Determine the current flowing through resistor R₁, given: 4' E₁= 15 V, R₁ = 232, R₂ = 142, R₂ = 142, and R₂ = 140 14Ω 4 (Round the FINAL answer to two decimal places.) R₁ www Click on the image to view a larger version of it.
Determine the current flowing through resistor R₁, given: 4' E₁= 15 V, R₁ = 232, R₂ = 142, R₂ = 142, and R₂ = 140 14Ω 4 (Round the FINAL answer to two decimal places.) R₁ www Click on the image to view a larger version of it.
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Question
Current flowing through resistor R4?

Transcribed Image Text:### Problem Statement:
**Determine the current flowing through resistor \(R_4\), given:**
- \(E_T = 15 \, \text{V}\)
- \(R_1 = 23 \, \Omega\)
- \(R_2 = 14 \, \Omega\)
- \(R_3 = 14 \, \Omega\)
- \(R_4 = 14 \, \Omega\)
*Round the FINAL answer to two decimal places.*
---
### Circuit Diagram Explanation:
The circuit diagram provided includes:
- A voltage source (\(E_T\)) of 15 volts.
- Four resistors:
- \(R_1\) is connected in series with the parallel combination of \(R_2\), \(R_3\), and \(R_4\).
The resistors \(R_2\), \(R_3\), and \(R_4\) are arranged in parallel, forming a parallel network that is in series with \(R_1\).
### Instructions:
To find the current flowing through \(R_4\), perform the following steps:
1. Calculate the equivalent resistance of the parallel network (\(R_2\), \(R_3\), \(R_4\)).
2. Find the total resistance in the circuit.
3. Determine the total current flowing through the circuit using Ohm's Law.
4. Calculate the current through \(R_4\) using the properties of parallel circuits.
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