V Show Current O Electrons O Conventional → 1000 Q 1000 Q Current Current 0.08 A 0.04 A Wire V Labels 12 V Values Battery 13 Voltmeten Ammeters 92.0 V Loop 1 Loop 2 Light Bulb Wire Resistivity 51.5 V Resistor 100 Q Battery Resistance Switch e. Record the values (I1, l2, I3, V1, V2 and V3 ) into the table below: Table 1 E1 = E2 = Experimental results Calculated results (use the loops) R (오) | (A) V (volt) R (2) I (A) V (volt) 1000 0.00 -3.00 1000 ЗА V 1000 0.00 3.00 V 1000 ЗА 100 0.00 6.00 V 100 6 A 0.12 A

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From the circuit shown and the experimental results, fill in the table with the calculated results.  

### Electrical Circuit Analysis

The image depicts an electrical circuit consisting of two loops with resistors, voltage sources, and current paths labeled. The circuit analysis focuses on measuring the currents \(I_1\), \(I_2\), and \(I_3\) and voltages \(V_1\), \(V_2\), and \(V_3\).

#### Circuit Description
- **Components**: 
  - Left loop contains a 1000 Ω resistor, a voltage source of 92.0 V, and a measurement of 0.08 A current labeled \(I_1\).
  - Right loop contains two 1000 Ω resistors and one 100 Ω resistor, a voltage source of 51.5 V, and a measurement of 0.04 A current labeled \(I_2\).
- **Loops**:
  - **Loop 1**: Includes a 1000 Ω resistor and a voltmeter reading of 92.0 V.
  - **Loop 2**: Includes two 1000 Ω resistors and a 100 Ω resistor, with a voltmeter reading of 51.5 V.

#### Task
- Record the values of currents (\(I_1\), \(I_2\), \(I_3\)) and voltages (\(V_1\), \(V_2\), \(V_3\)) in the table provided.

### Table 1: Data Recording and Analysis
The table is divided into two sections: 
- **Experimental Results**: Lists resistance (R), current (I), and voltage (V).
- **Calculated Results**: Using the loops to determine theoretical values.

**Table Structure**:
- Resistance (R) is measured in Ohms (Ω).
- Current (I) is measured in Amperes (A).
- Voltage (V) is measured in Volts (V).

#### Data Entry
- **Experimental Results**:
  - For a 1000 Ω resistor, the current is 0.03 A with a voltage of -3.00 V.
  - For a 1000 Ω resistor, the current is 0.03 A with a voltage of 3.00 V.
  - For a 100 Ω resistor, the current is 0.06 A with a voltage of 6.00 V.

Use this setup to conduct experiments, obtain data, and verify the accuracy of theoretical
Transcribed Image Text:### Electrical Circuit Analysis The image depicts an electrical circuit consisting of two loops with resistors, voltage sources, and current paths labeled. The circuit analysis focuses on measuring the currents \(I_1\), \(I_2\), and \(I_3\) and voltages \(V_1\), \(V_2\), and \(V_3\). #### Circuit Description - **Components**: - Left loop contains a 1000 Ω resistor, a voltage source of 92.0 V, and a measurement of 0.08 A current labeled \(I_1\). - Right loop contains two 1000 Ω resistors and one 100 Ω resistor, a voltage source of 51.5 V, and a measurement of 0.04 A current labeled \(I_2\). - **Loops**: - **Loop 1**: Includes a 1000 Ω resistor and a voltmeter reading of 92.0 V. - **Loop 2**: Includes two 1000 Ω resistors and a 100 Ω resistor, with a voltmeter reading of 51.5 V. #### Task - Record the values of currents (\(I_1\), \(I_2\), \(I_3\)) and voltages (\(V_1\), \(V_2\), \(V_3\)) in the table provided. ### Table 1: Data Recording and Analysis The table is divided into two sections: - **Experimental Results**: Lists resistance (R), current (I), and voltage (V). - **Calculated Results**: Using the loops to determine theoretical values. **Table Structure**: - Resistance (R) is measured in Ohms (Ω). - Current (I) is measured in Amperes (A). - Voltage (V) is measured in Volts (V). #### Data Entry - **Experimental Results**: - For a 1000 Ω resistor, the current is 0.03 A with a voltage of -3.00 V. - For a 1000 Ω resistor, the current is 0.03 A with a voltage of 3.00 V. - For a 100 Ω resistor, the current is 0.06 A with a voltage of 6.00 V. Use this setup to conduct experiments, obtain data, and verify the accuracy of theoretical
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