3. A series resonant circuit has 100Q of resistance and 500Q of inductive reactance at 1000HZ. Determine the values of inductance and capacitance used. (C=0.318µF) (L=79.6mH)
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Write the expression for the inductive reactance,
Substitute 500 Ω for XL and 1000 Hz for f,
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- List the five capacitor replacement rules.4. Find Idc, Vdc and the capacitance that will force the Vr(pp) to 2mV. Draw the output waveform across the capacitor. Fin=60HZ. TX1 D1 Ge Vac Lst 230V Lp 1 RL 12-0-12 Center tapped CL 1k D2 Ge 25. For a 1Vpp sinusoidal input, at a frequency of 1KHz, draw the output for each circuit.
- What value of capacitance must be connected in series with the 20-μFcapacitor in order to double the bandwidth?For a given series RC circuit with resistance R= 50 ohm and capacitance C= 1.5uF connected to an ac voltage source of 60V, 2500 Hz, then the magnitude of current through the circuit is Select one: Oa. 3.45A Cb.0915A Oc.None of these O d. 5.45A Next pag umn tr ere to searchProblem 6: w- Calculate the voltage across the capacitor every 15 0.1 ms for one complete period of the input waveform. Then, use Multisim to sketch the 25 V (n capacitor waveform. Repeat the calculation and the simulation for a frequency of 2 kHz
- By connecting a capacitor parallel to the source in the figure, bring it to resonance. What is the capacitance of this capacitor?A 0.796-mH inductor produces an inductive reactance of 50 ohms at 10 kHz. What value of capacitance will be needed to produce a resonant circuit at this frequency?Describe the resulting waveforms when the capacitors (initially 20uF and then replaced with 100uF) were connected in parallel with the load
- 3. Find Idc, Vdc and the capacitance that will force the Vr(pp) to 3mV. Draw the output waveform across the capacitor. Fin=60HZ. DC output I DC without AC input DC with сарacitor сарacitor D Si RL 800 ohms 220Vrms a = 15:2 ww 00000From circuit below , what is the impedance value of the inductor if frequency f is 1 kHz?A resistor of resistance R=1000 2 is maintained at 17 °C and it shunted by 100 µH inductor. Determine the rms noise voltage across the inductor over a frequency bandwidth of: i) 15.9 kHz Ans: 182 x10-⁹ volt Ans: 9.22 x10-8 volt 11) 159 kHz iii) 1590 kHz Ans: 2.34 x10-6 volt