Question III The input to the circuit shown in Figure 3 is the source voltage, vin (t), and the response is the voltage across R3, vout(t). The component values are R1 = 5 kN, R2 = 10 kN, C1 = 0.1 µF, and C2 = 0.1 µF. Sketch the asymptotic magnitude Bode plot for the network function. C2 R2 R1 C1 Vin(e) R3 Vout(e) Figure 3
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- part 3 there can be more than one answerA capacitor has a peak current of 330 μA when the peak voltage at 330 kHz is 2.8 V. Part A What is the capacitance? Express your answer to two significant figures and include the appropriate units. C = Submit Part B Ic= μA Value Submit Request Answer If the peak voltage is held constant, what is the peak current at 660 kHz ? Express your answer to two significant figures and include the appropriate units. μA Value Units Request Answer biệt Units wwwwwProblem4. 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 Vx
- 1 The combined electrical resistance R of two resistors R₁ and R₂, connected in parallel, is given by the equation below, where R, R₁, and R₂ are measured in ohms. R₁ and R₂ are increasing at rates of 0.6 and 1.9 ohms per second, respectively. = 1/² + 12/2₂2 R₁ At what rate is R changing when R₁ ohm/sec R 55 ohms and R₂ = 88 ohms? (Round your answer to three decimal places.)If the switch (S) in the figure is closed for a very long time, what is the charge on the capacitor? Use an emf of 20 V, R1 = 100 Ω and C1 = 20 μF.G₁ R₁ www R3 The figure above shows a circuit with R₁ = C₂ = 10.0μF, and the ideal battery has emf & state. = 5.00, R₂ 20.0 V. R₂ = www C₂ 10.0Ω, R3 15.092, C₁ 5.00μF, Assume that the circuit is in a steady = = (a) Explain what we mean when we say that "a circuit is in a steady state," and what this assumption specifically implies for the circuit under consideration. (b) Find the current through the battery. (c) Find the voltage across C₁. (d) Find the voltage across C₂.