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The Circuit Shown Below, Let Use Nodal Analysis to Find V1\mathrm { V } _ { 1 }

Question 12

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the circuit shown below, let Is=1 mA, Vs=5 V,R1=1kΩ,R2=2.5kΩ,R3=5kΩ,R4=2kΩ\mathrm { I } _ { \mathrm { s } } = 1 \mathrm {~mA} , \mathrm {~V} _ { \mathrm { s } } = 5 \mathrm {~V} , \mathrm { R } _ { 1 } = 1 \mathrm { k } \Omega , \mathrm { R } _ { 2 } = 2.5 \mathrm { k } \Omega , \mathrm { R } _ { 3 } = 5 \mathrm { k } \Omega , \mathrm { R } _ { 4 } = 2 \mathrm { k } \Omega
Use nodal analysis to find V1\mathrm { V } _ { 1 } and V2\mathrm { V } _ { 2 } .
 the circuit shown below, let  \mathrm { I } _ { \mathrm { s } } = 1 \mathrm {~mA} , \mathrm {~V} _ { \mathrm { s } } = 5 \mathrm {~V} , \mathrm { R } _ { 1 } = 1 \mathrm { k } \Omega , \mathrm { R } _ { 2 } = 2.5 \mathrm { k } \Omega , \mathrm { R } _ { 3 } = 5 \mathrm { k } \Omega , \mathrm { R } _ { 4 } = 2 \mathrm { k } \Omega  Use nodal analysis to find  \mathrm { V } _ { 1 }  and  \mathrm { V } _ { 2 } .

Correct Answer:

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\[\begin{array} { l }
\frac { V _ { 1 }...

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