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{{Infobox book
{{Infobox book
| image = Gravity, Magnetism and Light placeholder cover.jpg
| alt = Gravity, Magnetism and Light (placeholder cover)
| name = Gravity, Magnetism and Light
| name = Gravity, Magnetism and Light
| author = [[Ralph Sansbury]]
| author = [[Ralph Sansbury]]
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Are magnetism and gravity ultimately electrostatic? Years of evidence for charge polarization (sometimes viewed as ?spin?) inside electrons and atomic nuclei leads to the startling implication that such electrostatic dipoles in fact can account for the magnetism of current carrying wires, ferromagnets, and the gravitational and magnetic fields of the earth and all planets and stars.   
Are magnetism and gravity ultimately electrostatic? Years of evidence for charge polarization (sometimes viewed as ?spin?) inside electrons and atomic nuclei leads to the startling implication that such electrostatic dipoles in fact can account for the magnetism of current carrying wires, ferromagnets, and the gravitational and magnetic fields of the earth and all planets and stars.   


[[Category:Book with placeholder cover]]
[[Category:Book|gravity magnetism light]]
[[Category:Book|gravity magnetism light]]


[[Category:Gravity|gravity magnetism light]]
[[Category:Gravity|gravity magnetism light]]

Latest revision as of 09:53, 19 July 2026

Gravity, Magnetism and Light
Gravity, Magnetism and Light (placeholder cover)
AuthorRalph Sansbury
Published2009
PublisherRalph Sansbury
Pages58

Are magnetism and gravity ultimately electrostatic? Years of evidence for charge polarization (sometimes viewed as ?spin?) inside electrons and atomic nuclei leads to the startling implication that such electrostatic dipoles in fact can account for the magnetism of current carrying wires, ferromagnets, and the gravitational and magnetic fields of the earth and all planets and stars.