Aktuelle Jobs im Zusammenhang mit Investigating Disorder in Crystals - Zürich, Zürich - Eidgenössische Technische Hochschule Zürich
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Zürich, Zürich, Schweiz Karlstad University VollzeitPostdoctoral Position: Local Structure of Disordered Single CrystalsETH Zürich is well known for its excellent education, ground-breaking fundamental research, and for implementing its results directly into practice.The research group of Prof. Simonov is looking for a highly motivated PostDoc researcher with expertise in either computational materials...
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Zürich, Zürich, Schweiz NZZone VollzeitProject BackgroundOur research focuses on crystals exhibiting electronic disorder, where degenerate electron configurations lead to fascinating physical phenomena. This project aims to develop novel computational frameworks to understand and predict the structure of such materials.You will work closely with Prof. Simonov and his team to develop computational...
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Zürich, Zürich, Schweiz Karlstad University VollzeitPhD Position: Modelling materials with local lattice instabilitiesETH Zürich is well known for its excellent education, ground-breaking fundamental research and for implementing its results directly into practice.The research group of Prof. Simonov at ETH Zurich is seeking a motivated PhD candidate interested in developing computational approaches for...
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Zürich, Schweiz Eidgenössische Technische Hochschule Zürich VollzeitPostdoctoral Position: Local Structure of Disordered Single CrystalsThe research group of Prof. Simonov is looking for a highly motivated PostDoc researcher with expertise in either computational materials science or experimental crystallography. The project focuses on understanding and modeling disorder in single crystals using advanced diffraction and...
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Zürich, Schweiz NZZone VollzeitThe research group of Prof. Simonov is looking for a highly motivated PostDoc researcher with expertise in either computational materials science or experimental crystallography. The project focuses on understanding and modeling disorder in single crystals using advanced diffraction and computational methods.The position is available from 2025...
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Zürich, Schweiz ETH get hired VollzeitPostdoctoral Position: Local Structure of Disordered Single Crystals100 %BrancheRegionThe research group of Prof. Simonov is looking for a highly motivated PostDoc researcher with expertise in either computational materials science or experimental crystallography. The project focuses on understanding and modeling disorder in single crystals using advanced...
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Zürich, Schweiz Karlstad University VollzeitPostdoctoral Position: Local Structure of Disordered Single CrystalsETH Zürich is well known for its excellent education, ground-breaking fundamental research and for implementing its results directly into practice.The research group of Prof. Simonov is looking for a highly motivated PostDoc researcher with expertise in either computational materials...
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Zürich, Schweiz Karlstad University VollzeitPostdoctoral Position: Local Structure of Disordered Single CrystalsETH Zürich is well known for its excellent education, ground-breaking fundamental research, and for implementing its results directly into practice.The research group of Prof. Simonov is looking for a highly motivated PostDoc researcher with expertise in either computational materials...
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Zürich, Schweiz Eidgenössische Technische Hochschule Zürich VollzeitPhD Position: Modelling materials with local lattice instabilitiesThe research group of Prof. Simonov at ETH Zurich is seeking a motivated PhD candidate interested in developing computational approaches for understanding disorder in crystalline materials.Project backgroundOur research focuses on crystals exhibiting electronic disorder, where degenerate...
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Zürich, Schweiz NZZone VollzeitThe research group of Prof. Simonov at ETH Zurich is seeking a motivated PhD candidate interested in developing computational approaches for understanding disorder in crystalline materials.Project backgroundOur research focuses on crystals exhibiting electronic disorder, where degenerate electron configurations lead to fascinating physical phenomena such as...
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Zürich, Schweiz ETH get hired VollzeitPhD Position: Modelling materials with local lattice instabilities The research group of Prof. Simonov at ETH Zurich is seeking a motivated PhD candidate interested in developing computational approaches for understanding disorder in crystalline materials. Project background Our research focuses on crystals exhibiting electronic disorder, where degenerate...
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Zürich, Schweiz Karlstad University VollzeitPhD Position: Modelling materials with local lattice instabilitiesETH Zürich is well known for its excellent education, ground-breaking fundamental research and for implementing its results directly into practice.The research group of Prof. Simonov at ETH Zurich is seeking a motivated PhD candidate interested in developing computational approaches for...
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Zürich, Schweiz Karlstad University VollzeitPhD Position: Modelling Materials with Local Lattice InstabilitiesETH Zürich is well known for its excellent education, ground-breaking fundamental research and for implementing its results directly into practice.The research group of Prof. Simonov at ETH Zurich is seeking a motivated PhD candidate interested in developing computational approaches for...
Investigating Disorder in Crystals
vor 1 Woche
We are looking for a talented PostDoc researcher to join our team at ETH Zurich. As a member of our research group, you will contribute to understanding and modeling disorder in single crystals using advanced diffraction and computational methods.
Job Description- Develop and apply machine learning approaches to model disordered crystals and simulate their diffuse scattering patterns
- Measure and analyze diffuse scattering from disordered materials on synchrotron and neutron radiation facilities
- PhD in Computer Science, Physics, Chemistry, Materials Science, or related disciplines
- Strong programming skills in Python, C++, etc.
- Experience in machine learning interatomic potentials and large-scale atomic simulations (>10,000 atoms)