A) Verify KCL for the 3 nodes a, b, (cd) by calculating the total current of each of these 3 nodes. Designate outflowing current as positive; inflowing current as negative. Verify that the current of each node is zero. B) Verify KVL for the 3 loops (left, middle, right) by calculating the total voltage of each of these 3 loops. Walk clockwise around each loop. Designate voltage drop as positive; voltage rise as negative. Verify that the total voltage of each loop is zero. We know Vs = 10V Here are the resistor values in Ohms: R1= 1k R2 = 3k R3 = 3.3k R4 = 4.7k R5 = 18k R6 = 15k
A) Verify KCL for the 3 nodes a, b, (cd) by calculating the total current of each of these 3 nodes. Designate outflowing current as positive; inflowing current as negative. Verify that the current of each node is zero. B) Verify KVL for the 3 loops (left, middle, right) by calculating the total voltage of each of these 3 loops. Walk clockwise around each loop. Designate voltage drop as positive; voltage rise as negative. Verify that the total voltage of each loop is zero. We know Vs = 10V Here are the resistor values in Ohms: R1= 1k R2 = 3k R3 = 3.3k R4 = 4.7k R5 = 18k R6 = 15k
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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A) Verify KCL for the 3 nodes a, b, (cd) by calculating the total current of each of
these 3 nodes. Designate outflowing current as positive; inflowing current as
negative. Verify that the current of each node is zero.
B) Verify KVL for the 3 loops (left, middle, right) by calculating the total voltage of
each of these 3 loops. Walk clockwise around each loop. Designate voltage drop as
positive; voltage rise as negative. Verify that the total voltage of each loop is zero.
We know Vs = 10V
Here are the resistor values in Ohms:
R1= 1k
R2 = 3k
R3 = 3.3k
R4 = 4.7k
R5 = 18k
R6 = 15k
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