idw – Informationsdienst Wissenschaft

Nachrichten, Termine, Experten

Grafik: idw-Logo
Science Video Project
idw-Abo

idw-News App:

AppStore

Google Play Store



Instanz:
Teilen: 
07.04.2022 09:15

Computer simulations and Artificial Intelligence - a "booster" for molecular research

Dr. Peter Saueressig Kommunikation
Heidelberger Institut für Theoretische Studien gGmbH

    In the new "SIMPLAIX" collaboration, researchers from HITS, Heidelberg University, and Karlsruhe Institute of Technology (KIT) are addressing challenges in the simulation of biomolecules and molecular materials by pooling their expertise in multiscale computer simulation and machine learning. The collaboration is funded by the Klaus Tschira Foundation.

    Molecular mechanisms and the rational design of molecules and materials for specific applications have traditionally been explored using physics-based modeling and simulations. These methods have revolutionized modern science and technology. However, they reach their limits when it comes to mapping, exploring, and analyzing the infinitely complex and variable structures and properties of molecular systems over the wide range of relevant scales. Here, data-driven and machine learning methods offer a promising approach.

    This is why the Heidelberg Institute for Theoretical Studies (HITS), Heidelberg University, and the Karlsruhe Institute of Technology (KIT) have launched the SIMPLAIX collaboration. They aim to combine the expertise of the three partner institutions to address the challenges of bridging scales in simulating biomolecules and molecular materials through multiscale simulation and machine learning.

    In SIMPLAIX, these methods are being developed and employed to study a set of challenging research problems in biomolecules and molecular materials in 8 multidisciplinary, inter-institutional research projects. Examples of the topics studied include discovering the connection between collagen-related diseases and defense against radical damage, introducing machine learning for supported organic electrode materials, speeding up classical simulations or quantum chemical computations via predictions from machine learning, and predicting where inorganic and organic materials will break under force.

    SIMPLAIX is coordinated by HITS researchers Rebecca Wade and Frauke Gräter. The initiative is enabled by the Klaus Tschira Foundation and financially supported by the three institutions. During the course of the initiative, eight young researchers will be recruited for the projects. Some positions have already been filled. The official SIMPLAIX launch event will take place on April 12, 2022, at Studio Villa Bosch, Heidelberg.

    More information: www.simplaix.org

    Scientific contact:
    Prof. Dr. Rebecca Wade
    Molecular and Cellular Modeling Group (MCM)
    Heidelberg Institute for Theoretical Studies (HITS),
    https://www.h-its.org/people/prof-dr-rebecca-wade/

    Press contact:
    Dr. Peter Saueressig
    Head of Communications
    Heidelberg Institute for Theoretical Studies (HITS), Germany
    peter.saueressig@h-its.org


    Wissenschaftliche Ansprechpartner:

    Scientific contact:
    Prof. Dr. Rebecca Wade
    Molecular and Cellular Modeling Group (MCM)
    Heidelberg Institute for Theoretical Studies (HITS),
    https://www.h-its.org/people/prof-dr-rebecca-wade/


    Weitere Informationen:

    https://www.h-its.org/2022/04/07/simplaix-start/ SIMPLAIX press release
    https://www.h-its.org/research/simplaix/ SIMPLAIX homepage


    Bilder

    The SIMPLAIX logo.
    The SIMPLAIX logo.

    Image: HITS


    Merkmale dieser Pressemitteilung:
    Journalisten, Wissenschaftler
    Biologie, Chemie, Informationstechnik
    überregional
    Forschungsprojekte, Kooperationen
    Englisch


     

    The SIMPLAIX logo.


    Zum Download

    x

    Hilfe

    Die Suche / Erweiterte Suche im idw-Archiv
    Verknüpfungen

    Sie können Suchbegriffe mit und, oder und / oder nicht verknüpfen, z. B. Philo nicht logie.

    Klammern

    Verknüpfungen können Sie mit Klammern voneinander trennen, z. B. (Philo nicht logie) oder (Psycho und logie).

    Wortgruppen

    Zusammenhängende Worte werden als Wortgruppe gesucht, wenn Sie sie in Anführungsstriche setzen, z. B. „Bundesrepublik Deutschland“.

    Auswahlkriterien

    Die Erweiterte Suche können Sie auch nutzen, ohne Suchbegriffe einzugeben. Sie orientiert sich dann an den Kriterien, die Sie ausgewählt haben (z. B. nach dem Land oder dem Sachgebiet).

    Haben Sie in einer Kategorie kein Kriterium ausgewählt, wird die gesamte Kategorie durchsucht (z.B. alle Sachgebiete oder alle Länder).