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Hello everyone.
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Let us do the following question.
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Here we have to determine the following foliar coefficient by using pi space.
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Here we have to determine foliar coefficient by using pi space.
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Now we will solve this question.
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We will draw the systematic shown below.
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Here we will go the systematic shown below.
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Here we will say that the waveform here we will say that the waveform is in the waveform is inputed using the waveform is inputed using the attributes of using the attributes of b pulse using the attributes of b pulse in the transist dialog box in the tranches dialogue box in the tranjist dialogue box we enter print step we enter 0 .05 final time 12 final time 12 center frequency center frequency 0 .5 output bars, output bars v into 1 and click enable for here and click enable for year after simulation after simulation we will draw the output float after after simulation, we will draw the output plot.
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Here it will draw the output plot after simulation.
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This is output plot after simulation.
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Here we will say that dc component.
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Here we will say dc component is written as 5 .5 .99510e plus 0 .0 .0.
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0 plus 0.
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Here we will write frequency.
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Fourier, here we will draw 5 boxes for this.
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Here we will draw 5 boxes.
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We will write this.
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Then we will draw the graph for this.
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Here firstly we will write frequency.
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Firstly, we will write frequency.
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Then we will write fourier component.
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Then we will write fourier component.
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Then normalized component then normalized component then normalized component then we will write faith then we will write normalized phase then we will write normalized phase here we will write frequency 5 .000 e minus 01 next we will write 1 .000 e plus 0 .00.
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Next, 1 .50e plus 00.
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Next, we will write for 2 .000e plus 0 .0.
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Next, we have 2 .500e plus 0 .0.
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Next, we have 3 .00e plus 0.
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Next, we have 3 .500e plus 0.
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Next, next we will write values for fourier coefficient component, we have 3 .184e plus 00.
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1 .593e plus 0 .00...