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SHORTLIVED RESONANCE STATES
RADIOACTIVE SERIES AND ISOTOPES
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a-particles accelerated angular momentum atom atomic mass beam binding Bohr Calculate called chamber changes Chapter charge collision compared constant containing corresponding cosmic rays coupling decay density depends described difference direction effect electric electron elements energy equal equation experiment experimental explain fact fission force formula frequency given gives half-life hydrogen increased intensity interaction ionization ions isotope known levels light limit lines magnetic field mass maximum mean measured method molecules natural neutrons nuclear nucleons nucleus nuclides observed orbit original particles pass photographic physics plate positive possible potential Problems produced properties protons quantum mechanics quantum number quarks radiation radioactive range reaction reactor relative rule separation shell shown in Fig shows simple single sodium spectrum stable structure Table theory transitions tube unit vector velocity wave wavelength X-ray