Question

Two 100 ohm resistors, two 0.3 H inductors and a 20 uF capacitor are connected in...

Two 100 ohm resistors, two 0.3 H inductors and a 20 uF capacitor are connected in series to a Vrms = 120 V and frequency of 50 Hz power source of the form v=Vmaxcos(wt)

(i) What will be the maximum current flowing through the circuit

(ii) When (at what time) will the current be maximum if we switch ON the circuit at t=0

(iii) If the frequency of the power source could be varied than for what frequency the power dissipated in the circuit will be maximum?

Homework Answers

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
Two resistors with values of 25 ohm and 35 ohm, respectively, are connected in series and...
Two resistors with values of 25 ohm and 35 ohm, respectively, are connected in series and hooked to a 12-V battery. a) There are 0.20 A current in the circuit b) There is 2.4 W power expended in the circuit. There is a box full of 25 Ohm and 35 Ohm resistors. How many resistors would be needed to make an equivalent resistance of 170 Ohm? How much power is dissipated in the 170 Ohm equivalent resistance if connected to...
A 38.6 uF capacitor is connected to a 46.2 ohm resistor and a generator whose rms...
A 38.6 uF capacitor is connected to a 46.2 ohm resistor and a generator whose rms output is 23.5 V at 60.0 Hz. Calculate the rms current in the circuit. Calculate the voltage drop across the resistor. Calculate the voltage drop across the capacitor. Calculate the phase angle for the circuit.
A 100 ​Ω​ resistor, 0.0200 H inductor and 30 x 10​-6​ F capacitor are connected in...
A 100 ​Ω​ resistor, 0.0200 H inductor and 30 x 10​-6​ F capacitor are connected in series to a 20 V rms AC source. The frequency of the source can be varied. What is the rms current in the circuit when the frequency is 250 Hz?
Two resistors 1.00 ohms and 2.00 ohms are connected in parallel, then they are connected to...
Two resistors 1.00 ohms and 2.00 ohms are connected in parallel, then they are connected to 3.00 ohms resistor and a 9.00 V battery in series to complete a circuit. a. What is the equivalent resistance of this circuit? b. What is the current through the 1.00 Ohms resistor? c. What is the voltage on 3.00 ohms resistor? d. What is power dissipated on 2.00 ohm resistor?
A series RCL circuit has an emf connected in series with a resistor (1260 ohm) inductor...
A series RCL circuit has an emf connected in series with a resistor (1260 ohm) inductor (61mH) and capacitor (3.4 uF). What frequency of the emf will maximize the current through the circuit? A) 128 Hz B) 352 Hz C) 543 Hz D) 932 Hz E) 657 Hz
An RC circuit consists of a 3.00 V battery attached to a 50.0 uF capacitor in...
An RC circuit consists of a 3.00 V battery attached to a 50.0 uF capacitor in series with a 100.0 kilo-Ohm resistor. The circuit has a switch that is initially open (no initial charge on the capacitor). A: find the current through the circuit immediately after the switch is closed B: find the current 12 seconds after the switch is closed.
A series circuit includes an AC power supply with peak voltage 5.4 V and frequency 100...
A series circuit includes an AC power supply with peak voltage 5.4 V and frequency 100 Hz, a 10-ohm resistor and a 120 uF capacitor. What is the impedance, phase angle, and maximum current? Sketch one cycle of the voltage and current as might be seen on an oscilloscope.
16. In an RLC circuit, a resistor R x 8 Ohm, a capacitor of 330 micro...
16. In an RLC circuit, a resistor R x 8 Ohm, a capacitor of 330 micro Faraday, and an inductance of 50 mH are connected in series. The circuit is connected to an alternating source that delivers a voltage equal to: V-250- without (314 t) (volts) Identify and calculate: a) The maximum voltage of the source. b) The frequency of the source. c) The RMS voltage of the source. d) Capacitive reactance. e) Inductive reactance. f) The impedance of the...
A resistor, 50.0-mH inductor, and 100.0-µF capacitor are connected in series with a 50 Hz voltage...
A resistor, 50.0-mH inductor, and 100.0-µF capacitor are connected in series with a 50 Hz voltage source and an impedance of 75.0 Ώ. What average power is delivered to this circuit when delta Vrms = 210 V
300 ohm resistor, series with 110 µm, 50 Hz power supply with 20 µF capacitor It...
300 ohm resistor, series with 110 µm, 50 Hz power supply with 20 µF capacitor It is connected. What is the impedance of the circuit? What is the amplitude of the current? the capacitor What is the amplitude of the potential difference between the ends? What is the power factor? On what must be connected to the circuit to ensure resonance and What is its value?
ADVERTISEMENT
Need Online Homework Help?

Get Answers For Free
Most questions answered within 1 hours.

Ask a Question
ADVERTISEMENT