Circuit Analysis using Laplace Transform

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In this video I have solved a circuit containing capacitor and inductor considering their initial conditions and using Laplace transform applications.
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This video helped me to understand one of the excercises of my circuit analysis lecturer, who is unable to teach, I just need to watch more videos like this

chrishadjipetris
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Why the voltage source go for the t>0, it should be capacitor with resistor only

kyf
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Thank you so much! This made everything clearer for me

Cat-ircy
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Terrific video. I'm still getting stuck when trying to see if I could use Mesh or Nodal Analysis for some problems. I read we can use any method but when using Mesh I get lost at times.

yehah
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You are an excellent teacher thank you so much you did your best ❤ 💗 💕

zuhairalsaffar
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thanks nice explanation simple and effective

mustafaensaryay
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That was very helpful thank you very much🙏🏻

zeinabalam
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Could you explain more why you write in the voltage source for t>0?

justinstark
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Hi, Your Video was Excellent, very detailed very Helpful, Thank you very much

fetch
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The circuit only contains the capacitor and resistor when the switch is closed... why is the voltage source in the circuit when you transfer to the complex frequency domain?

Borz
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Q1 For a RC network, switch 'K is closed at instant t= 0. Vo = 6V, R =102 and C = 0.05 farad. Solve for the current i(t) after the switch is closed using Laplace transformation method. Assume that there is no charge on the capacitor before switching

shashankskeditz
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this videos is so helpfull can you please post more videos like this eg RL circuit and RLC circuits. thank you very much

bonganintombela
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when the switch closes is the capacitor not in parallel with the source ?

amardeepsingh
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I'd like to know what the frequency domain is?

Abssi
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Your labeling is poor, but the explanation is excellent.

TheArch
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when the switch is flipped, the Voltage source should be disconnected from the capacitor in t>0 schematic

waytoolegit
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So this is how the capacitor charge/discharge equations are derived. Good to know. What is u(t) in the answer?

ubu-ibme
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Why wouldn’t you multiply by 10/s (Impedance of the capacitor)? Why do you multiply by 1/C?

ILikeFeelingElectric
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I get when you write voltage source with capacitor in Laplace form at 0+ for Laplace transform but there are some questions they simply removed inductor and capacitor with their sources only in laplace formula which we calculated at 0- .. what's the difference??Thank you

ruchikasharma
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How could we find the initial value for any question ? where can I learn this thing
Thank you

mahmoudbaaqeil