3. Consider the pnp circuit shown below. R₂ 2.4ΚΩ R₁ 9.1kΩ RE 0.91kΩ VCE + -12V Rc 2ΚΩ B = 125 a) Find 1₁, 12, 13, and VCE using the exact (Thevenin) analysis. b) Find I1, I2, I3, and Vce using using the approximate voltage divider analysis. What are the resulting percentage errors in these four quantities when using the approximate analysis?

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3. Consider the pnp circuit shown below.
R₂
2.4ΚΩ
R₁
9.1kΩ
M
RE
0.91ΚΩ
VCE
+
-12V
Rc
2ΚΩ
B = 125
a) Find 1₁, 12, 13, and VCE using the exact (Thevenin) analysis.
b) Find 11, 12, 13, and VCE using using the approximate voltage divider analysis.
What are the resulting percentage errors in these four quantities when using
the approximate analysis?
Transcribed Image Text:3. Consider the pnp circuit shown below. R₂ 2.4ΚΩ R₁ 9.1kΩ M RE 0.91ΚΩ VCE + -12V Rc 2ΚΩ B = 125 a) Find 1₁, 12, 13, and VCE using the exact (Thevenin) analysis. b) Find 11, 12, 13, and VCE using using the approximate voltage divider analysis. What are the resulting percentage errors in these four quantities when using the approximate analysis?
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