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- Evaluate. No solution, final answer only in rectangular form. ... 10230° + (2 – j4) y = 100[ (3 + j4)(3 – j5)* REAL IMAG (do not include "j" anymore) y Blank 1 Blank 2 Blank 1 Add your answer Blank 2 Add your answerFind the current I, in the circuit shown. ... 50 N 100 Q 60/0° V j80 Q -j40 Q Note: The current /, required is in MAGNITUDE only with 4 decimal places. Final Answer: I, = Blank 14-28.8468 AIf the rms value of f(t) in Figure 1 is frms=15, find the rms of f(t) in Figure 2. f(t) 3 5 6 8 9 11 12 Figure 1 f(t) 2 3 5 6 8 9 11 12 Figure 2
- The sinusoidal voltage source in the circuit seen in (Figure 1) is operating at a frequency of 46 krad/s. The coefficient of coupling is adjusted until the peak amplitude of 1 is maximum. Figure 2002 100 Q 5 mH3 7502 300 £2 ww 20 mH 1 of 1 40 nF Part A What is the value of k? Express your answer using three significant figures. k = .085 Submit Part B VAΣ vec X Incorrect; Try Again; 28 attempts remaining i₁ = Submit Previous Answers Request Answer What is the peak amplitude of 1 if Ug = 399 cos(4.6 x 10¹) V? Express your answer to three significant figures and include the appropriate units. Provide Feedback μA Value Request Answer Units ? ?Assume temperature is 300K unless otherwise stated. Boltzmann's constant is 1.38 · 10-23 J · K-1 Q1) Calculate the thermal voltage spectral density for the following circuits. a) 502 b) 2002 V 200 V250 50Ω V50 c) 2M5 1M67 VIMThe rms voltage across a 0.018 μF capacitor is 1.5 V at a frequency of 50 Hz. Part A Whar is the rms current through the capacitor? Express your answer using two significant figures. 15] ΑΣΦ Irms= 0.00000848 Submit Previous Answers Request Answer X Incorrect; Try Again; One attempt remaining ? μA
- Note:- Calculate the mean value of a bulb, if 0.02t t20 P(t) = 0.02e =0 otherwise Where, t is in hours. %3D (a) T = 25 hours (b) T = 50 hours (c) T = 75 hours (d) T =100 hours %3D Answer O A O B realme Shot by Gowthamnag 2021/10/30 15:46Leg 10. Find an expression for the equivalent inductance for the circuit shown O Leq = L₁ elle elle 42HW: Sketch the waveforms Vc and Vo versus time. 9V Vin 1mA 9V I Vin 23 t(msec) 6 2 1uF 8 1 4 3 5 Vo 1uF 5. 6. 2. 8 R 4 R 555 Q atm 100
- termining the impedance and current of the system, the voltage across the resistor, and the voltage across the inductor. Could you please forward the response as a print of a handwritten answer? I got these two answers earlier. Which of them would be correct Impedance Z= (1000 + j 90.836) ohm Current I= 0.219∠-5.19° A Voltage across resistor VR = 219.097∠-5.19° V Voltage across inductor VL = 165.195∠84.81° V Impedance will be Z= 1004.052 ∠ 5.12° Current will be i = 0.221 ∠ -5.19° A. Volatge across resistor will be VR = 211.9∠ -5.19° V Volatge across inductor will be VL = 165.12 ∠ 84.81°VGoogle Play A Maps YouTube Wolfram Alpha: Co.. E Padlet: You are bea. C++ Tutorial for Be. Other bookmarks Gmail Find the equivalent capacitance (in F) seen by the source if C = 8.5 F C C 4.15 O 2.07 O 1.04 3.11 Time left 1:13:00 11:02 AM E ENG P Type here to search 25°C 5/24/2021Inductive 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 40.841