4) Consider the circuit below. Design an equivalent circuit using an op-amp, the same resistor R, and a capacitor, and give the value C of the capacitance in terms of R and L. L ll R Vin Vout
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- 4. In the following circuit R, = 62 IT %3D A I, I2 12v RA = 120 R4 = 120 B (1) Find the equivalent resistance for the two parallel resistor Ra and R, (2) Find the equivalent resistance ( total resistance) for R, R, and R, (3) Calculate the current, I, , flowing from point A and back to B (4) Find the voltage drop across R, (5) Find the voltage drop across R4 (6) Calculate the I, (7) Calculate the l, (8) Is sum of I, and I, equal to l, ? (9) Calculate the power dissipated on R, (10)Calculate power dissipated on RA (11)Calculate the power dissipated on R, (12) Find the total power dissipated from R, RA, and R, (13) If R, RA, and R, are connected in series, find the total power dissipated from R RA, and R. (14)From the answer in (12) and answer from (13), which answer is larger? А,A capacitor with a very large capacitance is in series with a capacitor with a very small capacitance. The equivalent capacitance of the combination of the two is: D a. slightly less than the capacitance of the larger one o b. slightly greater than the capacitance of the smaller one O c. slightly less than the capacitance of the smaller one o d. slightly greater than the capacitance of the larger oned) Find the power delivered to the resistor e) Find the rate at which the energy stored in the capacitor is increasing
- Problem 10: While preparing a laboratory experiment on capacitors, you connect an E-4.5 V DC power supply to fully charge an old capacitor that is marked C- 330 HF Your lab assistant hooks up the circuit as shown below. When the switch S is at point a, the capacitor is connected to the power supply. When the switch S is at point b, the capacitor is disconnected from the power supply and connected to a voltmeter, V. The voltmeter has an internal resistance R-10.0 MS2 al Otheexpertta.com Part (a) The capacitor is initially uncharged, when the switch is moved to position a, hooking the capacitor C to the power supply. What will happen to the charge on the capacitor? It will quickly (but not instantaneously) increase to a maximum value Correct! Part (b) Calculate the charge on the capacitor (in Coulombs) when it is fully charged by the power supply Part (c) After the capacitor is fully charged, you switch the switch to position b at time t-0 seconds. The voltmeter initially reads 4.5 V.…A portion of a larger circuit is shown in the diagram below. The potential drop between points b and a is Vba = 2.0V. Similarly, Vcb = 2.0V, Vcd = 4.0V, and Vdf = -0.5V. (e.g. if Vba is greater than zero, then a is at a higher potential than b.) Ba What is the potential difference Vgf? (Please answer in Sl units) Answer $3b What is the potential difference Vca? (Please answer in Sl units) Answer 14:3c What is the potential difference Vag? (Please answer in Sl units) AnswerPhysics Question: Please take a look at this question and answer the following! Thank you so much!