Given the following series circuit + 30 V- 2002 R1 R3 40 Ω R2 30 Ω Calculate the current I of the circuit, and the voltage on the Resistor of 30 = VR2

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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**Series Circuit Analysis**

In the given series circuit, there are three resistors connected:

- **R1**: 20 Ω
- **R2**: 30 Ω
- **R3**: 40 Ω

The circuit is powered by a voltage source of **30 V**.

**Objective:**

1. **Calculate the current (I) of the circuit.**
2. **Determine the voltage across the resistor R2 (30 Ω), denoted as VR2.**

**Explanation of Circuit:**

The diagram represents a series circuit with a voltage source and three resistors. The total resistance in the circuit is the sum of the individual resistances, since it is a series circuit. Once the total resistance is known, Ohm's Law can be applied to find the current and voltages across each resistor.
Transcribed Image Text:**Series Circuit Analysis** In the given series circuit, there are three resistors connected: - **R1**: 20 Ω - **R2**: 30 Ω - **R3**: 40 Ω The circuit is powered by a voltage source of **30 V**. **Objective:** 1. **Calculate the current (I) of the circuit.** 2. **Determine the voltage across the resistor R2 (30 Ω), denoted as VR2.** **Explanation of Circuit:** The diagram represents a series circuit with a voltage source and three resistors. The total resistance in the circuit is the sum of the individual resistances, since it is a series circuit. Once the total resistance is known, Ohm's Law can be applied to find the current and voltages across each resistor.
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