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001     694536
005     20230209041722.0
024 7 _ |a G:(EU-Grant)731019
|d 731019
|2 CORDIS
024 7 _ |a G:(EU-Call)H2020-INFRAIA-2016-1
|d H2020-INFRAIA-2016-1
|2 CORDIS
024 7 _ |a corda__h2020::731019
|2 originalID
035 _ _ |a G:(EU-Grant)731019
150 _ _ |a European infrastructure for spectroscopy, scattering and imaging of soft matter
|y 2017-07-01 - 2021-12-31
371 _ _ |a Edinburgh Napier University
|b Edinburgh Napier University
|d United Kingdom
|e http://www.napier.ac.uk/alumni/Pages/home.aspx
|v CORDIS
371 _ _ |a ASOCIACION CENTRO DE INVESTIGACION COOPERATIVA EN BIOMATERIALES- CIC biomaGUNE
|b CIC biomaGUNE
|d Spain
|e http://www.cicbiomagune.es
|v CORDIS
371 _ _ |a University of Lille 1
|b Université Lille-3
|d France
|e http://www.univ-lille3.fr/
|v CORDIS
371 _ _ |a University of Antwerp
|b University of Antwerp
|d Belgium
|e https://www.uantwerpen.be/en/
|v CORDIS
371 _ _ |a EXACT LAB SRL
|b EXACT LAB
|d Italy
|e http://www.exact-lab.it
|v CORDIS
371 _ _ |a DENSSOLUTIONS BV
|b DENSsolutions
|d Netherlands
|e http://www.denssolutions.com
|v CORDIS
371 _ _ |a WALBERT WOLFGANG
|b WALBERT VISUELLE KOMMUNIKATION
|d Germany
|e http://www.walbert.biz
|v CORDIS
371 _ _ |a NANOSURF GMBH
|d Germany
|e http://www.nanosurf.com
|v CORDIS
371 _ _ |a SYMO-CHEM BV
|d Netherlands
|e http://www.symo-chem.nl
|v CORDIS
371 _ _ |a National Research Council
|b CNR
|d Italy
|e http://www.cnr.it/sitocnr/home.html
|v CORDIS
371 _ _ |a Paul Scherrer Institute
|b PSI
|d Switzerland
|e http://www.psi.ch/
|v CORDIS
371 _ _ |a Lunds universitet
|d Sweden
|e http://www.lu.se/
|v CORDIS
371 _ _ |a ANTON PAAR GMBH
|b ANTON PAAR GMBH
|d Austria
|e http://www.anton-paar.com
|v CORDIS
371 _ _ |a LS INSTRUMENTS AG
|b LSI
|d Switzerland
|e http://www.lsinstruments.ch
|v CORDIS
371 _ _ |a University of Bayreuth
|b University of Bayreuth
|d Germany
|e http://www.en.uni-bayreuth.de/home/index.html
|v CORDIS
371 _ _ |a Forschungszentrum Jülich
|b Forschungszentrum Jülich
|d Germany
|e https://www.ptj.de/
|v CORDIS
371 _ _ |a CR COMPETENCE AB
|b CRC
|d Sweden
|e http://www.colloidalresource.se
|v CORDIS
371 _ _ |a University of the Basque Country
|b UPV
|d Spain
|e http://www.ehu.eus/en/en-home
|v CORDIS
371 _ _ |a DWI LEIBNIZ-INSTITUT FUR INTERAKTIVE MATERIALIEN EV
|d Germany
|e http://www.dwi.rwth-aachen.de
|v CORDIS
371 _ _ |a UNIWERSYTET IM. ADAMA MICKIEWICZA W POZNANIU
|b AMU
|d Poland
|e http://www.amu.edu.pl
|v CORDIS
371 _ _ |a IDRYMA TECHNOLOGIAS KAI EREVNAS
|b FOUNDATION FOR RESEARCH AND TECHNOLOGYHELLAS
|d Greece
|e http://www.forth.gr
|v CORDIS
371 _ _ |a Swiss Federal Institute of Technology in Zurich
|b Swiss Federal Institute of Technology in Zurich
|d Switzerland
|e https://www.ethz.ch/en.html
|v CORDIS
371 _ _ |a Visitech International Limited
|d United Kingdom
|e http://www.visitech.co.uk
|v CORDIS
371 _ _ |a University De Lille
|b Université de Lille
|d France
|e https://www.univ-lille.fr
|v CORDIS
372 _ _ |a H2020-INFRAIA-2016-1
|s 2017-07-01
|t 2021-12-31
450 _ _ |a EUSMI
|w d
|y 2017-07-01 - 2021-12-31
510 1 _ |0 I:(DE-588b)5098525-5
|a European Union
|2 CORDIS
680 _ _ |a EUSMI will provide the community of European soft-matter researchers with an open-access infrastructure as a platform to support and extend their research, covering characterization, synthesis, and modeling. Where ESMI has set the standard for the past five years, EUSMI will significantly go beyond. EUSMI will enhance the European competitiveness in soft-matter research and innovation through the integration and the extension of the scope of existing specialized infrastructures. A full suite of coherent key infrastructures and the corresponding expertise from 15 top-level institutions are combined within EUSMI, which will become accessible to a broad community of researchers operating at different levels of the value chain, including SMEs and applied research. Access is offered to infrastructures covering the full chain of functional soft-matter material research, ranging from advanced material characterization by a full suite of specialized experimental installations, including large-scale facilities, chemical synthesis of a full set of soft-matter materials, upscaling of laboratory synthesis, to modeling by high-performance supercomputing. The existing infrastructure will be continuously improved by JRA to allow users to conduct research always employing the most advanced techniques and methods.. In addition, an ambitious networking programme will ensure efficient dissemination and communication, as well as continued education of established researchers and training of an emerging generation of scientist. This approach will drive academic research and innovation in soft nanotechnology by providing a multidisciplinary set of essential research capabilities and expertise to guide users, developing the next generation of techniques and instruments to synthesize, characterize, and numerically simulate novel soft matter materials and contributing to the creation of a broad knowledge basis.
909 C O |o oai:juser.fz-juelich.de:832764
|p authority:GRANT
|p authority
909 C O |o oai:juser.fz-juelich.de:832764
970 _ _ |a oai:dnet:corda__h2020::ba170220c5b91a875dcc5fa9fcf07d60
980 _ _ |a G
980 _ _ |a CORDIS
980 _ _ |a AUTHORITY


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