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NewR

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Lepton

Lepton (1/13)

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  1. Hello. Could somebody answer this question I asked on http://www.physicsforums.com/ "There is small question how electromagnetic field can be explained by virtual photons. The problem is that photon itself is electromagnetic wave. So electromagnetic field of virtual photon itself could be made of another virtual photons. And fields of these virtual photons could be made of another virtual photons again. And so on. So we have infinite logical recursion. Do not looks much realistic. " I mean if virtual photons exist they exist independently from QED like all other real phenomena of the Nature. So it can be seen also from classical view point as usual but very short life time photon. All other properties can be seen eqvivalent to real photons. But they even do not answered , they just closed it even without trying to explain. And my next modification of the same question http://www.part.lt/i...b3228878782.png was closed immediately. Thanks
  2. Sorry for the troubles with linking. I have uploaded the picture to another server. http://img864.images...905/mercury.png
  3. Here is corrected version of the mentioned acceleration. ->http://www.part.lt/img/db0d42e1474f160a32a4c0bcd95deb4a335.png It gives the same precession by 0.103 arc seconds per revolution but now it has much more clear meaning. Also it is simpler. Maybe now somebody will be able to help with analytical derivation of the precession? Or maybe someone can offer some other interesting cases to test this formula? // Just copy/paste the link to your browser if direct link do not work. // Maybe some issues between servers which I do not understand.
  4. I am sorry this is strange. It works for me the direct link. But maybe just copy and paste this to your browser. I have put additional -> so you may see the full url ->http://www.part.lt/img/eb4c24f748f6e9a2797ed354bfbe6051663.png or ->www.part.lt/img/eb4c24f748f6e9a2797ed354bfbe6051663.png
  5. Hello, here is semi classical formula for gravitational acceleration which perfectly predicts "relativistic" effects like precession of the Mercury. I have tested it by numerical integration. I can post very simple code of the program if somebody would like to test it. But I would be thankful if somebody would help to derive a formula of mentioned precession analytically.
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