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The Quantitative Genetics research group is interested in developing statistical genomics toolboxes to decipher the genetic architecture of important crop traits, such as grain yield, adaptation
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-relevant properties such as thermal stability, controlled stochasticity, switching dynamics and compatibility with neuromorphic architectures. The goal is to build and validate an automated multiscale
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evaluate usability of system architectures such as Retrieval-Augmented Generation (RAG) for data retrieval and knowledge inference - implementation of your machine learning pipeline in Python (using e.g
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leap in devices, computing architecture, and integration technologies. As digital computing struggles to keep up with the growing demand, in MINDnet will investigate neuromorphic computing as a promising
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22.01.2026, Academic staff This PhD position focuses on developing resilient ISAC architectures. This project aims to implement, test, and demonstrate resilience strategies that enhance ISAC system
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The exponential surge in artificial intelligence (AI), internet traffic, and online services demands a revolutionary leap in devices, computing architecture, and integration technologies. As digital computing
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Senckenberg Gesellschaft fuer Naturforschung | Frankfurt am Main, Hessen | Germany | about 1 month ago
of this project is to uncover the detailed regulatory architecture that emerged with the evolution of subsociality and controls complex interactions between parents and offspring. The project will be in close
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development. Using cutting-edge technologies, the project aims to investigate how three-dimensional changes in PU.1 chromatin architecture influence cell fate decisions and leukemia development. Applicants
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Helmholtz Zentrum München - Deutsches Forschungszentrum für Gesundheit und Umwelt | Stein bei N rnberg, Bayern | Germany | about 1 month ago
platform Implement and optimize system architectures, including optical setups, control systems, and measurement pipelines Characterize, benchmark, and iteratively improve system performance using advanced
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independently in 10 beetle families, with a single transition to eusociality (the ambrosia beetle, Austroplatypus incompertus). The aim of this project is to uncover the detailed regulatory architecture