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. A mathematical model will be created to link ethylene biosynthesis to its perception and signaling. The model will be validated using advanced sensors. Job requirements You will quickly develop skills
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-processing (noise-reduction, calibration) and analyzing sensor data; You work towards combining sensor fusion and inversion algorithms to interpret 3D subsurface variations; You participate in (international
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RTOS Integration of sensors and actuators, serial communication (UART, SPI, I2C), and industrial communication protocols (CAN, Modbus...) Support for Experimentation and Prototyping Setup of experimental
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construction, such as digital twins, metaverse, BIM, sensor networks for tracking data or tracing structural components and construction robotics. These will be data-driven and explore the opportunities deriving
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classification for hyperspectral and fluorescence lifetime datasets. Optimize algorithms for batch processing and scalability, enabling high-throughput, automated analysis of large image datasets from fluorescence
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of nanofabricated sample supports and tracking algorithms for 5D electron diffraction (5DED). EMAT is one of the leading electron microscopy centers in the world and has a vast expertise in both fundamental and
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-FiberSERS aims to develop an innovative lab-on-fiber sensor. This system will integrate waveguides, coupling optics, freeform-based optical trapping modules, and curved SERS substrates, all 3D-printed onto
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Postdoctoral researcher position. Mechanobiology in bioengineered neurodevelopment. Laboratory of...
materials, actuation devices, optogenetic force sensors and actuators) in order to unravel their role in brain development. Job description A postdoctoral researcher position is available in the Laboratory
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FWO-UGent funded bioinformatics postdocs: Unveiling the significance of gene loss in plant evolution
loss patterns across diverse plant lineages Explore graph-based algorithms for multiple genome alignment and ancestral karyotype reconstruction Position 2: Evolutionary Analysis and Network
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disease into specific subclasses. You will develop AI algorithms to train models that predict if individuals (from which we create circuits) are prone to develop disease and to identify conditions that have