QUESTION 3 A wire is located along +y axis and the current on it is 2A in +y direction and a second wire is located at x=10 m and a current of 5A flows in ty direction. Apply ampere's law to find the magnetic field intensity at point x=6 m. O 24 (-2) +54 (-2) 276 24 (2) +54 (-2) 276 © 24 (-2) + 54 (2) 276 26 2m4
QUESTION 3 A wire is located along +y axis and the current on it is 2A in +y direction and a second wire is located at x=10 m and a current of 5A flows in ty direction. Apply ampere's law to find the magnetic field intensity at point x=6 m. O 24 (-2) +54 (-2) 276 24 (2) +54 (-2) 276 © 24 (-2) + 54 (2) 276 26 2m4
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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
Transcribed Image Text:QUESTION 3
A wire is located along ty axis and the current on it is 2A in +y direction and a second wire is located at x=10 m and a current of 5A flows in ty
direction. Apply ampere's law to find the magnetic field intensity at point x=6 m.
276 (-2) + 54 (-2)
274
26
Ⓒ 24 (-2) + 24 (2)
276
26
2x4
+
5A
2x4
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Step 1: State the given data.
VIEWStep 2: Defining the right hand thumb rule.
VIEWStep 3: Finding the magnetic field intensity due to I1 = 2 A current wire.
VIEWStep 4: Finding the magnetic field intensity due to I2 = 5 A current wire.
VIEWStep 5: Finding the total magnetic field intensity due to both wires.
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