The MOSFET circuit shown below uses a MOSFET with the indicated characteristics. For each of the cases listed, solve MOSFET's device current and drain voltage, and indicate whether the device is operating in saturation or triode. [Hint: To perform this analysis, first assume the device is in saturation, and solve accordingly. Then check for consistency. If the result is inconsistent, then repeat the analysis using the triode equation.] (A) R = 100 Ω (B) R = 1 kΩ (C) R = 10 kΩ

The MOSFET circuit shown below uses a MOSFET with the indicated characteristics. For each of the cases listed, solve MOSFET's device current and drain voltage, and indicate whether the device is operating in saturation or triode. [Hint: To perform this analysis, first assume the device is in saturation, and solve accordingly. Then check for consistency. If the result is inconsistent, then repeat the analysis using the triode equation.] (A) R = 100 Ω (B) R = 1 kΩ (C) R = 10 kΩ

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The MOSFET circuit shown below uses a MOSFET with the indicated characteristics. For each of the cases listed, solve MOSFET's device current and drain voltage, and indicate whether the device is operating in saturation or triode. [Hint: To perform this analysis, first assume the device is in saturation, and solve accordingly. Then check for consistency. If the result is inconsistent, then repeat the analysis using the triode equation.] (A) R = 100 Ω (B) R = 1 k Ω (C) R = 10 k Ω

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