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Screening constant by unit nuclear charge method : description and application to the photoionization of atomic systems / Ibrahima Sakho.

By: Material type: TextTextPublisher: Hoboken, NJ : John Wiley and Sons, Inc. ; London, UK : ISTE, 2018Description: 1 online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781119510420
  • 1119510422
  • 9781119476948
  • 1119476941
Subject(s): Genre/Form: Additional physical formats: Print version:: Screening constant by unit nuclear charge method.DDC classification:
  • 539.7/57 23
LOC classification:
  • QC702.7.P8
Online resources:
Contents:
PART 1 -- Different Photoionization Processes, Rydberg Series -- Experimental and Theoretical Methods of Photoionization -- General Formalism of the Screening Constant by Unit Nuclear Charge Method Applied to Photoionization -- Applications in the Calculations of Energies and Natural Widths of the Resonance States of Multi-Electron Atomic Systems. Applications in the Calculations of Energies and Natural Widths of the Resonance States of Multi-Electron Atomic Systems -- Application to the Calculation of Energies of Two-electron Atomic Systems (Helium-like Systems) -- Calculating the Energies of Three-electron Atomic Systems (Lithium-like Systems) -- Application in the Resonant Photoionization of Atomic Systems of Atomic Numbers Z = 4-12 -- Resonant Photoionization of Sulfur (S) and Ar+, Se+, Se2+ and Kr+ Ions -- Conclusion: Advantages and Limits of the SCUNC Formalism -- Detailed Calculation of the Screening Constant by Unit Nuclear Charge Relative to the Ground State of Two-electron Atomic Systems -- Formalism of Slater's Atomic Orbital Theory -- Modified Formalism of the Atomic Orbital Theory -- Bibliography -- Index -- Other titles from iSTE in Waves.
Summary: The reader will find in this collection a clear exposition of the method of the Screen Constant by Nuclear Charge Unit which can be applied in a simple and immediate way to many fields of Physics in relation to atomic spectroscopy.
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PART 1 -- Different Photoionization Processes, Rydberg Series -- Experimental and Theoretical Methods of Photoionization -- General Formalism of the Screening Constant by Unit Nuclear Charge Method Applied to Photoionization -- Applications in the Calculations of Energies and Natural Widths of the Resonance States of Multi-Electron Atomic Systems. Applications in the Calculations of Energies and Natural Widths of the Resonance States of Multi-Electron Atomic Systems -- Application to the Calculation of Energies of Two-electron Atomic Systems (Helium-like Systems) -- Calculating the Energies of Three-electron Atomic Systems (Lithium-like Systems) -- Application in the Resonant Photoionization of Atomic Systems of Atomic Numbers Z = 4-12 -- Resonant Photoionization of Sulfur (S) and Ar+, Se+, Se2+ and Kr+ Ions -- Conclusion: Advantages and Limits of the SCUNC Formalism -- Detailed Calculation of the Screening Constant by Unit Nuclear Charge Relative to the Ground State of Two-electron Atomic Systems -- Formalism of Slater's Atomic Orbital Theory -- Modified Formalism of the Atomic Orbital Theory -- Bibliography -- Index -- Other titles from iSTE in Waves.

Online resource; title from PDF title page (EBSCO, viewed February 20, 2018).

The reader will find in this collection a clear exposition of the method of the Screen Constant by Nuclear Charge Unit which can be applied in a simple and immediate way to many fields of Physics in relation to atomic spectroscopy.

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