1. Complete the table of values for this circuit: 180 Q 250 2 R3 R2 7 V 100 Ω R, R, R, Total V I R

Introductory Circuit Analysis (13th Edition)
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### Circuit Analysis Exercise

#### Instruction:
1. Complete the table of values for this circuit:

#### Circuit Diagram:
The circuit consists of a voltage source of 7 volts and three resistors arranged in a combination of series and parallel. The values of the resistors are:
- \(R_1 = 180 \, \Omega\)
- \(R_2 = 100 \, \Omega\)
- \(R_3 = 250 \, \Omega\)

#### Resistor Configuration:
- \(R_1\) and \(R_2\) are in parallel.
- \(R_3\) is in series with the combination of \(R_1\) and \(R_2\).

#### Table of Values:
You need to complete the table with the following parameters for each resistor and the total circuit:

- **Voltage (V)**
- **Current (I)**
- **Resistance (R)**
- **Power (P)**

|   | \(R_1\) | \(R_2\) | \(R_3\) | Total |
|---|---|---|---|---|
| **V** |   |   |   |   |
| **I** |   |   |   |   |
| **R** |   |   |   |   |
| **P** |   |   |   |   |

Use the appropriate formulas for series and parallel circuits, Ohm's Law (\(V = IR\)), and the power formula (\(P = IV\)) to calculate and fill in the table.
Transcribed Image Text:### Circuit Analysis Exercise #### Instruction: 1. Complete the table of values for this circuit: #### Circuit Diagram: The circuit consists of a voltage source of 7 volts and three resistors arranged in a combination of series and parallel. The values of the resistors are: - \(R_1 = 180 \, \Omega\) - \(R_2 = 100 \, \Omega\) - \(R_3 = 250 \, \Omega\) #### Resistor Configuration: - \(R_1\) and \(R_2\) are in parallel. - \(R_3\) is in series with the combination of \(R_1\) and \(R_2\). #### Table of Values: You need to complete the table with the following parameters for each resistor and the total circuit: - **Voltage (V)** - **Current (I)** - **Resistance (R)** - **Power (P)** | | \(R_1\) | \(R_2\) | \(R_3\) | Total | |---|---|---|---|---| | **V** | | | | | | **I** | | | | | | **R** | | | | | | **P** | | | | | Use the appropriate formulas for series and parallel circuits, Ohm's Law (\(V = IR\)), and the power formula (\(P = IV\)) to calculate and fill in the table.
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