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Need help with this electromagnetic engineering problem. There are 4 parts to the problem, please help with all.D EE 4301. 501.S19 Exam #2-Ti 文 My Drive . Google D XC Get Help With Chee X https://elearning.utdallas.edu/bbcswebdav/pid-246D EE 4301, 501.S19 Exam, #2 -Ti My Drive-Google D XC Get Help With Chee X https://elearning.utdallas.edu/bbcswebdav/pid-24639

D EE 4301. 501.S19 Exam #2-Ti 文 My Drive . Google D XC Get Help With Chee X https://elearning.utdallas.edu/bbcswebdav/pid-2463927-dt-content-rid-63335598-1/courses/21 92-UTDAL-EE-4301-SEC501-25045/EE%204301.501-S19%20Exam%20% ☆ Problem 4 (25 points Magnetic field direction. A pair of infinitely long wires run in the z-direction and are located as shown in the figure a) If the two currents are equal and both running in the +2-direction, carefully draw the resulting magnetic flux density vector B at the five points indicated. You do not need to calculate the vector values but be realistic about the relative strength at the various points. x=-d Current I Current I b) If you integrate the magnetic flux density B dl around the circular path show, what will the answer be?
D EE 4301, 501.S19 Exam, #2 -Ti My Drive-Google D XC Get Help With Chee X https://elearning.utdallas.edu/bbcswebdav/pid-2463927-dt-content-rid-63335598-1/courses/21 92-UTDAL-EE-4301-SEC501-25045/EE%204301.501-S19%20Exam%20% ☆ Pr c If the two currents are equal in magnitude but opposite in direction, carefully draw the resulting magnetic flux density vector B at the five points indicated. You do not need to calculate the vector values but be realistic about the relative strength at the various points. PM x--d Current -I : P1 Current I If you integrate the magnetic flux density $ B-a around the circular path show, what will the answer be? d)
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