The circuit below consists of a resistor (with resistance R), an Inductor (of inductance L) and...
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The circuit below consists of a resistor (with resistance R), an Inductor (of inductance L) and a capacitor (of capacitance C that has an initial voltage of V(0)) that are connected in series with a voltage source (given by Vo sinut). Given that the output of this RLC circuit is taking across the resistor, which of the following best reflects the output voltage? Select as many options as you deem correct. Note: Selecting an incorrect option may incur a penalty of -10% to -20% of the marks for this question, so be careful with the options you select. Vi a. b. d. e. f. g. h. Vo sin wt - 1-1/√f fict Vo sin wt - Vo sin wt Vo sin wt + -fi(t)at-v iRi(t) _ j Li(t) Vo sin wt - i(t)dt - V(0) - L -fi(1) dt - 1 i(t)dt - V(0) + L R -Effic VR i(t)dt - V(0) - L i(t)dt - ² fi(t) at + i(t)dt +V(0) - L Vo sin wt Ci(t)- ¼ fi i(t)dt + V (0) Effi(1)dt -Effic i(t)dt + V (0) - C L roo di dt di di dt dt di dt di dt i(t)dt + V (0) VL C HH VC The circuit below consists of a resistor (with resistance R), an Inductor (of inductance L) and a capacitor (of capacitance C that has an initial voltage of V(0)) that are connected in series with a voltage source (given by Vo sinut). Given that the output of this RLC circuit is taking across the resistor, which of the following best reflects the output voltage? Select as many options as you deem correct. Note: Selecting an incorrect option may incur a penalty of -10% to -20% of the marks for this question, so be careful with the options you select. Vi a. b. d. e. f. g. h. Vo sin wt - 1-1/√f fict Vo sin wt - Vo sin wt Vo sin wt + -fi(t)at-v iRi(t) _ j Li(t) Vo sin wt - i(t)dt - V(0) - L -fi(1) dt - 1 i(t)dt - V(0) + L R -Effic VR i(t)dt - V(0) - L i(t)dt - ² fi(t) at + i(t)dt +V(0) - L Vo sin wt Ci(t)- ¼ fi i(t)dt + V (0) Effi(1)dt -Effic i(t)dt + V (0) - C L roo di dt di di dt dt di dt di dt i(t)dt + V (0) VL C HH VC
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Fundamentals of Ethics for Scientists and Engineers
ISBN: 978-0195134889
1st Edition
Authors: Edmund G. Seebauer, Robert L. Barry
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