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The support will never exceed the actual costs incurred. For more information, please visit:. I started my PhD work in with the aim of describing quasi-particle properties in noble metals using an Ab-Initio approach. Inshe earned her Ph. Nanostructures for application at synchrotron inside the Lithography and nanopatterning topic. He has also developed methods to control the surface of perovskite single crystalline substrates, and has investigated the growth mechanisms of complex oxides. This research project has received funding from the EU's H framework programme for research and innovation under grant agreement n. Therefore I wrote a new numerical code in order to easily implement new theories and approximations in an Ab-Initio environment.

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    He is author of 51 articles, and of more than 35 invited talks at international conferences, universities and schools.

    The support will never exceed the actual costs incurred. Nanostructures for application at synchrotron. Further information and instruction will be sent regarding award of student travel support. In-situ structural, chemical, and magnetic characterization of nanostructures by combining STM with X-rays. He is a founding member of the team that developed the SIESTA method and code, which is used by thousands of groups to perform computer simulations of materials. Overview of simulation techniques at the nanoscale.

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    I am now leading a group of four different nodes and eight researches devoted to the combined experimental and theoretical investigation of ultra-fast and ultra-intense processes at the nano-scale.

    As a consequence of this twin role — synchrotron radiation and research activities — he also developed cutting edge techniques for in-operando and high throughput methods. I started my PhD work in with the aim of describing quasi-particle properties in noble metals using an Ab-Initio approach.

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    Nanostructures for application at synchrotron. He is a founding member of the team that developed the SIESTA method and code, which is used by thousands of groups to perform computer simulations of materials.

    It is open to graduate students, post-docs and young researchers, but including technicians, engineers and in general to all scientists from academic and industrial communities interested in acquiring knowledge and hands-on experience of the NFFA-Europe instruments and techniques, emphasizing the possibilities and synergies of combining Nanotechnology and Fine Analysis techniques. Poster sessions Participants are invited to present a poster related to their work and the framework of the NFFA-Europe project items.

    Nanostructures for application at synchrotron.

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    Mariona Coll received her degree in chemistry from University of Barcelona, Spain, in Therefore I wrote a new numerical code in order to easily implement new theories and approximations in an Ab-Initio environment.

    Thursday 21 July Characterization. His research activities have been focused on the use of laser radiation to modify the surface of materials and to grow oxide thin films. In-situ structural, chemical, and magnetic characterization of nanostructures by combining STM with X-rays Characterization topic.

    NFFA Summer School

    He is currently involved in six European research projects related to nanolthography and nanofabrication.

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    In he received the Price of the Spanish Association of Scientists for his contributions in the area of Materials Sciences, and he was appointed Fellow of the American Physical Society.

    In the following he was the team leader of the IBN group at the outstation in Trieste. It is open to graduate students, post-docs and young researchers, but including technicians, engineers and in general to all scientists from academic and industrial communities interested in acquiring knowledge and hands-on experience of the NFFA-Europe instruments and techniques, emphasizing the possibilities and synergies of combining Nanotechnology and Fine Analysis techniques.

    I studied finite-temperature optical and electronic properties. Inshe earned her Ph. She has made relevant contributions to the field of superconductivity helping establishing the basics to develop new and cost-effective chemical solution approaches to implement YBa2Cu3O7 and oxide buffer layer materials in long-length conductor processes obtaining world-leading performances.

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    In he received the Price of the Spanish Association of Scientists for his contributions in the area of Materials Sciences, and he was appointed Fellow of the American Physical Society. For more information, please visit:.

    She has made relevant contributions to the field of superconductivity helping establishing the basics to develop new and cost-effective chemical solution approaches to implement YBa2Cu3O7 and oxide buffer layer materials in long-length conductor processes obtaining world-leading performances.

    In-situ structural, chemical, and magnetic characterization of nanostructures by combining STM with X-rays Characterization topic. Overview of simulation techniques at the nanoscale X.

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    Overview of simulation techniques at the nanoscale.

    His research activities have been focused on the use of laser radiation to modify the surface of materials and to grow oxide thin films. Pulsed laser deposition inside the Physical Growth Techniques topic Lithography and nanopatterning topic. Therefore I wrote a new numerical code in order to easily implement new theories and approximations in an Ab-Initio environment. In-situ structural, chemical, and magnetic characterization of nanostructures by combining STM with X-rays Characterization topic.

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    1. In-situ structural, chemical, and magnetic characterization of nanostructures by combining STM with X-rays. In he received the Price of the Spanish Association of Scientists for his contributions in the area of Materials Sciences, and he was appointed Fellow of the American Physical Society.

    2. Pulsed laser deposition inside the Physical Growth Techniques topic Lithography and nanopatterning topic.

    3. His current research interests are the structural characterization of self-assembly processes in mesoporous materials, bio-mineralization, bio-membranes, as well as the nucleation and growth of nanoparticles. The support will never exceed the actual costs incurred.