4. Design the circuit for Fig 2. Use Vin


4. Design the circuit for Fig 2. Use Vin < 5Vpp (remember to change the Vpp voltage to Vrms<br>for your calculations)<br>IL= 1.28 L-0.654° mA<br>VL= 1.28 L-0.295° Vrms<br>L1<br>R1<br>+<br>Vin=Vrms<br>IL<br>1000 Hz<br>VL<br>R2<br>0°<br>Source<br>Line<br>Load<br>Figure 2<br>a) What is the value of L1, R1, L2, R2, Vin (Vrms, Vpp, Vp)?<br>b) Draw the circuit in terms of the impedances<br>c) Calculate the average and reactive power absorbing for the load.<br>d) Calculate the average and reactive power delivery for the line<br>e) Calculate the average and reactive power delivery for the source<br>Note: Use polar notation on your calculations. Set the resistors and Inductors<br>values according to your components. Use circuits analysis methods to do the<br>calculations (Ohm law, KVL, KCL, node methods, etc).<br>

Extracted text: 4. Design the circuit for Fig 2. Use Vin < 5vpp="" (remember="" to="" change="" the="" vpp="" voltage="" to="" vrms="" for="" your="" calculations)="" il="1.28" l-0.654°="" ma="" vl="1.28" l-0.295°="" vrms="" l1="" r1="" +="" vin="Vrms" il="" 1000="" hz="" vl="" r2="" 0°="" source="" line="" load="" figure="" 2="" a)="" what="" is="" the="" value="" of="" l1,="" r1,="" l2,="" r2,="" vin="" (vrms,="" vpp,="" vp)?="" b)="" draw="" the="" circuit="" in="" terms="" of="" the="" impedances="" c)="" calculate="" the="" average="" and="" reactive="" power="" absorbing="" for="" the="" load.="" d)="" calculate="" the="" average="" and="" reactive="" power="" delivery="" for="" the="" line="" e)="" calculate="" the="" average="" and="" reactive="" power="" delivery="" for="" the="" source="" note:="" use="" polar="" notation="" on="" your="" calculations.="" set="" the="" resistors="" and="" inductors="" values="" according="" to="" your="" components.="" use="" circuits="" analysis="" methods="" to="" do="" the="" calculations="" (ohm="" law,="" kvl,="" kcl,="" node="" methods,="">

Jun 11, 2022
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