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- 1. For the circuit to the right, let S Ri be 500 Ohms, R2 = 100 Ohms, and the capacitance of the capacitor equal to 10-6 F + 10.0 V R1 R2 a. Find the current in each branch of the circuit at t = 0 and t = infinity. b. Find the charge on the capacitor at t = infinity.1. The numbers in the circuit below are the resistance of the resistor in ohms.A) Find the equivalent resistance of the circuit when the switch S is open (ReqO) and when the switch S is closed (ReqC)B) When the switch S is closed, the equivalent resistance drops to 90.0% of the original value. Determine the value of R.C) What would the voltage (in V) between points a and b have to be for 153.0 W to be delivered to the circuit when the switch is closed?d. An RC circuit has a resistance of 20, a capacitance of 50µF, and is connected to a battery of 5V. What| will be the capacitor's maximum charge and about how long will it take to charge it to 99% of its maximum value?
- 3. Four capacitors are connected to an EMF as shown with C₂ = 20 μF, C₂ = 4 μF, C₂ = 3 μF, and C₁ = 4 μF. The voltage across C₂ is 20 V. a. What is the equivalent capacitance of the circuit? Redraw circuit at each step. b. What is the EMF? You may (but do not need to) make a table similar to the first problem to help organize your calculation. B d. What is the total energy stored in the capacitors? Do it the easy way! to C₂ c. What would a voltmeter read if the COM lead is at A and the V lead is at B? In other words, what is VB - V₁? C4Initially, for the circuit shown, the switch S is open and the capacitor is uncharged. The switch S is closed at time t = 0. In the figure shown, when the time t is equal to 8.0 s, the charge on the capacitor (in mC), is closest to: a. 4.06 b. 13.2 c. 0.23 d. 2.26 e. 1.33 70 V L www 0.20 ΜΩ 90 μF15V a. + AM 10.2. 4 t=0 um 45² 652 im + V 1 ic (t) b. Assume switch has been closed for Find a mathematical expression for Vc it capacitor is initially uncharged and the switch is closed at t = 0. Sketch Vc lt). 20m F a long time. opening Fird an expression for ic immediately after the switch and sketch it.
- In the RC (series) circuit, R = 1.2 M2 and C = 5.00 µF. It is connected to a 30 volt power source with a www- R switch S. What is the current in the circuit when the capacitor reaches 25 volts? b. 4.17 µA 2.12 μΑ c. 9.3 μΑ 12.4 HAProblem4. Find Rz in the following circuit to achieve maximum power transfer to it, and the value of the maximum power transfer. + Vx R2 k2 1 kN ŽRL +, 12 V +, 2 VxUsing the circuit below: a. Redraw the circuit where Rx = 102 b. Determine the value of Iy. Iy 1002 2A Rx
- Given the equation, V =Voe-(2.6x1 )t, at what time will %3D oe the voltage drop by its original value? Select one: a. t= 2566 s b. t= 2666 s C. t= 2746 s d. t 2646 s Given the equation, V – Vne RC what size of resistor would be %3D required to drop the voltage on a 250µF capacitor to its original voltage in 2 min.? Select one: a. R= 470 k2 b. R= 450 k 2 %3D R = 460 k2 С. d. R= 440 kWhat is the total power delivered by the 16-volt battery in the circuit below? V1 = 16 volts, V2 = 20 volts, R1 = 7.0 Ω, R2 = 3.0 Ω, and R3 = 2.0 Ω, a. 24 watts b. 36 watts c. 48 watts d. 60 watts e. 12 wattsb. About how many time constants does it take to charge a capacitor in an RC circuit to 50% of its maximum value?