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For the ˚uit above, use an ideal op-amp model and find iO/VS. Then simulate the above ˚uit using the op-amp non-ideal model and find iO/VS. Repeat when RId a) Refer to the provided ˚uit diagram for calculations b) Identify the op-amp configuration used c) Apply the ideal op-amp characteristics d) Simulate the ˚uit using non-ideal op-amp characteristics

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Final answer:

The student's question pertains to analyzing and comparing the current output to voltage input ratio (iO/VS) of an operational amplifier circuit under ideal and non-ideal conditions, as well as simulating with non-ideal op-amp characteristics to observe real-world effects.

Step-by-step explanation:

The question requires analyzing the current output to voltage input relationship (iO/VS) in an op-amp circuit. First, one must identify the op-amp configuration, then apply the ideal op-amp characteristics to get a theoretical value of iO/VS, and subsequently repeat the process using a non-ideal op-amp model to see the effects of real-world limitations.

Simulations might be carried out using software like SPICE or MATLAB to see the impact of non-ideal characteristics such as finite gain, input bias currents, and slew rate limitations.

In the absence of the specific circuit diagram mentioned in the query, one cannot give a precise calculation or simulation result. However, the typical approach would be:

Identify the configuration used (e.g., inverting, non-inverting, differential).Apply ideal op-amp assumptions, such as infinite input impedance, zero output impedance, and infinite gain, to find a theoretical iO/VS.

Simulate with a non-ideal op-amp model taking into account parameters like input offset voltage, finite bandwidth, and non-zero output impedance, which will adjust the iO/VS value obtained in step 2.

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