R1 R3 R5 1.0ka 4.7kO 1.0ka LE1 12 V R2 2.0ka R4 §3.3ka E2 8V 3. Carry out a theoretical analvsis of this circuit using the Supernosition Theorem in order to determine the xoltage across resistor R2 and the current flowing through R4. Record your results in the table below. Table N°2 Theoric value calculated parameter ER2(V) El contribution E2 contribution total value IR«(MA)

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3. Carry out a theoretical analysis of this circuit using the Superposition Theorem in order to determine the voltage
across resistor R2 and the current flowing through R4. Record your results in the table below.

R1
R3
R5
1.0ka
4.7ka
1.0ka
E1
12 V
R2
{2.0ka
R4
3.3ka
E8 V
3. Carry out a theoretical analvsis of this circuit using the Superposition Theorem in order to determine the
voltage across resistor R2 and the current flowing through R4. Record vour results in the table below.
Table N°2
Theoric value
calculated
parameter
ER2(V)
E1 contribution
E2 contribution
total value
IR4(MA)
Transcribed Image Text:R1 R3 R5 1.0ka 4.7ka 1.0ka E1 12 V R2 {2.0ka R4 3.3ka E8 V 3. Carry out a theoretical analvsis of this circuit using the Superposition Theorem in order to determine the voltage across resistor R2 and the current flowing through R4. Record vour results in the table below. Table N°2 Theoric value calculated parameter ER2(V) E1 contribution E2 contribution total value IR4(MA)
Expert Solution
Step 1

Considering only 12 V source and deactivating the 8 V source. The circuit is drawn as:

Electrical Engineering homework question answer, step 1, image 1

Further simplification of the circuit yields:

Electrical Engineering homework question answer, step 1, image 2

Electrical Engineering homework question answer, step 1, image 3

Electrical Engineering homework question answer, step 1, image 4

 

 

 

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