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Max Planck Institute for Dynamics of Complex Technical Systems, Magdeburg | Magdeburg, Sachsen Anhalt | Germany | about 10 hours ago
qualifications Strong foundation in Computational Chemistry, Theoretical Chemistry, or Molecular Modeling Proficiency in coding and scripting languages such as Python, R, or similar, as well as experience with
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‘Course Search’ to identify your programme of study: Search for the ‘Course Title’ using the programme code: 8821F Please leave the Research Area blank Select ‘PhD Physics Theoretical (full time) as the
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strong partnership between leading UK groups in 2D materials, theoretical physics and applied photonics, ensuring interdisciplinary expertise and excellent training for the researcher. Project specific
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to critically analyse theoretical texts. You have a fluent writing style. You are able to work independently, but also in a team and you show sufficient initiative. You are able to successfully complete a
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) on the topic “Multilayered 2D cuprate artificial heterostructures” Project Overview: As theoretical proposals for realizing more complex devices using superconducting cuprate twisted architectures exhibiting
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and physical experimentation complemented and guided by theoretical modelling done by partner PhD in project. The RecyWax+ research team is composed of materials chemists in the Physical Chemistry lab
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About the Project The future power grid will be a highly complex cyber-physical system, integrating multiple distributed energy resources (DERs) such as solar, wind, marine, and bioenergy alongside
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science. Application process: For further details on the scholarship and on the application requirements and process, follow the link below https://www.ucd.ie/spire/study/prospectivephdstudents
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develop new theoretical frameworks to understand the root causes of active morphing in two-dimensional membrane-like structures and to explore strategies for achieving desired shapes. A key aspect of the
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modulation in 3D. Responsibilities and qualifications Your responsibilities will be to investigate the chemistry in the 3D printing process with emphasis on initiators and inhibitors covering both