The segment of wire in the figure caries a current of I=8.00 A, where the radius of the circular arc is R=4.00 cm. Determine the magnitude and direction of the magnetic field at the origin. Give your answer in µT. (take a=3, and thus µo = 12×10-7 H/m) BiE taşimaktadır- e00 A akımını oayısıyla µo ´R 90° 12×10-ar a
The segment of wire in the figure caries a current of I=8.00 A, where the radius of the circular arc is R=4.00 cm. Determine the magnitude and direction of the magnetic field at the origin. Give your answer in µT. (take a=3, and thus µo = 12×10-7 H/m) BiE taşimaktadır- e00 A akımını oayısıyla µo ´R 90° 12×10-ar a
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![The segment of wire in the figure carries a current of I=8.00 A, where the radius of the
circular arc is R=4.00 cm. Determine the magnitude and direction of the magnetic field
at the origin. Give your answer in µT. (take a=3, and thus µo = 12×10-7 H/m)
00 A akımını
Bietel
taştmaktadır-
verilas
erilen i
yericalann
cinsfadeiversnz
12x10-Ha am
´R
90°
Fuoiayisiyla lo](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F69da2519-8422-47d7-a4ea-e55134b67219%2F45e9e56d-9aa1-40a3-a2e0-e1783da3bff3%2Fbbu73t_processed.png&w=3840&q=75)
Transcribed Image Text:The segment of wire in the figure carries a current of I=8.00 A, where the radius of the
circular arc is R=4.00 cm. Determine the magnitude and direction of the magnetic field
at the origin. Give your answer in µT. (take a=3, and thus µo = 12×10-7 H/m)
00 A akımını
Bietel
taştmaktadır-
verilas
erilen i
yericalann
cinsfadeiversnz
12x10-Ha am
´R
90°
Fuoiayisiyla lo
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