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Using the Falstad online circuit simulatorLinks to an external site. http://falstad.com/circuit/circuitjs.html Create a voltage divider circuit per the following instructions: (This is circuit I created

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Using the Falstad online circuit simulatorLinks to an external site. http://falstad.com/circuit/circuitjs.html

Create a voltage divider circuit per the following instructions:

(This is circuit I created in Module 2)

image text in transcribedimage text in transcribedimage text in transcribed
10 VDC To begin, create a voltage divider with an output voltage of 10 VDC. I chose the value of resistor 10k ohms (R1) for simplicity. As per calculations, V10=Vsource(R1+R2R1) 10V-50V(10+R210) R2=40kQ Circuit diagram with 10V DC output. 10k 240k resistor 1 =1 mA Vd = 10 V R = 10 kQ P = 10 mW25 DCV I chose the value of 20kohms (R1) for the 25VDC output. As per calculations, V25=Vsource(RI+R2Ri) 25V=50V(20+R220) R2=20kQ Circuit diagram for 25V DC output. 20k 20k resistor = 1.25 mA Vd = 25 V R = 20 KO P = 31.25 mW50 VDC I choose the value of 30kohms (R1) for the 50V DC output. As per calculations, Vso=Vsource(RI+R2Ri) 50V=50V(30+R230) R2 = 0 Since an open circuit (infinite resistance) will result in the full input voltage, so I think we can leave R2 open or disconnected from the ground. I don't know it is correct or not so I take two screenshots Circuit diagram for the 50V DC output. 30k resistor 1 = 1.667 mA Vd = 50 V R = 30 KIT P = 83.333 mW

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