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a) Calculate the Thevenin equivalent resistance seen by vo(t) for the non-inverting configuration shown in Figure 3.0. b) Calculate the Thevenin equivalent resistance seen

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a) Calculate the Thevenin equivalent resistance seen by vo(t) for the non-inverting configuration shown in Figure 3.0. b) Calculate the Thevenin equivalent resistance seen by vo(t) for the inverting configuration shown in Figure 4.0. c) How does the two equivalent resistances compare? R1=10k Vi(t) + 2 3 R2=100k + +15V 7 A741 4 -15V 6 v (t) Figure 3.0: Non-Inverting Configuration v;(t) + R1=10k 2 3 R2=100k + +15V 7 A741 4 -15V 6 + v (t) Figure 4.0: Inverting Configuration

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