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ECE2131 - Electrical circuits - MUM S1 2026

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When comparing an NPN BJT and an n-channel MOSFET for use as an electronic switch, the NMOS is generally considered to be a better candidate. Which of the following provides the most correct reason for this preference?

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Which of the following statements provides the most complete and accurate description of the threshold voltage () for an n-channel MOSFET (NMOS)?

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Select the most appropriate mitigation technique to eliminate the edge oscillation in an op-amp based comparator circuit that is influenced by low-amplitude high-frequency sinusoidal noise.

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A student observed the output of an op-amp with a DSO, and detected that the measured output voltage (\text{V}_\text{pp} \) slightly exceeded the ideal rail-to-rail amplitude. The shape of the waveform was exactly as expected. Select the most likely physical reason for the measured peak voltage exceeding the rail voltages.

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Why is Circuit A labelled theoretical in Figure 6? Choose from the following:

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When comparing a series RLC circuit and a parallel RLC circuit (using the same R, L, and C values), which of the following statements most correctly identifies their similarities and differences in transient behaviour?

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From equation (1) what is the expression for the undamped resonant frequency () of the series RLC circuit shown in figure 10? Pick the correct one from the choices below.

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A student performs two experiments.

In the first experiment, they apply a square wave voltage signal to a simple series RC circuit. They then measure the voltage across the resistor () and the capacitor () on an oscilloscope and look at the measured waveforms.

In the second experiment, they apply a square wave voltage signal to a simple series RL circuit. They then measure the voltage across the resistor () and the inductor () on an oscilloscope and look at the measured waveforms.

In both experiments, they notice some “spiky” behaviour. Which of the following statements most accurately describes the spiky behaviour?

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For the circuit shown below, where R = 4.4 kΩ, and C = 7.8 μF, and the source is sinusoidal with an angular frequency (ω) of 1 k rad/s:

Calculate the value of the real part of the equivalent impedance of the circuit connected to the load, in SI units, to 1% accuracy.

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The following circuit is driven by a sinusoidal source. Given values of y = 58.4 and x = 45.7, find the angle of the AC steady state voltage at the output (vO), in degrees, to 0.5o accuracy.

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