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consists of 2 protons and two neutrons.) Answer [8]27. In the circuit at the right C-68.4...
[8]27. In the circuit at the right C-68.4 pF, R-25.4 S2 and - 5.0V. How long after switch Sis closed will the charge on the capacitor take to rise to 63% of the maximum charge that will be stored in it? PAK Answer:
For the circuit shown below, PLEASE ANSWER #’s 7 & 8! 7. For the circuit below, & = 90 V, R = 100 2, and C= 10.0 µF. The switch is closed at t 0. (a) What is the time constant of this circuit? (b) What charge will the capacitor have a long time after the switch is closed? (c) At what time will the charge on the capacitor be 80% of the value you found in part (b)? Switch...
please answer asap Problem 2 In the given RC circuit, a capacitor is connected to a resistor in series and is getting charged after closing the Switch. The time constant of the circuit is 10 (S). R = 109 (12) C =? (F) O A- Calculate the capacitance of the capacitor. B- How much time does it take for the capacitor to become fully (about 99%) charged? C- If we close the Switch and the capacitor starts getting charged, what...
This circuit consists of an = 6.00 V battery, an R = 49.7 kohm resistor, a C = 149 muF capacitor, a flashbulb, and two switches. Initially, the capacitor is uncharged and the two switches are open. To charge the unit, switch Si is closed: to fire the flash, switch St (which is connected to the camera's shutter) is closed. How long does it take to charge the capacitor to 5.00 V?
S2* (8 pts) In the circuit to the right, the DC source, V = 2 volts for all time. The switch has been open a long time. Also, the capacitor is charged to 1 volt, so ve(0-) =1. At t = 0, the switch closes. Assume: C = "4 F, = 1 H, R = 10 ohms. a) Find the current through the resistor for t> 0. (hint: at t= 0+, di/dt = .04 amps per second. *) Plot your...
Problem 2 In the given RC circuit, a capacitor is connected to a resistor in series and is getting charged after closing the Switch. The time constant of the circuit is 10 (S). R = 109 (2) C =? (F) A- Calculate the capacitance of the capacitor. B- How much time does it take for the capacitor to become fully (about 99%) charged? C- If we close the Switch and the capacitor starts getting charged, what is the charge at...
Problem 2 HE In the given RC circuit, a capacitor is connected to a resistor in series and is getting charged after closing the Switch. The time constant of the circuit is 10 (S). R = 10º (2) C=? (F) A- Calculate the capacitance of the capacitor. B- How much time does it take for the capacitor to become fully (about 99%) charged? C- If we close the Switch and the capacitor starts getting charged, what is the charge at...
An LC circuit like that in the figure below consists of a 3.30-H inductor and an 838-pF capacitor that initially carries a 135-uC charge. The switch is open for t closed at t0. Compute the following quantities at t-4.00 ms. 0 and is then thrown Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step carefully. (b) the total energy in the circuit (c) the energy stored in the inductor
Problem 2 HE In the given RC circuit, a capacitor is connected to a resistor in series and is getting charged after closing the Switch. The time constant of the circuit is 10 (s). R = 10° (0) C=? (F) A- Calculate the capacitance of the capacitor. B- How much time does it take for the capacitor to become fully (about 99%) charged? C- If we close the Switch and the capacitor starts getting charged, what is the charge at...
Problem 2 HE In the given RC circuit, a capacitor is connected to a resistor in series and is getting charged after closing the Switch. The time constant of the circuit is 10 (S). R = 109 (0) C =? (F) A- Calculate the capacitance of the capacitor. B- How much time does it take for the capacitor to become fully (about 99%) charged? C- If we close the Switch and the capacitor starts getting charged, what is the charge...