Hardcover. Condizione: Good. No Jacket. Former library book; Pages can have notes/highlighting. Spine may show signs of wear. ~ ThriftBooks: Read More, Spend Less.
Hard Cover. Condizione: Very Good. First Edition. a very good hardcover; an ex-library copy with usual markings; internally pages bright and clean; ---------- SATISFACTION GUARANTEED --------- FAST, COURTEOUS SERVICE ------ ALL ORDERS SHIPPED WITH DELIVERY CONFIRMATION; Size: 6 x 9". Ex-Library.
Condizione: Very Good. Good shape with typical wear. Pages are unmarked and sharp. paperback Used - Very Good Ships fast! 2022.
Paperback. Condizione: new. Paperback. The Revolving Charge Particle ModelWe have developed a novel revolving charge model wherein the electron's tiny charge revolves at the speed of light in a Compton wavelength orbit. Using this, we can derive the magnetic moment (the Bohr magneton), identically, in three simple algebraic equations. (See Eqs. 1-1 through 1-3.)We derive the mass-energy in 2 easy equations, and the spin-angular momentum, again, in 3 easy equations. Wave mechanics is not needed here, and the results speak for themselves. We expand this to cover the proton, the neutron, and a Yukawa-like deuteron model made up of two revolving charge protons that are mutually attracted to a pion. Using the diameter of the protons and the quadrupole moment of the deuteron, we determine its dimensions. It is interesting to note that using these discrete charges and their spacing, the the graphically calculated electrostatic binding energy is 2.444 MeV whereas the known binding energy is 2.22 MeV. (We note that there are likely those that will be skeptical about these results, but they can easily do the math for themselves.) We also study the effects of the Compton wavelets on the first Bohr radius. To do this, we have to define "electron coordinates" where the unit of time is the time that it takes for the revolving charge to do one revolution ( te = 8.09329979E-21 seconds ), the unit of length is the Compton wavelength, and the unit of mass is the mass of the electron. Velocity, of course, is Comptons per rotation.The meson model provides the masses of the mesons below 4074 MeV . The Psi meson masses have accuracies of -1.3% to 4.7% . The meson series from the Eta through the A0(980) have errors ranging from 0.5% to 2.3%. The remaining mesons have accuracies of -16% to +12%. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
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Da: Universitätsbuchhandlung Herta Hold GmbH, Berlin, Germania
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Aggiungi al carrello1 CD-ROM, 129 figs., XVIII, 314 p. Hardcover. Versand aus Deutschland / We dispatch from Germany via Air Mail. Einband bestoßen, daher Mängelexemplar gestempelt, sonst sehr guter Zustand. Imperfect copy due to slightly bumped cover, apart from this in very good condition. Stamped. With CD-ROM, stamped. Sprache: Englisch.
Da: Lucky's Textbooks, Dallas, TX, U.S.A.
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Editore: Krefeld. Stadt Krefeld Oberstadtdirektor. ., 1990
ISBN 10: 3926530464 ISBN 13: 9783926530462
Da: Antiquariat & Verlag Jenior, Kassel, HE, Germania
EUR 20,00
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Aggiungi al carrello204 S. Hardcover. Sauberes Exemplar ohne Stempel und Anstreichungen. Zahlreiche Abbildungen und Tafeln. Mit Beiheft: Dokumentation. Ecken und Kanten minimal bestoßen. Buchrücken und Oberkante minimal ausgeblichen. Sonst sehr gut erhalten. Sprache: deu.
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Aggiungi al carrelloPaperback. Condizione: new. Paperback. The Revolving Charge Particle ModelWe have developed a novel revolving charge model wherein the electron's tiny charge revolves at the speed of light in a Compton wavelength orbit. Using this, we can derive the magnetic moment (the Bohr magneton), identically, in three simple algebraic equations. (See Eqs. 1-1 through 1-3.)We derive the mass-energy in 2 easy equations, and the spin-angular momentum, again, in 3 easy equations. Wave mechanics is not needed here, and the results speak for themselves. We expand this to cover the proton, the neutron, and a Yukawa-like deuteron model made up of two revolving charge protons that are mutually attracted to a pion. Using the diameter of the protons and the quadrupole moment of the deuteron, we determine its dimensions. It is interesting to note that using these discrete charges and their spacing, the the graphically calculated electrostatic binding energy is 2.444 MeV whereas the known binding energy is 2.22 MeV. (We note that there are likely those that will be skeptical about these results, but they can easily do the math for themselves.) We also study the effects of the Compton wavelets on the first Bohr radius. To do this, we have to define "electron coordinates" where the unit of time is the time that it takes for the revolving charge to do one revolution ( te = 8.09329979E-21 seconds ), the unit of length is the Compton wavelength, and the unit of mass is the mass of the electron. Velocity, of course, is Comptons per rotation.The meson model provides the masses of the mesons below 4074 MeV . The Psi meson masses have accuracies of -1.3% to 4.7% . The meson series from the Eta through the A0(980) have errors ranging from 0.5% to 2.3%. The remaining mesons have accuracies of -16% to +12%. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
Da: California Books, Miami, FL, U.S.A.
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Da: California Books, Miami, FL, U.S.A.
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Lingua: Inglese
Editore: Dordrecht: Kluwer 06.1998., 1998
ISBN 10: 0792351215 ISBN 13: 9780792351214
Da: Antiquariat im Kaiserviertel | Wimbauer Buchversand, Dortmund, NRW, Germania
EUR 50,00
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Aggiungi al carrelloPappband. Condizione: Gut. Auflage: 1998. 441 Seiten Kanten gering bestossen /// Standort Wimregal SOL-20.300 ISBN 9780792351214 Sprache: Englisch Gewicht in Gramm: 926.
EUR 60,00
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Aggiungi al carrelloGr.-8°. XXI, 574 S., 2 Bl. Nahezu neuwertiges Exemplar. Sprache: Englisch Gewicht in Gramm: 1200 OPp. - (Developments in Cardiovascular Medicine 186).
Da: Ria Christie Collections, Uxbridge, Regno Unito
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