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Showing posts from November, 2017

Parralel RLC Circuit Response

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Here are the values for the circuit elements. R1=48.1,R2=0.971K, L=1 mH, C =9 mF Here's a picture of the modified circuit and equation, I just put the resistor and inductor in series. Here's a picture of the graph

Capacitor Voltage-current Relations

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Here is our image when f=1kHz and A=2V Here is our image when F=2kHz and A=2v As the frequency is increased the voltage of the circuit changed signal faster.

Inductor Voltage-Current Relations

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For this lab we had a resistor and an inductor in series. We had to measure voltages for both elements and use this information to calculate the current running through inductor. The way we could see if our data was accurate was to use Ohm's law through the resistor. Since both elements are in series the would have the same current. For this lab we had a 1mH inductor a 17.6 ohm resistor. Here's a picture of our circuit Here's our graph window for a sinusoidal input voltage with frequency = 1kHz, amplitude = 2V, and offset = 0V Here's our graph window for a  sinusoidal input voltage with frequency = 2 kHz, amplitude = 2V, and offset = 0V Here's the inductor current we got from the wavegen generator and the one calculated from the pre-lab. Our values are pretty off, and I'm not exactly sure why, I'm assuming our math equation was wrong. Here's the graph When we had a frequency of 2khz we basically got the same graph, I'm assuming ...