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- The figure below shows a simple RC circuit with a 3.30-μF capacitor, a 4.40-M resistor, a 9.00-V emf, and a switch. What are the following exactly 9.00 s after the switch is closed? (a) the charge on the capacitor 13.7204 UC (b) the current in the resistor 0.0110522 x Your response is off by a multiple of ten. HA (c) the rate at which the capacitor is storing energy μW (d) the rate at which the battery is delivering energy μWSaved Messages Shared media A premaccs = Pinned message fr12345@notavaaq.ga - 10 u unl@notavaad 77 videos 10 un SOLD CH A dc voltage E is applied across an RL circuit at t=0. at what time after, is the voltage across the resistor equal to that of the inductor. Photo Saved Me A 0.693TC You: Albur avaaa 0.673TC Channel p proof 0.707TC & LF BU 0.779TC Spotify & TG SC ySpotify E DWAR tli || mov I sebby Photo, vo A SEARCH FOR BUYERS SELLERS AND MAKERS bambeemo ts | 1M GC SH @65: LF BUYER CHE UNIQUE MARKET Photo 316 of 317 ava today at 11:56 AM Upload Docu. Media viewerQ6. Figure Q6 shows a modulated waveform v(t) in microvolts as a function of time t in nanoseconds. 25 50 75 100 125 150 175 200 225 250 50 40 40 30 30 20 20 10 10 -10 -10 -20 -20 -30 -30 -40 -40 -50 -50 250 25 50 75 100 125 150 175 200 225 time/ns Figure Q6: Modulated waveform (a) Describe the modulation scheme. (b) What are the values of the carrier frequency and the modulation frequency? (c) What is the value of the modulation index? (d) What is the transmission efficiency (ratio of modulated to total power) in this example? (e) Sketch the spectrum of this modulated waveform indicating the relative magnitudes of the various spectral components. (f) The modulating wave in this example is substituted with a square wave of 50% duty cycle and of fundamental frequency 1.0 MHz. Sketch the absolute value of the spec- trum of the modulated waveform indicating the frequencies and relative magnitudes of the sideband components. (g) Demodulation of this type of signal is usually accomplished…
- For the circuit below with input voltage V1, a step function of magnitude 25 volts at time t-0, find the transient response voltage across the capacitor C1 and plot the results: (Provide your calculations and reasoning for your answer.) R1 555 250mH V1 = 0 V2 - 25 TD = 0 TR In V1 C1 TF in PW- 25 PER = 3.3ub) Derive a block diagram model for the RLC series circuit shown in Figure Q1, relating input voltage Vin to output voltage Vout derived across the inductor. Your answer should identify the state variables, list the governing equations, and clearly show the direction of flow of signals in the block diagram. R + Vin(~ C Figure Q1 0.000 VoutQUESTION 4 A 1kO resistor, a 5mH ideal inductor, and a 1nF capacitor are connected in parallel. Find the total impedance if a 12kHz voltage is applied across the circuit. O 1.26KNL79.9* O 1.890412.4° O 1.61kQ<-74.4° O 3620268.8°
- 9 calculate the cuanent to cwirg thnough +the 5mH inductoRo () calculate the voltage () the enengy stoned by the indue ton the enengy stored the capacitoR Assume, the indueton and the eapacitorthank you can you hand write clear pleaseA 555 Timer has a frequency of 200HZ at the output. The capacitance used is 5nF. Replace the capacitance value so that we decrease the frequency to 20Hz. Write your answer in nF: nF
- • Circuit diagram needed.• Answer must includecorrect units.Assume the passive sign convention. Consider the current waveform. -1 daptive SYNC i(1) (A) 2 10 -2- 1 2 3 - r(s) Determine the voltage across a 2.4 F capacitor. (You must provide an answer before moving on to the next part.) The voltage across the 2.4 F capacitor is -- V. Q Search **** 1/0 ceciet JAISMA 3K un 3K un + Vs 7mH 3√1₂ Im mn SmH -+ 20 V t IMF Vc What is Vs. iz Ve at steady-state?

