5.60 The op amp in the adder-subtractor circuit shown in Fig. P5.30 is ideal. PSPICE MULTISIM a) Find the output voltage v. given v₁ = 2 V, v₁ = 3 V, Vc 5 V, and va = 6 V. a b) For the values given in (a), find v. if the feedback resistor is replaced with a 100 k Figure P5.30 resistor. 25 ΚΩ 200 ΚΩ . a 20 ΚΩ 20 V Ub + -20 V 40 ΚΩ υ 350 ΚΩ 25 ΚΩ Ud 25 ΚΩ

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5.60 The op amp in the adder-subtractor circuit shown in
Fig. P5.30 is ideal.
PSPICE
MULTISIM
a) Find the output voltage v. given v₁ = 2 V, v₁ = 3 V,
Vc
5 V, and va
=
6 V.
a
b) For the values given in (a), find v. if the feedback
resistor is replaced with a 100 k
Figure P5.30
resistor.
25 ΚΩ
200 ΚΩ
.
a
20 ΚΩ
20 V
Ub
+
-20 V
40 ΚΩ
υ 350 ΚΩ
25 ΚΩ
Ud
25 ΚΩ
Transcribed Image Text:5.60 The op amp in the adder-subtractor circuit shown in Fig. P5.30 is ideal. PSPICE MULTISIM a) Find the output voltage v. given v₁ = 2 V, v₁ = 3 V, Vc 5 V, and va = 6 V. a b) For the values given in (a), find v. if the feedback resistor is replaced with a 100 k Figure P5.30 resistor. 25 ΚΩ 200 ΚΩ . a 20 ΚΩ 20 V Ub + -20 V 40 ΚΩ υ 350 ΚΩ 25 ΚΩ Ud 25 ΚΩ
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