8. Consider the device D shown. ip D VD a) Write an expression for the power delivered to D if in = -100[mA] and vo(t) = (12[V] – 1.6[Vs¯*]t). The expression for vp(t) is considered valid for t> 0 [s]. b) Given the voltage and current specified in 8 a), find the energy delivered to D between t= 0 and t= 2 [s).
8. Consider the device D shown. ip D VD a) Write an expression for the power delivered to D if in = -100[mA] and vo(t) = (12[V] – 1.6[Vs¯*]t). The expression for vp(t) is considered valid for t> 0 [s]. b) Given the voltage and current specified in 8 a), find the energy delivered to D between t= 0 and t= 2 [s).
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Consider the device D shown.
ip
2
D
+
VD
a) Write an expression for the power delivered to D if in = -100[mA] and
vp (t) = (12[V] – 1.6[Vs-']t). The expression for vD(t) is considered valid for t> 0 [s].
b) Given the voltage and current specified in 8 a), find the energy delivered to D between t= 0 and
t = 2 [s].
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Consider the device D shown.
ip
2
D
+
VD
a) Write an expression for the power delivered to D if in = -100[mA] and
vp (t) = (12[V] – 1.6[Vs-']t). The expression for vD(t) is considered valid for t> 0 [s].
b) Given the voltage and current specified in 8 a), find the energy delivered to D between t= 0 and
t = 2 [s].
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