A finite-length wire with current I=5 A is positioned along the z-axis and is centered at the origin as shown in the figure. The current flows in the +z direction. The wire's length is 1=10 cm. Determine the magnetic field intensity vector H at the point P(-1,0,0) cm using the superposition principle. Express the H vector in terms of (a) rectangular and (b) cylindrical components. ´P R dH into the page dt do

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A finite-length wire with current I = 5 A is positioned
along the z-axis and is centered at the origin as shown
in the figure. The current flows in the +z direction. The
wire's length is l=10 cm. Determine the magnetic
field intensity vector H at the point P(-1,0,0) cm using
the superposition principle. Express the H vector in
terms of (a) rectangular and (b) cylindrical components.
dH into
dl
do
the
page
Transcribed Image Text:A finite-length wire with current I = 5 A is positioned along the z-axis and is centered at the origin as shown in the figure. The current flows in the +z direction. The wire's length is l=10 cm. Determine the magnetic field intensity vector H at the point P(-1,0,0) cm using the superposition principle. Express the H vector in terms of (a) rectangular and (b) cylindrical components. dH into dl do the page
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