Consider the circuit shown in figure, where V BE =710 mV, ß= 100, and VA = 0o. Calculate the Vc of Q₁. Assume that the emitter current is equal to collector current. For the circuit in the figure, consider that V BE = 710 mV, B = 100 and VA= Calculate the voltage vc for Q1. Assume that the emitter current is equal to the collector current. Circuit parameters R = 20 kn, RC = 3002, RE = 500 2, Vcc=3V RB W "M Vcc ka₁ O a. 3.114V O b. 2,864 V O c. 1,879 V O D. 2,547V O to. 2,313 V O f. 2,076 V O g. 2,752 V Oh. 3.002V Rc RE

Introductory Circuit Analysis (13th Edition)
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Consider the circuit shown in figure, where V BE =710 mV, ß= 100, and VA = 0o. Calculate the Vc of Q₁. Assume that the emitter current is equal to collector current.
For the circuit in the figure, consider that V BE = 710 mV, B = 100 and VA=
Calculate the voltage vc for Q1. Assume that the emitter current is equal to the collector current.
Circuit parameters
R = 20 kn, RC = 3002, RE = 500 2, V cc = 3 V
RB
W
ka₁
"M
O a. 3.114V
O b. 2,864 V
O c. 1,879 V
O D. 2,547V
O to. 2,313 V
O f. 2,076 V
O g. 2,752 V
Oh. 3.002V
Vcc
Rc
RE
Transcribed Image Text:Consider the circuit shown in figure, where V BE =710 mV, ß= 100, and VA = 0o. Calculate the Vc of Q₁. Assume that the emitter current is equal to collector current. For the circuit in the figure, consider that V BE = 710 mV, B = 100 and VA= Calculate the voltage vc for Q1. Assume that the emitter current is equal to the collector current. Circuit parameters R = 20 kn, RC = 3002, RE = 500 2, V cc = 3 V RB W ka₁ "M O a. 3.114V O b. 2,864 V O c. 1,879 V O D. 2,547V O to. 2,313 V O f. 2,076 V O g. 2,752 V Oh. 3.002V Vcc Rc RE
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