CONSIDERING THE CIRCUIT OF FIGURE 2. THE INPUT FUNCTION OF V(T) IS THE VOLTAGE PULSE SHOWN IN FIGURE 3. SINCE THE VOLTAGE IS ZERO FOR T< 0, THE VOLTAGE ACROSS THE CAPACITOR TERMINALS IS ZERO AT INSTANT O-. THE ANSWER OF VOCT) FOR T< 0 < 0.3S IS DUE TO APPLYING A POSITIVE VOLTAGE STEP OF 9 V AT TIME T= 0. AT TIME T = 0.3S, THE %3D FUNCTION CANCELS OUT, THEREFORE, THE CIRCUIT RESPONSE BECOMES THE NATURAL RESPONSE. DETERMINE THE VOLTAGE VOCT) AND PLOT ITS GRAPH. 6 k 4 k VOCT) VCT) VC(T) 8 kN 100 µF FIGURE 2 - CIRCUIT RC (V) VCT) 9- 0,3 t(s) FIGURE 3 - VOLTAGE PULSE

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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CONSIDERING THE CIRCUIT OF FIGURE 2. THE INPUT FUNCTION
OF V(T) IS THE VOLTAGE PULSE SHOWN IN FIGURE 3. SINCE THE
VOLTAGE IS ZERO FOR T< 0, THE VOLTAGE ACROSS THE
CAPACITOR TERMINALS IS ZERO AT INSTANT O-. THE ANSWER
OF VOCT) FOR T< 0 < 0.3S IS DUE TO APPLYING A POSITIVE
VOLTAGE STEP OF 9 V AT TIME T= 0. AT TIME T= 0.3S, THE
%3D
FUNCTION CANCELS OUT, THEREFORE, THE CIRCUIT RESPONSE
BECOMES THE NATURAL RESPONSE.
DETERMINE THE VOLTAGE VOCT) AND PLOT ITS GRAPH.
6 k
4 k
VOCT)
VCT)
VCT)
8 kN
100 µF
FIGURE 2 - CIRCUIT RC
V(T)
9.
0,3
t(s)
FIGURE 3 - VOLTAGE PULSE
Transcribed Image Text:CONSIDERING THE CIRCUIT OF FIGURE 2. THE INPUT FUNCTION OF V(T) IS THE VOLTAGE PULSE SHOWN IN FIGURE 3. SINCE THE VOLTAGE IS ZERO FOR T< 0, THE VOLTAGE ACROSS THE CAPACITOR TERMINALS IS ZERO AT INSTANT O-. THE ANSWER OF VOCT) FOR T< 0 < 0.3S IS DUE TO APPLYING A POSITIVE VOLTAGE STEP OF 9 V AT TIME T= 0. AT TIME T= 0.3S, THE %3D FUNCTION CANCELS OUT, THEREFORE, THE CIRCUIT RESPONSE BECOMES THE NATURAL RESPONSE. DETERMINE THE VOLTAGE VOCT) AND PLOT ITS GRAPH. 6 k 4 k VOCT) VCT) VCT) 8 kN 100 µF FIGURE 2 - CIRCUIT RC V(T) 9. 0,3 t(s) FIGURE 3 - VOLTAGE PULSE
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