k=70, ZL=j1000, and Zc-j402 in the circuit shown. Find the circuit's Thé venin equivalent circuit with respect to terminals A and B. 2/45 mA + klx Zc Ix A B ▼ Find VTh. Express your answer to three significant figures in either rectangular OR degree-polar form. (Use the r20 template or rcis(0) for degree polar entries.) 15. ΑΣΦ. 41 Ivec VTh= Submit Part B ZTh= Request Answer Submit Find ZTh. Express your answer to three significant figures in either rectangular OR degree-polar form. (Use the r20 template or rcis() for degree polar entries.) 15. ΑΣΦ ↓↑ vec ? Request Answer mV ? Ω

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Question
k = 7, ZL=j100, and Zc = -j40 in the circuit
shown. Find the circuit's The venin equivalent circuit with
respect to terminals A and B.
2/45 mA
ZL
- +
klx
Zc
Ix
A
B
Part A
Find VTh. Express your answer to three significant figures in either rectangular OR degree-polar form.
(Use the r20 template or rcis(0) for degree polar entries.)
IVE ΑΣΦ ↓↑ vec
VTh=
Submit
Part B
ZTh=
Request Answer
Submit
Find ZTh. Express your answer to three significant figures in either rectangular OR degree-polar form.
(Use the r20 template or rcis(0) for degree polar entries.)
[5] ΑΣΦ
↓↑ vec
?
Request Answer
mV
?
Ω
Transcribed Image Text:k = 7, ZL=j100, and Zc = -j40 in the circuit shown. Find the circuit's The venin equivalent circuit with respect to terminals A and B. 2/45 mA ZL - + klx Zc Ix A B Part A Find VTh. Express your answer to three significant figures in either rectangular OR degree-polar form. (Use the r20 template or rcis(0) for degree polar entries.) IVE ΑΣΦ ↓↑ vec VTh= Submit Part B ZTh= Request Answer Submit Find ZTh. Express your answer to three significant figures in either rectangular OR degree-polar form. (Use the r20 template or rcis(0) for degree polar entries.) [5] ΑΣΦ ↓↑ vec ? Request Answer mV ? Ω
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