File:Bohr-model-Helium.gif

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Bohr-model-Helium.gif (252 × 247 pixels, file size: 2 KB, MIME type: image/gif)

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English: Bohr model of Helium __ (This model is just consistent with the experimental value of helium ground state energy). Two same-shaped orbital(not circular) planes of electrons are perpendicular to each other. This figure shows one quarter of the orbitals. Electron 1 starts at (r1,0,0), while electron 2 starts at (-r1,0,0). By a computational method, we calculate the Coulomb force among the particles and the number of de Broglie's waves contained in the short segment at short time intervals. The orbital length is proved to be just one times de Broglie's wavelength. See https://arxiv.org/abs/0903.2546 in detail.
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Author Ptrygne

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current01:08, 29 March 2009Thumbnail for version as of 01:08, 29 March 2009252 × 247 (2 KB)Ptrygne (talk | contribs)One Bohr model of Helium. Two same-shaped orbital planes of electrons are perpendicular to each other. This figure shows one quater of the orbitals. Electron 1 starts at (r1,0,0), while electron 2 starts at (-r1,0,0).
01:04, 29 March 2009Thumbnail for version as of 01:04, 29 March 2009252 × 247 (2 KB)Ptrygne (talk | contribs)One Bohr model of Helium. Two same-shaped orbital planes of electrons are perpendicular to each other. This figure shows one quater of the orbitals. Electron 1 starts at (r1,0,0), while electron 2 starts at (-r1,0,0).
04:09, 28 March 2009Thumbnail for version as of 04:09, 28 March 2009452 × 441 (4 KB)Ptrygne (talk | contribs){{Information |Description={{en|1=One Bohr model of Helium. Two same-shaped orbital planes of electrons are perpendicular to each other. This figure shows one quater of the orbitals. Electron 1 starts at (r1,0,0), while electron 2 starts at (-r1,0,0).}} |

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