For the op-amp circuit shown, find the value of the output voltage Vout for each value of the input voltage Vin. Provide your values in the given table

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For the op-amp circuit shown, find the value of the output voltage Vout for each value of the input voltage Vin. Provide your values in the given table

### Operational Amplifier Circuit Analysis

The image depicts a schematic diagram of an operational amplifier (op-amp) circuit and a table for recording input and output voltage data. The circuit consists of two ideal operational amplifiers, resistors, and power supplies, and is designed to demonstrate the behavior of the circuit for different input voltages.

#### Circuit Description:
1. **Input Voltage (\( V_{in} \))**: The circuit accepts an input voltage \( V_{in} \) at the leftmost node.
2. **First Operational Amplifier**:
    - **Power Supply**: It is powered by a dual supply voltage of \(\pm 22 \text{V}\).
    - **Configuration**: The inverting input is connected to the input voltage through a 1 kΩ resistor, and to the output via an 11 kΩ feedback resistor. The non-inverting input is grounded.
    - **Function**: This op-amp acts as an inverting amplifier, producing an output voltage that is a scaled, inverted version of the input voltage.
3. **Resistive Network**: The output of the first op-amp is connected to the input of the second op-amp through a 1 kΩ resistor.
4. **Second Operational Amplifier**:
    - **Power Supply**: It is also powered by \(\pm 22 \text{V}\).
    - **Configuration**: The inverting input is connected to the prior stage through a 1 kΩ resistor, and to the output via an 11 kΩ feedback resistor. The non-inverting input is grounded.
    - **Function**: This op-amp acts similarly as another inverting amplifier which further processes the signal from the first stage.
5. **Output Voltage (\( V_{out} \))**: The output of the second op-amp is the final output voltage of the circuit.

#### Table of \( V_{in} \) vs \( V_{out} \):
| \( V_{in} \) | \( V_{out} \) |
|--------------|---------------|
| 0.1 V        |               |
| 0.15 V       |               |
| 0.2 V        |               |

This table is left incomplete and is intended for students to calculate or measure the different output voltages \( V_{out} \) corresponding to given input voltages \( V_{in} \).
Transcribed Image Text:### Operational Amplifier Circuit Analysis The image depicts a schematic diagram of an operational amplifier (op-amp) circuit and a table for recording input and output voltage data. The circuit consists of two ideal operational amplifiers, resistors, and power supplies, and is designed to demonstrate the behavior of the circuit for different input voltages. #### Circuit Description: 1. **Input Voltage (\( V_{in} \))**: The circuit accepts an input voltage \( V_{in} \) at the leftmost node. 2. **First Operational Amplifier**: - **Power Supply**: It is powered by a dual supply voltage of \(\pm 22 \text{V}\). - **Configuration**: The inverting input is connected to the input voltage through a 1 kΩ resistor, and to the output via an 11 kΩ feedback resistor. The non-inverting input is grounded. - **Function**: This op-amp acts as an inverting amplifier, producing an output voltage that is a scaled, inverted version of the input voltage. 3. **Resistive Network**: The output of the first op-amp is connected to the input of the second op-amp through a 1 kΩ resistor. 4. **Second Operational Amplifier**: - **Power Supply**: It is also powered by \(\pm 22 \text{V}\). - **Configuration**: The inverting input is connected to the prior stage through a 1 kΩ resistor, and to the output via an 11 kΩ feedback resistor. The non-inverting input is grounded. - **Function**: This op-amp acts similarly as another inverting amplifier which further processes the signal from the first stage. 5. **Output Voltage (\( V_{out} \))**: The output of the second op-amp is the final output voltage of the circuit. #### Table of \( V_{in} \) vs \( V_{out} \): | \( V_{in} \) | \( V_{out} \) | |--------------|---------------| | 0.1 V | | | 0.15 V | | | 0.2 V | | This table is left incomplete and is intended for students to calculate or measure the different output voltages \( V_{out} \) corresponding to given input voltages \( V_{in} \).
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