Problem 4.19 (Node-Voltage Method) Find V₁, V₂, V₁.1₁, and the voltage of the dependent source V 1250 V₂ www FIA 5 20 mA 1 ԿՈ 40 2000 2 kn 2500 DEPENDENT VOLTAGE SOURCE
Problem 4.19 (Node-Voltage Method) Find V₁, V₂, V₁.1₁, and the voltage of the dependent source V 1250 V₂ www FIA 5 20 mA 1 ԿՈ 40 2000 2 kn 2500 DEPENDENT VOLTAGE SOURCE
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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4.19
![**Problem 4.19 (Node-Voltage Method)**
Objective: Find \( V_1, V_2, V_3, I_{\Delta}, \) and the voltage of the dependent source.
**Circuit Description:**
- A 20 mA current source connected in series with the first node \( V_1 \).
- Three resistors and a dependent voltage source connected in a network:
- Resistor 1: 1 kΩ
- Resistor 2: 1 kΩ
- Resistor 3: 200 Ω
- Second node voltage is marked as \( V_2 \).
- The circuit includes a dependent voltage source labeled as \( 2500 I_{\Delta} \).
The task is to determine the voltages at nodes \( V_1, V_2, \) and \( V_3 \), the current \( I_{\Delta} \), and the voltage of the dependent source using the node-voltage method.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdd26d85a-e013-4a48-a762-d5bd9e4b812c%2F177786bf-3286-4164-a1ba-ef7d599dbb37%2Fkvq7esb_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**Problem 4.19 (Node-Voltage Method)**
Objective: Find \( V_1, V_2, V_3, I_{\Delta}, \) and the voltage of the dependent source.
**Circuit Description:**
- A 20 mA current source connected in series with the first node \( V_1 \).
- Three resistors and a dependent voltage source connected in a network:
- Resistor 1: 1 kΩ
- Resistor 2: 1 kΩ
- Resistor 3: 200 Ω
- Second node voltage is marked as \( V_2 \).
- The circuit includes a dependent voltage source labeled as \( 2500 I_{\Delta} \).
The task is to determine the voltages at nodes \( V_1, V_2, \) and \( V_3 \), the current \( I_{\Delta} \), and the voltage of the dependent source using the node-voltage method.
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