Answer this question Determine I, of the parallel diode configuration of Fig. 2.28 given that E = 14 V and R = 400 N. %3D Select the correct answer A 99.75 mA B 33.25 mA A AIS C 23.275 mA D 26.6 mA nc. 1.38 E 9.975 mA

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Answer this question
Determine I of the parallel diode configuration of Fig. 2.28 given that E = 14
V and R = 400 2.
%3D
Select the correct answer
A 99.75 mA
B 33.25 mA
C 23.275 mA
D 26.6 mA
E 9.975 mA
Transcribed Image Text:Answer this question Determine I of the parallel diode configuration of Fig. 2.28 given that E = 14 V and R = 400 2. %3D Select the correct answer A 99.75 mA B 33.25 mA C 23.275 mA D 26.6 mA E 9.975 mA
Answer this question
The network Fig. 2.42 is an AND gate for positive logic. That is, the E-V level
of Fig. 2.42 is assigned a "1" for Boolean algebra and the 0-V input is assigned
a "0." An AND gate is such that the output voltage level will be a l if both
inputs is a 1. The output is a 0 if any input is at the 0 level. Determine the
current I through R given that E = 10 V. E = 0 V. E2 = 10 V and R = 3.7
k2.
Si
Select the correct answer
A 2,5135 mA
E10 Ve
B 3.7703 mA
C 12.568 mA
D 6.2838 mA
E 2.0108 mA
Transcribed Image Text:Answer this question The network Fig. 2.42 is an AND gate for positive logic. That is, the E-V level of Fig. 2.42 is assigned a "1" for Boolean algebra and the 0-V input is assigned a "0." An AND gate is such that the output voltage level will be a l if both inputs is a 1. The output is a 0 if any input is at the 0 level. Determine the current I through R given that E = 10 V. E = 0 V. E2 = 10 V and R = 3.7 k2. Si Select the correct answer A 2,5135 mA E10 Ve B 3.7703 mA C 12.568 mA D 6.2838 mA E 2.0108 mA
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