PART II-CIRCUIT DESIGN Using Falstad, please complete the following circuits and include screenshots that visually demonstrate their full functionality. 1. Construct a summing amplifier circuit that has a maximized output voltage with the following design parameters: a. There are three AC inputs, each having a maximum value of 3V. b. There is a total of 10 resistors, each having a value of 100 Q. c. All three inputs and all ten resistors have to be included in the circuit with the op amp. 2. Now...with the same parameters for #2, create a summing amplifier that has a lower output voltage.

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PART II-CIRCUIT DESIGN
Using Falstad, please complete the following circuits and include screenshots that visually
demonstrate their full functionality.
1. Construct a summing amplifier circuit that has a maximized output voltage with the
following design parameters:
a. There are three AC inputs, each having a maximum value of 3V.
b. There is a total of 10 resistors, each having a value of 100 Q.
c. All three inputs and all ten resistors have to be included in the circuit with the op
amp.
2. Now...with the same parameters for #2, create a summing amplifier that has a lower
output voltage.
Transcribed Image Text:PART II-CIRCUIT DESIGN Using Falstad, please complete the following circuits and include screenshots that visually demonstrate their full functionality. 1. Construct a summing amplifier circuit that has a maximized output voltage with the following design parameters: a. There are three AC inputs, each having a maximum value of 3V. b. There is a total of 10 resistors, each having a value of 100 Q. c. All three inputs and all ten resistors have to be included in the circuit with the op amp. 2. Now...with the same parameters for #2, create a summing amplifier that has a lower output voltage.
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