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Article cité :
Pierre Auger
J. Phys. Radium, 6 6 (1925) 205-208
Citations de cet article :
281 articles | Pages :
Excited States in Quantum Chemistry
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A new approach to the study of the oxidation of metals in hostile environments
G. C. Allen, I. T. Brown and R. K. Wild Oxidation of Metals 12 (1) 83 (1978) https://doi.org/10.1007/BF00609976
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Electron spectroscopy applied to the study of metal oxidation (invited paper)
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Beam-Foil Spectroscopy
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Auger Electron Spectroscopy, SEM and Non-Dispersive X-Ray Analysis Techniques for Examination of Ag-CdO Contact Materials
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Systematic Materials Analysis
Gary Stupian Systematic Materials Analysis 57 (1974) https://doi.org/10.1016/B978-0-12-587801-2.50011-2
Theory of “Non-Stationary” states in many-electron atoms
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Electron Emission Spectroscopy
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New developments in the surface analysis of solids
A. Benninghoven Applied Physics 1 (1) 3 (1973) https://doi.org/10.1007/BF00886799
Auger Spectrometry as a Tool for Surface Chemistry
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Theoretical Approach to the Calculation of Energies and Widths of Resonant (Autoionizing) States in Many-Electron Atoms
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Auger electron spectroscopy for thin film analysis
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Auger electron spectroscopy and its application to surface studies
T.E Gallon and J.A.D Matthew Reviews of Physics in Technology 3 (1) 31 (1972) https://doi.org/10.1088/0034-6683/3/1/I02
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Low-energy electron diffraction
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Nonrelativistic K-shell auger rates and matrix elements for 4 < z ≤ 54
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Determination of the K—LL Auger Spectra of N2, O2, CO, NO, H2O, and CO2
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Auger electron spectroscopy
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Multiple Ionization of Ne, Ar, and Kr Produced by X Rays in the Energy Range 0.28-8.03 keV
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