LNS EPFL

Jump to search field. Magnetism at the Atomic Level. Nanocatalysis inspired by Enzymatic Cofactors. Nucleation, Aggregation, Self-organization, Epitaxial Growth. Nanotribology and Mechanical Properties of Nanostructures. Adressable Cold Cathode for Flat Panel Screens and e-beam Projection Lithology. Electron Spin Flip with the STM, Ferromagnetic Resonance with XMCD. Supramolecular Architecture at surfaces. How to find us. Magnetic and semiconducting nanostructures. 2D Superlattice of Single Atom Magnets.

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Jump to search field. Magnetism at the Atomic Level. Nanocatalysis inspired by Enzymatic Cofactors. Nucleation, Aggregation, Self-organization, Epitaxial Growth. Nanotribology and Mechanical Properties of Nanostructures. Adressable Cold Cathode for Flat Panel Screens and e-beam Projection Lithology. Electron Spin Flip with the STM, Ferromagnetic Resonance with XMCD. Supramolecular Architecture at surfaces. How to find us. Magnetic and semiconducting nanostructures. 2D Superlattice of Single Atom Magnets.

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The site lns.epfl.ch states the following, "Magnetism at the Atomic Level." I noticed that the webpage said " Nanocatalysis inspired by Enzymatic Cofactors." They also stated " Nucleation, Aggregation, Self-organization, Epitaxial Growth. Nanotribology and Mechanical Properties of Nanostructures. Adressable Cold Cathode for Flat Panel Screens and e-beam Projection Lithology. Electron Spin Flip with the STM, Ferromagnetic Resonance with XMCD. 2D Superlattice of Single Atom Magnets."

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