*16. For the transistor configuration of Fig. 8.108: a. Solve for the currents IB, IC, and I using the fact that VBE = 0.7 V and VCE = 8 V. b. Find the voltages VB, VC, and VE with respect to ground. c. What is the ratio of output current Ic to input current IB? [Note: In transistor analysis this ratio is referred to as the de beta of the transistor (Bac).]

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Kindly answer the Bipolar Junction transistor Circuit  letters a, b, and c

*16. For the transistor configuration of Fig. 8.108:
a. Solve for the currents IB, Ic, and I using the fact that
VBE = 0.7 V and VCE = 8 V.
b. Find the voltages VB, Vc, and VE with respect to
ground.
c. What is the ratio of output current Ic to input current
IB? [Note: In transistor analysis this ratio is referred to
as the dc beta of the transistor (Bdc).]
Vcc
RB
www
IB 270 ΚΩ
20 V
B
-C
+
0.7 V
RE
Ic
C
+
8 V
E
IE
510 Ω
FIG. 8.108
Problem 16.
Rc
www
2.2 ΚΩ
Vcc
+
+
20 V
Transcribed Image Text:*16. For the transistor configuration of Fig. 8.108: a. Solve for the currents IB, Ic, and I using the fact that VBE = 0.7 V and VCE = 8 V. b. Find the voltages VB, Vc, and VE with respect to ground. c. What is the ratio of output current Ic to input current IB? [Note: In transistor analysis this ratio is referred to as the dc beta of the transistor (Bdc).] Vcc RB www IB 270 ΚΩ 20 V B -C + 0.7 V RE Ic C + 8 V E IE 510 Ω FIG. 8.108 Problem 16. Rc www 2.2 ΚΩ Vcc + + 20 V
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