If q(t) = 6 Coulombs, find i(t) at t = 2 seconds.
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If q(t) = 6 Coulombs, find i(t) at t = 2 seconds.

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- For the circuit shown in the figure, ϵ0=100Volt, R1=50Ω, R2=100Ω, C=2μF. What is the status of the capacitor immediately after the switch is closed, charged or discharged, and what is the initial current of the battery immediately after the switch is closed?Plz correct solution.2 Determine the suitable measures of the signals in figure below and calculate the values of energy and power for the signals. x(t) -0.08 -0.04 0 x(t) 0.1 0.01 0.04 0.08
- 目Reading Time Left:0:54:10 Abadula Abadula: Attempt 1 A series circuit consists of three resistors connected to a source: R1 passes a current of 10 A and has a value of 10 Q, R2 dissipates a power of 50 W, R3 has a voltage drop of 50 V. What is the value of the source? 10 V 200 V 50 V 100 V 70 V tv Slh NOV 13Find the current in the circuitWhen the switch is in position 1, the circuit will charge the capacitor. Find the Thevenin Equivalent Circuit for the charge phase and determine the time constant (Rh*C) for the charge phase.
- Incandescent lighting of 500 W is connected in parallel with an inductive load. A clamp-on ammeter reveals a total circuit current of 7 A. What is the inductance of the load connected in parallel with the incandescent lights? Assume a voltage of 120 V and a frequency of 60 Hz.Problem 2 Find the expression for the voltage and current of the capacitor as a function of time for the following circuit. Sketch the voltage and current as a function of time. 12 V 2 ΚΩ 2 ΚΩ X. t=0 · 4 ΚΩ + CS Scanned with CamScanner 200 μF 2 ΚΩ Σ2 ΚΩ4. For the waveform of the current through a 100 mH inductor, plot v (t) for the first 8ms i(t) mA 200 गळागों + + 4 5 6 100- 50 -50 -t mS
- Need sol in 20 minCan you check if my answers are correct (a) Determine the time constant of the circuit. T = 5.6ms (b) Write the mathematical equation for the voltage vC following the closingof the switch. Vc = 25(1 - e-t/5.6ms)V (c) Write the mathematical expression for the current iC following the closing of the switch. Ic = 0.446e-t/5.6ms mA (d) Sketch the waveforms of vC and iCExplain this equation in basic terms

