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experience in remote sensing and programming is a plus (e.g., using QGIS or R) Good communication skills Ability to work in a team Your tasks You will conduct research on the use of remote sensing data
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(TV-L Brandenburg). Background: Addressing climate change and biodiversity loss requires a deep understanding of global land-use dynamics and the economic trade-offs involved. We aim to develop and
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In order to optimise our website for you, we use cookies that are necessary for technical operation. Other cookies are only set with your consent, for example to make external content available. You
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, specifically battery prototypes. What you will do Multiscale modelling to better understand RFB behavior and identify optimal hierarchical shaped pore- and electrode-structure to encounter optimum electrolyte as
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duration Payment is according to the wage agreement of the civil service TV-L, 65% of E13 for PhD student positions and 100% of E13 for Postdoc positions. Please note that there are no additional
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highly desirable. As an international research institution, we require a willingness to work in a team and to network with scientific institutes and industrial partners, as well as confidence in the use
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Max Planck Institute for Dynamics of Complex Technical Systems, Magdeburg | Magdeburg, Sachsen Anhalt | Germany | 20 days ago
-forms back to NH3 with the use of green electrons and water can contribute to fixed-N recycling concepts and inhibit the accumulation of reactive-N-species in the ecosystem. Meanwhile, the increasing
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suitable for part-time employment. Starting date: 10.09.2025 Job description: You will have the following tasks: Modelling, design and simulation of shape memory alloy (SMA) microrobots Design and simulation
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suitable for part-time employment. Starting date: 10.09.2025 Job description: You have the following tasks: Design and fabricate microchannels within superelastic SMA materials Material characterization
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batteries (RFB), enabling affordable and durable long-duration energy storage. The approach is to use hierarchical structures, i.e. complex material layers that can be optimized to specific battery