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Preface | ||
Nanocrystalline Oxides and Sulphides Prepared by Hydrothermal Processing and Mechanical Milling | 1 | |
Mechanosynthesis of Nanostructured Materials | 11 | |
Iron (III) Oxides Formed during Thermal Conversion of Rhombohedral Iron (III) Sulfate | 21 | |
Phase Analysis of the Fe-C Nanopowder Prepared by Laser Pyrolysis | 31 | |
On the Application of Mossbauer Spectroscopy to the Study of Surfaces | 41 | |
Conversion Electron Mossbauer Spectroscopy of Langmuir-Blodgett Films | 53 | |
Modification of Steel Surfaces Following Plasma and Ion Beam Implantation Investigated by Means of CEMS | 59 | |
CEMS Studies of Laser Treated Disordered Amorphous and Nanocrystalline Alloys | 69 | |
CEMS Measurement of Surface Hardening of Toothed Wheels | 79 | |
Magnetic Iron-Based Oxides Investigated by [superscript 57]Fe Mossbauer Spectrometry | 83 | |
Mattis' Magnetics and Disordered Systems | 93 | |
Hyperfine Magnetic Structure and Magnetic Properties of Invar Fe-Ni-C Alloys | 105 | |
Investigation of Magnetic Properties in Iron-Based Nanocrystalline Alloys by Mossbauer Effect and Magnetization Measurements | 117 | |
MOMS - Magnetic Orientation Mossbauer Spectroscopy: Determination of Spin Orientations in Ion Irradiated Iron Films | 127 | |
Mossbauer Effect in Iron-Based Nanocrystalline Alloys | 137 | |
Nanocrystalline Fe[subscript 81-x]Ni[subscript x]Zr[subscript 7]B[subscript 12] (x=10-40) Alloys Investigated by Mossbauer Spectroscopy | 147 | |
Corrosion of Fe-Based Nanocrystalline Alloys | 159 | |
Mossbauer and Atomic Force Microscopy Observations of Modified Surfaces of Fe-Si Steel | 167 | |
Mossbauer Investigation of Surface Processing by Pulsed Laser Irradiation in Reactive Atmospheres | 177 | |
Application of Mossbauer Spectroscopy and Positron Annihilation Spectroscopy for Testing of Neutron-Irradiated Reactor Steels | 187 | |
Mossbauer Spectroscopy of Commercial Galvannealed Zinc Coatings | 199 | |
Nuclear Resonant Scattering of Synchrotron Radiation | 205 | |
Synchrotron Mossbauer Reflectometry for Investigation of Hyperfine Interactions in Periodical Multilayers with Nanometer Resolution | 217 | |
Diffusion Studies in Ordered Alloys | 229 | |
Nuclear Resonance Inelastic Scattering of Synchrotron Radiation in Oxides with Colossal Magnetoresistance | 239 | |
Pyrite: Linking Mossbauer Spectroscopy to Mineral Magnetism | 251 | |
Synthesis of Iron Sulfides: A Mossbauer Study | 261 | |
Mossbauer Spectroscopy in Studying the Thermally Induced Oxidation of Fe[superscript 2+] Cations in Iron-Bearing Silicate Minerals | 271 | |
Mossbauer Diffractometry | 285 | |
Emission Mossbauer Spectroscopy in CoO | 297 | |
Comparative Transmission and Emission Mossbauer Studies on Various Perovskite-Related Systems | 307 | |
Trends in Mossbauer Polarimetry with Circularly Polarized Radiation | 317 | |
New Trends in Mossbauer Spectroscopy Focused on Nanostructured Magnetic Materials | 329 | |
The Use of the Wavelet Transform for Mossbauer Spectra Fitting | 339 | |
Dose Measurements "in" Mossbauer Spectroscopy and Dose Measurements "by" Mossbauer Spectroscopy | 347 | |
Author Index | 357 | |
Subject Index | 359 |
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Add Material Research In Atomic Scale By Maa, Mössbauer spectroscopy is uniquely able to probe hyperfine interactions by looking at the short-range order of resonant atoms. Materials containing an appropriate isotope as one of their constituent atoms, such as iron or tin, are readily investigated. Bu, Material Research In Atomic Scale By Maa to the inventory that you are selling on WonderClubX
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Add Material Research In Atomic Scale By Maa, Mössbauer spectroscopy is uniquely able to probe hyperfine interactions by looking at the short-range order of resonant atoms. Materials containing an appropriate isotope as one of their constituent atoms, such as iron or tin, are readily investigated. Bu, Material Research In Atomic Scale By Maa to your collection on WonderClub |