Take emf force of power supply is V=12V and R1=R2= 7 Ω, R3=R4=R5= 70 Ω and R6=70/5 Ω? a. Find equivalent resistance?  b. Find the voltage difference of R5 resistor?  c. Find the current through R6 resistor?

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4. Take emf force of power supply is V=12V and R1=R2= 7 Ω, R3=R4=R5= 70 Ω and R6=70/5 Ω?
a. Find equivalent resistance? 
b. Find the voltage difference of R5 resistor? 
c. Find the current through R6 resistor? 

The image is a schematic diagram of an electrical circuit containing resistors arranged in a combination of series and parallel connections. The diagram includes the following components:

1. **Resistors**:
   - \( R_1 \): Connected between points A and the junction leading to \( R_2 \) and \( R_3 \).
   - \( R_2 \): Connected between the junction and point B.
   - \( R_3 \): Connected between the junctions of \( R_2 \) and \( R_5 \).
   - \( R_4 \): Connected between points B and C.
   - \( R_5 \): Connected between the junction of \( R_1 \) and the junction of \( R_3 \) and \( R_6 \).
   - \( R_6 \): Connected between point C and ground.

2. **Voltage Source**:
   - \( V \): A voltage source is connected between points A and C.

**Description of Connections**:

- Resistor \( R_1 \) is connected in series with the rest of the circuit starting at point A.
- Resistors \( R_2 \) and \( R_3 \) are connected in parallel with each other.
- Resistor \( R_4 \) is connected in series after point B.
- Resistors \( R_5 \) and \( R_6 \) form another branch where \( R_5 \) connects after junction A and leads to point C.

This circuit demonstrates the combination of series and parallel resistor networks, often analyzed to find equivalent resistance, current distribution, and voltage drops across each component in electrical engineering studies.
Transcribed Image Text:The image is a schematic diagram of an electrical circuit containing resistors arranged in a combination of series and parallel connections. The diagram includes the following components: 1. **Resistors**: - \( R_1 \): Connected between points A and the junction leading to \( R_2 \) and \( R_3 \). - \( R_2 \): Connected between the junction and point B. - \( R_3 \): Connected between the junctions of \( R_2 \) and \( R_5 \). - \( R_4 \): Connected between points B and C. - \( R_5 \): Connected between the junction of \( R_1 \) and the junction of \( R_3 \) and \( R_6 \). - \( R_6 \): Connected between point C and ground. 2. **Voltage Source**: - \( V \): A voltage source is connected between points A and C. **Description of Connections**: - Resistor \( R_1 \) is connected in series with the rest of the circuit starting at point A. - Resistors \( R_2 \) and \( R_3 \) are connected in parallel with each other. - Resistor \( R_4 \) is connected in series after point B. - Resistors \( R_5 \) and \( R_6 \) form another branch where \( R_5 \) connects after junction A and leads to point C. This circuit demonstrates the combination of series and parallel resistor networks, often analyzed to find equivalent resistance, current distribution, and voltage drops across each component in electrical engineering studies.
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