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qualification (usually PhD). Tasks: The successful candidate will work in a team developing metal-free magnetism in graphene-related materials and organic 2-dimentional crystals by means of theoretical materials
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of the following elements: Personal data and funds requested Outline of proposal (detailed requirements as to content and page length can be found on the website) Request to invite a Visiting Fellow or experts
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PhD project: The genomes of basically all living organisms on our planet are invaded by genetic elements called transposable elements (TEs). These TEs can be considered as parasites in our genome
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metals and radionuclides. (Radio)Toxic elements like radium (226Ra) pose significant risks, often stemming from subsurface energy-related applications. 226Ra can be incorporated into carbonate minerals
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for donor-spin-qubits. Your tasks Isotope enrichment of silicon 28 using ion beams Operating focused ion beam and scanning electron microscopes Fabrication and Optimisation of liquid metal ion sources Perform
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while your application is still processed. Application documents The application procedure occurs online through the DAAD portal. Your referees should send their letters of recommendation by post to
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. Applications from people of all nationalities are welcome. Please send your application with the usual documents (at least consisting of CV, Master's degree certificate and transcript of grades from the Master's
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submitting references by post, the postmark date serves as proof that they have been dispatched on time. The DAAD portal closes at 24.00 hrs. (CET or CEST) on the last application day. Incomplete applications
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to May 25, 2025 Application Please send your application including one letter of recommendation that includes a ranking within your peer group and transcripts of records. Please use the KIT recruiting
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on the tab 'Submitting an application'. In the current application procedure, the recommendation can be sent to the DAAD by post as an alternative to uploading it on the portal. Please note the information