The magnetic field intensity is given in a certain region of space as
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Chapter 7 Solutions
Engineering Electromagnetics
- HW_2.pdf HW_2)Solve the following questions: QI) Prove that the curl of the gradient of any scalar is zero. Q2) In your own words, explain the main differences between the electric potential and the scalar magnetic potential. Q3) Determine the vector magnetic potential at P(0.4,0.3,0)in the field of 8A filamentary current directed inward from infinity to the origin on the positive x-axis „and then outward to infinity along the y-axis as shown in figure. Q4) The magnetic field intensity is given in a certain region of space as H=*+ 29a. +a. A/m. (a) Find V × H. (b) Find J. (c) Use J to find the total cúrrent passing through the surface z = 4, lgxs2, 3 2m, J = 8ja, A/m? for ly| < Im, J= 8(2 – y)a, A/m? for 1arrow_forwardE6arrow_forwardThis is a practice problem from the Engineering Electromagnetics course in my Electrical Engineering program. Could you please walk me through the steps of solving it so that I can solve more complicated ones in the future? Thank you for your assistance.arrow_forwardElectromagnetic Fieldsarrow_forwardElectrical Engineering Given that vector field r xi + yj + zk, compute the flux integral (surface integral) of r over a square box with side lengths equal to L by applying the divergence theorem to convert the flux integral into a volume integral. A) 3L3 B) 9L C) 2xyL D) Lz E) None of thesearrow_forwardThe electric potential at points in xy plane is given by V=3x-y Whatis the electric fiekd at the point (1,2)min unit vector notation? O A) 61-4 -6i+4} Og -a-4 I -a4) 31-4 E)arrow_forwardElectrical Engineering For free space, & = 8.85x10-¹2 F/m, 4 = 4×10¹H/m. 1. In the free space, an infinite plate area with a thickness of 2a is uniformly distributed with current J-Joey. Find the magnetic induction intensity of each point in the space. 2 3 ta -a Solve question no-01 I Xarrow_forwardNote: Please do not handwritten.arrow_forwardμ_0 = 4π×10^(−7) T.m/Aarrow_forwardwhat is the curlarrow_forwardELECTROMAGNETICSarrow_forwardElectrical Engineering There are static electric displacement vector field D- = 3x 3~ax-2y 2~ay -z 3~az and static magnetic field H~ = yz2~ax + 2xz2~ay - xyz~az in free space. [All units are SI]. A) Check if such fields are consistent with the Maxwell equations; B) Find the electric charge density p(x, y, z); C) Find the electric current density J~(x, y, z).arrow_forwardarrow_back_iosSEE MORE QUESTIONSarrow_forward_ios
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