\$;MH (the flash) B@0=8F0 12 \$>@C =0 8=>8A:5

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HW6 solution

https://ee101-winter18-01.courses.soe.ucsc.edu…

value: 10.00 points A capacitor has the terminal voltage 50 v t<0 Ag-100t+ t>0 The capacitor has an initial current of 2 A. Find the constants A and B if the capacitance is C = 4 mF.

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Chapter 8, Problem 1. – UNLV

www.egr.unlv.edu/~eebag/EE 221 Chap 8 Sol.pdf

C + i L 1.778 = i C(0+) + 1.5 or i C(0+) = 0.278 mA (b) v L(0+) = v C(0+) = 0 But, v L = Ldi L/dt and di L(0+)/dt = v L(0+)/L = 0 di L(0+)/dt = 0 Again, 80 = 45i R + v C 0 = 45di R/dt + dv C/dt But, dv C(0+)/dt = i C(0+)/C = 0.278 mohms/1 PF = 278 V/s Hence, di R(0+)/dt = (-1/45)dv C(0+)/dt = -278/45 di R(0+)/dt = -6.1778 A/s Also, i

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Fundamentals of Applied Electromagnetics

https://em.eecs.umich.edu/emag7e/pdf/ulaby_exercise_solutions.pdf

5 =4 10 7 ln[10+ p 99]=1:2 (mH/m): G0=0 because s =0 C0= pe 0 ln d 2a + q d 2a 2 1 = p 8:85 10 12 ln[10+ p 99] =9:29 (pF/m): Fawwaz T. Ulaby, Eric Michielssen, and Umberto Ravaioli, Fundamentals of Applied Electromagnetics c 2010 Prentice Hall

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