* The time constant for the following circuit is 40 ΚΩ 20 ΚΩ εγγγ 10 ΚΩ 5 mH ww 30 ΚΩ 5 US 10 Us 0.3 Us 0.2083 Us
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- You will calculate the time constant for the circuit shown in the illustration below using Equation 1-1: AC source 4 w 1000 HH Figure 1-3 Calculate the RC time constant C1 1pF 1-6 What is the time constant of this circuit, in milliseconds (ms)?5. Suppose the following circuit is left open for a long time. 5000 22 24 V (a) What is the facial curren What is the carte II What is the ches What is the not the pos 80mF when we close thei 90s after we close the switch? dissipe the resistor 90s arter ene capacitor ons after we close the suit Close the switchi difference across the spacitor 008 after we close the switch across the resisto we close the swit 12 the potential (g) What is the energy stored in the capacitor 90s after we close the switch? (h) What is the energy dissipated by the resistor during the first 90s since the switch is closed?Calculate the voltage at 1.5¹ (milliseconds) for the following RC Circuit. Assume switch is closed and capacitor is in a charge state. t=0 LE -10 V oto R1 1kQ C1 1uF
- The discharging time constant for the circuit below is _nanoseconds. 5 V MPU 2 kQ RESET 100 kQ 1 pF SW 1* For a clamper circuit, if the input is the blue waveform and the output is the red one. Scale 5V/Div. Determine the correct operation circuit XPG1 MA S a 1 C1 10μF XFC1 AVAFE HH D1 1N4001 VI 5V 3 R1 $10k C1 10μF XFG1 50 2 D1 1N4001* V1 6V C1 10μF D1 1N4001 V1 10V R1 Σ10kΩ R1 >10K 3 O 1 O 2A 1 Megaohm resistor is connected in series with 1 microfarad capacitor. If the circuit is suddenly impressed by 1kV DC source, what is the transient current when the switch is closed after 1,000 milliseconds? O 0.9990 mA O 0.6065 mA O 0.368 mA O 0.7788 mA
- A voltage of 6 cos(100rt) V is fed as y-input to a CRO. The waveform seen on the screen of the CRO is shown in the figure. The Y and X axes settings for the CRO are respectivelyCircuits 1 HW 7 Q7Find the kinetic energy for an electron having total energy of -4eV in the third energy level. 8eV -8eV 4eV 2eV -4eV -2eV
- The givens are I1 = 0.219A, R1 = 66 ohms, R2 = 38 ohms, C = 0.1 farads. What is Vc across the capacitor at time t = 4.58 seconds?Inductive Circuits Fill in all the missing values. Refer to the following formulas: XL=2fLL=XL2ff=XL2L Inductance (H) Frequency (Hz) Inductive Reactance ( ) 1.2 60 0.085 213.628 1000 4712.389 0.65 600 3.6 678.584 25 411.459 0.5 60 0.85 6408.849 20 201.062 0.45 400 4.8 2412.743 1000 40.841Two 10 uF capacitors have been connected in parallel across a 230 V 50 Hz AC supply. The current drawn from the supply will be approximately: Select one: a. 1.44 A b. 0.36 A c. 11.5 A O d. 23.0 A