Part A - Calculating the output voltage of a noninverting op-amp circuit For the circuit shown(Figure 1), determine Vo when R = 8.2 kn, R2 = 3.0 kfn R3 = 110 kn, V, - 90 mV, and Ver = 5.0 V. Express your answer in millivolts to three significant figures. > Vie Vo - mV Figure 1 of 2 > Part B- Design of a noninverting op-amp circuit For the circuit shown(Figure 2), determine Ri such that Vo- m x V. Assume m- 12, Ra - 7 kn, and Ra - 100 k and that the op-amp is in its linear region of operation. Express your answer in kiloohms to three significant figures.

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Part A - Calculating the output voltage of a noninverting op-amp circuit
For the circuit shown(Figure 1), determine Vo when R = 8.2 kn, R2 = 3.0 kfn R3 = 110 kn, V, - 90 mV, and Ver = 5.0 V
Express your answer in millivolts to three significant figures.
>Vir
Vo -
mV
Figure
1 of 2 >
Part B- Design of a noninverting op-amp circuit
For the circuit shown(Figure 2), determine Ri such that Vo- m x V. Assume m= 12, Ra - 7 kn, and Ra - 100 k and that the op-amp is in its linear
region of operation.
Express your answer in kiloohms to three significant figures.
R =
Transcribed Image Text:Part A - Calculating the output voltage of a noninverting op-amp circuit For the circuit shown(Figure 1), determine Vo when R = 8.2 kn, R2 = 3.0 kfn R3 = 110 kn, V, - 90 mV, and Ver = 5.0 V Express your answer in millivolts to three significant figures. >Vir Vo - mV Figure 1 of 2 > Part B- Design of a noninverting op-amp circuit For the circuit shown(Figure 2), determine Ri such that Vo- m x V. Assume m= 12, Ra - 7 kn, and Ra - 100 k and that the op-amp is in its linear region of operation. Express your answer in kiloohms to three significant figures. R =
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