Consider the circuit in (Figure 1). Suppose that ig = 0.3 sgn (t) mA, R = 50 kn, and C = 500 nF. Figure ig R{ -i,(1) v (1) < 1 of 1 C > ▼ Part A Use the Fourier transform to find i, (t). Suppose that i, (t) = Ae-atu(t). Determine the values of A and a. Express your answers using three significant figures separated by a comma. Express A in milliamperes and a in inverse seconds. A, a= 175] ΑΣΦ.41 | vec Submit Request Answer Part B Complete previous part(s) 1 < Return to Assignment Provide Feedback ? mA, 8-1 Constan

Introductory Circuit Analysis (13th Edition)
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Consider the circuit in (Figure 1). Suppose that
ig = 0.3 sgn (t) mA, R = 50 kn, and C = 500 nF.
Figure
ww
RS
-i (1)
vo(1)
1 of 1 >
C
Part A
Use the Fourier transform to find i, (t). Suppose that i, (t) = Ae¯atu(t). Determine the values of A and a.
Express your answers using three significant figures separated by a comma. Express A in milliamperes and a in inverse seconds.
A, a=
IVE ΑΣΦ
阿
Submit Request Answer
Part B Complete previous part(s)
< Return to Assignment
↓↑ vec
Provide Feedback
?
mA, s-1
Consta
Transcribed Image Text:Consider the circuit in (Figure 1). Suppose that ig = 0.3 sgn (t) mA, R = 50 kn, and C = 500 nF. Figure ww RS -i (1) vo(1) 1 of 1 > C Part A Use the Fourier transform to find i, (t). Suppose that i, (t) = Ae¯atu(t). Determine the values of A and a. Express your answers using three significant figures separated by a comma. Express A in milliamperes and a in inverse seconds. A, a= IVE ΑΣΦ 阿 Submit Request Answer Part B Complete previous part(s) < Return to Assignment ↓↑ vec Provide Feedback ? mA, s-1 Consta
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