a) A circular loop of radius a carries current I as shown in the figure. Find the magnetic flux density B at a point on the axis of the loop by using Biot-Savart law. P(0,0,2) Show all the details of Biot-Savart formulation b) A surface charge density exists on the hemispherical surface of the radius b shown in the figure given as J=Josindêp A/m where Jois constant. i) Find the total current flowing on the surface ii) Using the solution of part (a), find the magnetic flux density B at the origin 0.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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a) A circular loop of radius a carries current I as shown in the
figure. Find the magnetic flux density B at a point on the axis
of the loop by using Biot-Savart law.
P(0,0,2)
Show all the details of Biot-Savart formulation
b) A surface charge density exists on the hemispherical
surface of the radius b shown in the figure given as
J=Josinoêp A/m where Jo is constant.
i) Find the total current flowing on the surface
ii) Using the solution of part (a), find the magnetic flux density
B at the origin 0.
Transcribed Image Text:a) A circular loop of radius a carries current I as shown in the figure. Find the magnetic flux density B at a point on the axis of the loop by using Biot-Savart law. P(0,0,2) Show all the details of Biot-Savart formulation b) A surface charge density exists on the hemispherical surface of the radius b shown in the figure given as J=Josinoêp A/m where Jo is constant. i) Find the total current flowing on the surface ii) Using the solution of part (a), find the magnetic flux density B at the origin 0.
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