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Awarded Projects (200)
RSS![chemical](https://eurohpc-ju.europa.eu/sites/default/files/styles/oe_theme_ratio_3_2_medium/public/2023-06/Chemical%20Sciences%20and%20Materials%2C%20Solid%20State%20Physics.png?itok=fO3ZtSRk)
In the last decades, ionic liquids (ILs) and their close relatives deep eutectic solvents (DES) have increasingly attracted a huge research effort due to their varied applicability in many technological fields of societal importance.
![COMP](https://eurohpc-ju.europa.eu/sites/default/files/styles/oe_theme_ratio_3_2_medium/public/2023-06/COMPUTATIONAL%20physics.png?itok=_TQu8VCr)
How did the Earth and the other terrestrial planets form? Even though there are many models in existence that attempt to solve this question, all of them suffer from specific shortages that can only be overcome with next-generation computation facilities.
![chemical](https://eurohpc-ju.europa.eu/sites/default/files/styles/oe_theme_ratio_3_2_medium/public/2023-06/Chemical%20Sciences%20and%20Materials%2C%20Solid%20State%20Physics.png?itok=fO3ZtSRk)
Molecular diversity is ubiquitous throughout the Universe. Simple molecules (e.g., CH3OH) have been observed in star-forming regions, whose formation has been shown to occur on the ice mantles of interstellar grains.
![COMP](https://eurohpc-ju.europa.eu/sites/default/files/styles/oe_theme_ratio_3_2_medium/public/2023-06/COMPUTATIONAL%20physics.png?itok=_TQu8VCr)
Dark matter (DM) makes up about 25% of the content of the Universe in the standard cosmological model. Its existence was predicted to explain the rapid growth of structures in the Universe such as our galaxy, that ultimately led to our existence
![engineering](https://eurohpc-ju.europa.eu/sites/default/files/styles/oe_theme_ratio_3_2_medium/public/2023-06/Engineering%2C%20Mathematics%20and%20Computer%20Sciences%20%282%29.png?itok=UbpHXl4O)
This project addresses the fundamental problem of combustion noise in hydrogen flames. To reduce CO2 emissions and reach the targets of the European Green Deal agreements, hydrogen combustion is gaining momentum in the aviation and power generation industries.
![biochemistry](https://eurohpc-ju.europa.eu/sites/default/files/styles/oe_theme_ratio_3_2_medium/public/2023-06/Biochemestry.png?itok=K6JetRb0)
P-type ATPase ion pumps transport ions uphill against their chemical potential to maintain the transmembrane (TM) electrochemical potential in cells which powers vital biological functions such as neuronal signaling, energy transduction and stomach acidification.
![chemical](https://eurohpc-ju.europa.eu/sites/default/files/styles/oe_theme_ratio_3_2_medium/public/2023-06/Chemical%20Sciences%20and%20Materials%2C%20Solid%20State%20Physics.png?itok=fO3ZtSRk)
Two-dimensional (2D) materials have already revolutionized science, and have the potential to revolutionize technology due to their unique properties [1–7]. Their electronic properties range from metallic to insulating.
![COMP](https://eurohpc-ju.europa.eu/sites/default/files/styles/oe_theme_ratio_3_2_medium/public/2023-06/COMPUTATIONAL%20physics.png?itok=_TQu8VCr)
We propose to investigate, with unprecedented accuracy and abundant statistics, the critical phase of the quantum spin glass in two dimensions.
![biochemistry](https://eurohpc-ju.europa.eu/sites/default/files/styles/oe_theme_ratio_3_2_medium/public/2023-06/Biochemestry.png?itok=K6JetRb0)
Integrity of our genomic material is critical for cell survival and faithful inheritance. The newly identified Rahman syndrome (RS) is a rare genetic disease linked to frameshift mutations in the linker-histone H1.4, a critical structural constituent of chromatin, our genomic material.
![chemical](https://eurohpc-ju.europa.eu/sites/default/files/styles/oe_theme_ratio_3_2_medium/public/2023-06/Chemical%20Sciences%20and%20Materials%2C%20Solid%20State%20Physics.png?itok=fO3ZtSRk)
Main group organometallic compounds are key components in a broad range of chemical reactions, from drug synthesis to fertilizer manufacturing. However, they are characterized by fast equilibria in solution involving the solvent which makes their experimental characterisation extremely challenging.