Prove Green's reciprocation theorm: If p is the potential due to a volume charge density p within a volume V and a surface charge density a on the conducting surface S bounding the volume V, while ' is the potential for the same geometry but for a different p' and o', then vdsr ppIsda op' = /vd°r p'p + fsda o'p Hint: Consider Green's 2nd identity.
Prove Green's reciprocation theorm: If p is the potential due to a volume charge density p within a volume V and a surface charge density a on the conducting surface S bounding the volume V, while ' is the potential for the same geometry but for a different p' and o', then vdsr ppIsda op' = /vd°r p'p + fsda o'p Hint: Consider Green's 2nd identity.
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![Prove Green's reciprocation theorm: If p is the potential due to a volume charge density p within a volume V and a surface charge density
a on the conducting surface S bounding the volume V, while ' is the potential for the same geometry but for a different p' and o', then
vdsr ppIsda op' = /vd°r p'p + fsda o'p
Hint: Consider Green's 2nd identity.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff9faf22f-10a8-4cb5-bec9-d63452f6293a%2F9c4cacca-52e5-46fc-87f2-44a63d588bf4%2Fv4eey6n.png&w=3840&q=75)
Transcribed Image Text:Prove Green's reciprocation theorm: If p is the potential due to a volume charge density p within a volume V and a surface charge density
a on the conducting surface S bounding the volume V, while ' is the potential for the same geometry but for a different p' and o', then
vdsr ppIsda op' = /vd°r p'p + fsda o'p
Hint: Consider Green's 2nd identity.
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