ω and an inductance of 0.5H. If the current flowing through the coil is 4amps. What will be the RMS value of the supply voltage if its frequency is 50Hz.Q/ Discuss how you can convert the square wave into the sinewave of fundamental frequency.
- What will be the impedance of an inductor of inductancs 4 mH? The ac input frequency is 50 Hz.convert the figure and calculate the magnitude and the angles of Za, Zb and ZcAn rms voltage of 22.2 V with a frequencyof 1.00 kHz is applied to a 0.290-mH inductor. (a) What is the rmscurrent in this circuit? (b) By what factor does the current changeif the frequency of the voltage is doubled? (c) Calculate the current for a frequency of 2.00 kHz
- Do the following convolution sinc(600t)*sinc(1000t)e-The ______________________ states that the voltage across or the current through an element is determined by summing the voltage or current due to each independent source. f-What is the frequency of a waveform that has a period of 500 ms? g-Simplify (j)(-2 + j) using powers of j. h-For a capacitor, ____. current leads voltage by 90° voltage leads current by 90° current and voltage are in phase current and voltage are 180° out of phase current leads voltage by 90° I-When the frequency applied to a series resonant circuit is above the circuit’s resonant frequency, the circuit is ____. resistive inductive capacitive oscillatoryCalculate the R value according to the fact that a sinusoidal sign is observed at a frequency of 38 kHz at the output of the circuit below. (C=6 nF)