Consider a series RL circuit with R = 18 N and L= 470 pH. Calculate the circuit's time constant. • Using your results from HLab3 in week 8 (page 20 as a reference; different R and L values were used...

12Consider a series RL circuit with R = 18 N and L=<br>470 pH.<br>Calculate the circuit's time constant.<br>• Using your results from HLab3 in week 8 (page 20 as a reference; different R and L values<br>were used in HLab3), sketch the waveforms of the voltage across the resistor and inductor<br>when a 3.83 kHz square wave with an amplitude t1 V (equivalently 2Vpp) is applied to the<br>input of the series RL circuit.<br>Use the graph paper provided on the following page. Clearly label the axes.<br>I ont<br>R= 18 2, L= 470 pH<br>

Extracted text: Consider a series RL circuit with R = 18 N and L= 470 pH. Calculate the circuit's time constant. • Using your results from HLab3 in week 8 (page 20 as a reference; different R and L values were used in HLab3), sketch the waveforms of the voltage across the resistor and inductor when a 3.83 kHz square wave with an amplitude t1 V (equivalently 2Vpp) is applied to the input of the series RL circuit. Use the graph paper provided on the following page. Clearly label the axes. I ont R= 18 2, L= 470 pH
Consider a series RC circuit with R = 2 k2 and C =1 µF.<br>%3D<br>Calculate the circuit's time constant.<br>• Using your results from HLab3 in week 8 (page 17; the exact same values for R and C were<br>used in HLab3), sketch the waveforms of the voltage across the capacitor and resistor when a<br>50 Hz square wave with an amplitude of 1 V (equivalently 2Vpp) is applied to the input of the<br>series RC circuit.<br>Use the graph paper provided on the following page. Clearly label the axes.<br>R=2 k2, C=1 pF<br>

Extracted text: Consider a series RC circuit with R = 2 k2 and C =1 µF. %3D Calculate the circuit's time constant. • Using your results from HLab3 in week 8 (page 17; the exact same values for R and C were used in HLab3), sketch the waveforms of the voltage across the capacitor and resistor when a 50 Hz square wave with an amplitude of 1 V (equivalently 2Vpp) is applied to the input of the series RC circuit. Use the graph paper provided on the following page. Clearly label the axes. R=2 k2, C=1 pF

Jun 11, 2022
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