11 pages matching carbon atom in this book
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Result from the Lorentz electrodynamics uiven for comparison
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alpha-particles angle approximation assumed atomic model atomic number atomic weight axes bodies boron carbon carbon atom centre Chapter charge of 2e computed connecting electrons constant crystal cube curve denoted diamond lattice direction displacement eccentricity electrostatic force elementary charge elements energy content equal equation equatorial plane equilibrium exist expression face-centred cubic force due form of electrodynamics frequency given gives helium atom Hence hydrogen atom hydrogen molecule inverse isotope K-series Lorentz mass maximum distance minor axis motion negative electron number of electrons numerical value oblate spheroid obtained orbit particles passing electron positive charge Poynting vector quantity r-4 term radiation radius vector ratio reason represented repulsion ring rotation Rutherford Rydberg constant second atom selected atom semi-minor axis shown simple cubic lattice sphere spherical supposed surface symmetrical atoms theory total number velocity of light vibration wave-length whole atom X-ray z-component zero