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Investigation of TiFe Deuteride Structures by Means of Neutron Powder Diffraction and the Mössbauer Effect
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W. Schäfer
Published/Copyright:
March 30, 1979
Published Online: 1979-3-30
Published in Print: 1979-2-1
© Akademische Verlagsgesellschaft Wiesbaden
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Articles in the same Issue
- The Electrotransport of H and D in V, Nb and Ta at High Hydrogen Concentrations
- Electromigration of Hydrogen and Deuterium in Titanium
- Investigation of Metal-Hydrogen Systems by Means of Neutron Scattering
- Interstitial Interactions in the Palladium-Hydrogen (Deuterium) System
- Investigation of Proton Diffusion in Niobium by Nuclear Magnetic Resonance
- Diffusion of H in α-NbHxDy
- Mössbauer Study of the Diffusion of Stored Hydrogen in 57Fe-Doped Titanium
- Investigation of TiFe Deuteride Structures by Means of Neutron Powder Diffraction and the Mössbauer Effect
- Kinetics of Hydrogenation of Ni-Mn Alloys and Influence of Interstitial Hydrogen on their Magnetic Behaviour
- Magnetism of Hydrogenated Intermetallic Compounds Containing d-transition Metals
- The Energy and Electron Density of States of Hydrogen Impurities in Metals
- A Study of Hydrogen Diffusion in Titanium Hydride using Nuclear Magnetic Resonance Techniques*
Articles in the same Issue
- The Electrotransport of H and D in V, Nb and Ta at High Hydrogen Concentrations
- Electromigration of Hydrogen and Deuterium in Titanium
- Investigation of Metal-Hydrogen Systems by Means of Neutron Scattering
- Interstitial Interactions in the Palladium-Hydrogen (Deuterium) System
- Investigation of Proton Diffusion in Niobium by Nuclear Magnetic Resonance
- Diffusion of H in α-NbHxDy
- Mössbauer Study of the Diffusion of Stored Hydrogen in 57Fe-Doped Titanium
- Investigation of TiFe Deuteride Structures by Means of Neutron Powder Diffraction and the Mössbauer Effect
- Kinetics of Hydrogenation of Ni-Mn Alloys and Influence of Interstitial Hydrogen on their Magnetic Behaviour
- Magnetism of Hydrogenated Intermetallic Compounds Containing d-transition Metals
- The Energy and Electron Density of States of Hydrogen Impurities in Metals
- A Study of Hydrogen Diffusion in Titanium Hydride using Nuclear Magnetic Resonance Techniques*