If Np = 600, Ns = 1200, Vg = 120V and Z₁ = 100 +j1002. Np Ns V IL ZL VL Find the magnitude of Ip for the iron-core transformer in the image abov units lp = Find the magnitude of the voltage V₁ and the current IL VL = units |L= units
If Np = 600, Ns = 1200, Vg = 120V and Z₁ = 100 +j1002. Np Ns V IL ZL VL Find the magnitude of Ip for the iron-core transformer in the image abov units lp = Find the magnitude of the voltage V₁ and the current IL VL = units |L= units
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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![### Transformer Problem
Given:
- Number of primary turns (\(N_p\)) = 600
- Number of secondary turns (\(N_s\)) = 1200
- Primary voltage (\(V_g\)) = 120V
- Load impedance (\(Z_L\)) = \(10Ω + j10Ω\)
### Diagram Explanation
The diagram illustrates an iron-core transformer with:
- A sine wave symbol indicating the AC power source with primary voltage \(V_g\).
- Two sets of coils representing the primary winding (\(N_p\)) and secondary winding (\(N_s\)) of the transformer.
- Current \(I_p\) flowing through the primary winding.
- Current \(I_L\) flowing to the load, represented by impedance \(Z_L\), on the secondary winding.
- The secondary voltage across the load is denoted as \(V_L\).
### Tasks
1. **Find the magnitude of \(I_p\) for the iron-core transformer:**
- \(I_p\) = [________] units
2. **Find the magnitude of the voltage \(V_L\) and the current \(I_L\):**
- \(V_L\) = [________] units
- \(I_L\) = [________] units
This setup presents a basic transformer problem requiring the calculation of primary current and secondary side voltage and current, considering the given impedance.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F946d2131-1df4-4d93-acc7-a27f80ccabfd%2F93db2a2a-0a67-4bad-91b1-fdb60fdaa6fc%2F2iziikf_processed.png&w=3840&q=75)
Transcribed Image Text:### Transformer Problem
Given:
- Number of primary turns (\(N_p\)) = 600
- Number of secondary turns (\(N_s\)) = 1200
- Primary voltage (\(V_g\)) = 120V
- Load impedance (\(Z_L\)) = \(10Ω + j10Ω\)
### Diagram Explanation
The diagram illustrates an iron-core transformer with:
- A sine wave symbol indicating the AC power source with primary voltage \(V_g\).
- Two sets of coils representing the primary winding (\(N_p\)) and secondary winding (\(N_s\)) of the transformer.
- Current \(I_p\) flowing through the primary winding.
- Current \(I_L\) flowing to the load, represented by impedance \(Z_L\), on the secondary winding.
- The secondary voltage across the load is denoted as \(V_L\).
### Tasks
1. **Find the magnitude of \(I_p\) for the iron-core transformer:**
- \(I_p\) = [________] units
2. **Find the magnitude of the voltage \(V_L\) and the current \(I_L\):**
- \(V_L\) = [________] units
- \(I_L\) = [________] units
This setup presents a basic transformer problem requiring the calculation of primary current and secondary side voltage and current, considering the given impedance.
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