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  2. Rutherford model - Wikipedia

    en.wikipedia.org/wiki/Rutherford_model

    Schematic diagram Rutherford's atom: electrons in green and nucleus in red. The atomic nucleus shown expanded more than 10,000 times its size relative to the atom; electrons have no measurable diameter. 3D animation of an atom incorporating the Rutherford model.

  3. Rutherford scattering experiments - Wikipedia

    en.wikipedia.org/wiki/Rutherford_scattering...

    The prevailing model of atomic structure before Rutherford's experiments was devised by J. J. Thomson. [1]: 123 Thomson had discovered the electron through his work on cathode rays [2] and proposed that they existed within atoms, and an electric current is electrons hopping from one atom to an adjacent one in a series.

  4. File:Rutherford atomic planetary model.svg - Wikipedia

    en.wikipedia.org/wiki/File:Rutherford_atomic...

    English: Basic diagram (rutherford ) of the atomic planetary model (nitrogen): electrons in green and nucleus in red. Deutsch: Atommodell nach Rutherford für Stickstoff, Elektronen: grün, Atomkern: rot

  5. File:3D anamation of the Rutherford atom.ogv - Wikipedia

    en.wikipedia.org/wiki/File:3D_anamation_of_the...

    English: Model of the atom by Ernest Rutherford. He proposed a nucleus with protons and electrons spinning around. He proposed a nucleus with protons and electrons spinning around. Work done by David Marin with the scientific supervision of José Carlos Sánchez Muñoz, a chemist at the School of Engineering of Seville .

  6. Bohr model - Wikipedia

    en.wikipedia.org/wiki/Bohr_model

    In atomic physics, the Bohr model or Rutherford–Bohr model was the first successful model of the atom. Developed from 1911 to 1918 by Niels Bohr and building on Ernest Rutherford 's nuclear model , it supplanted the plum pudding model of J J Thomson only to be replaced by the quantum atomic model in the 1920s.

  7. Electron scattering - Wikipedia

    en.wikipedia.org/wiki/Electron_scattering

    The diagram shows that like charges repel each other, and opposite charges attract each other. In the image, the vector F 1 is the force experienced by q 1, and the vector F 2 is the force experienced by q 2. When q 1 q 2 > 0, the forces are repulsive (as in the image) and when q 1 q 2 < 0 the forces are attractive (opposite to the image). The ...

  8. Atomic orbital - Wikipedia

    en.wikipedia.org/wiki/Atomic_orbital

    The Rutherford–Bohr model of the hydrogen atom After Bohr's use of Einstein 's explanation of the photoelectric effect to relate energy levels in atoms with the wavelength of emitted light, the connection between the structure of electrons in atoms and the emission and absorption spectra of atoms became an increasingly useful tool in the ...

  9. Free neutron decay - Wikipedia

    en.wikipedia.org/wiki/Free_neutron_decay

    A schematic of the nucleus of an atom indicating β − radiation, the emission of a fast electron from the nucleus (the accompanying antineutrino is omitted). In the Rutherford model for the nucleus, red spheres were protons with positive charge and blue spheres were protons tightly bound to an electron with no net charge.