04 Given that J 1, (r2 + 2)V () dr. find the value of J. Note that the divergence relation in spherical coordinates is given as follows V.v = (r*v.)+ ar (sin eve) + r sin e ap r sin e a0
04 Given that J 1, (r2 + 2)V () dr. find the value of J. Note that the divergence relation in spherical coordinates is given as follows V.v = (r*v.)+ ar (sin eve) + r sin e ap r sin e a0
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![04 Given that
J= 1, (r2 + 2)V () dr.
find the value of J. Note that the divergence relation in spherical coordinates is
given as follows
V.v =
(r'v.)+
ar
(sin eve) +
r sin e ap
r sin e a0](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0e2315e0-bbf7-4471-aee5-bed0c90a56db%2F784dc0d1-b301-4793-b546-f2772d943be8%2Fs3yjc9l_processed.jpeg&w=3840&q=75)
Transcribed Image Text:04 Given that
J= 1, (r2 + 2)V () dr.
find the value of J. Note that the divergence relation in spherical coordinates is
given as follows
V.v =
(r'v.)+
ar
(sin eve) +
r sin e ap
r sin e a0
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