The figure below shows a wire carrying a uniform current I = 20.2 A is bent into the shape of a sideways "P" and placed in a uniform magnetic field, B = 178 x 10-T (+k ) pointing out of the page. The curved section is a semicircle of radius R = 0.034 m and the straight section has a length, L= 0.056 m. %3D
The figure below shows a wire carrying a uniform current I = 20.2 A is bent into the shape of a sideways "P" and placed in a uniform magnetic field, B = 178 x 10-T (+k ) pointing out of the page. The curved section is a semicircle of radius R = 0.034 m and the straight section has a length, L= 0.056 m. %3D
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![2. The figure below shows a wire carrying a uniform current I = 20.2 A is bent into the
shape of a sideways "P" and placed in a uniform magnetic field, B = 178 x 10-5T (+k )
pointing out of the page. The curved section is a semicircle of radius R = 0.034 m and the
straight section has a length, L = 0.056 m.
da
R
°L](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F32b55a1c-78e9-42c8-ab00-e5457a67052e%2F44aac50c-7253-4117-9fc6-72ab6d7becf6%2F9en7jvl_processed.png&w=3840&q=75)
Transcribed Image Text:2. The figure below shows a wire carrying a uniform current I = 20.2 A is bent into the
shape of a sideways "P" and placed in a uniform magnetic field, B = 178 x 10-5T (+k )
pointing out of the page. The curved section is a semicircle of radius R = 0.034 m and the
straight section has a length, L = 0.056 m.
da
R
°L
![Determine the net magnetic force on the whole wire (the semicircular and straight
sections).
е.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F32b55a1c-78e9-42c8-ab00-e5457a67052e%2F44aac50c-7253-4117-9fc6-72ab6d7becf6%2Ffcpnzbv_processed.png&w=3840&q=75)
Transcribed Image Text:Determine the net magnetic force on the whole wire (the semicircular and straight
sections).
е.
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