Part A S 4Ω www i(1) 240 mH Find the steady-state expression for i, (t) in the circuit in (Figure 1) if vs = 120 sin 50t mV. Suppose that i, (t) = Io cos(wt +), where -180° << 180°.Determine the values Io, w, p. AΣ vec ΑΣΦ 2.5 mF Express your answers using three significant figures separated by commas. Express I in milliamperes, w in radians per second, in degrees. Io, w, o 21.42,50,- 90 www ? mA, rad/s, º

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Figure
Part A
5"
402
w
io (1)
195| ΑΣΦ
Io, w, p= 21.42,50, – 90
240 mH
↓↑
2.5 mF
Find the steady-state expression for i, (t) in the circuit in (Figure 1) if vs = 120 sin 50t mV. Suppose
that i, (t) = Io cos(wt +), where -180° << 180°.Determine the values Io, w, p.
vec
Express your answers using three significant figures separated by commas. Express I in
milliamperes, w in radians per second, in degrees.
<
1 of 1
?
mA, rad/s, °
Transcribed Image Text:Figure Part A 5" 402 w io (1) 195| ΑΣΦ Io, w, p= 21.42,50, – 90 240 mH ↓↑ 2.5 mF Find the steady-state expression for i, (t) in the circuit in (Figure 1) if vs = 120 sin 50t mV. Suppose that i, (t) = Io cos(wt +), where -180° << 180°.Determine the values Io, w, p. vec Express your answers using three significant figures separated by commas. Express I in milliamperes, w in radians per second, in degrees. < 1 of 1 ? mA, rad/s, °
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