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combines single-molecule magnetic tweezers and fluorescence-coupled optical tweezers to directly manipulate and visualize individual chromatin fibers, revealing structural transitions that cannot be resolved
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and devices. This PhD project will leverage Dynamic TEM (DTEM) to directly visualize irreversible microstructural changes in materials in real time, capturing transformations on timescales ranging from
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models, parameter estimation and model validation). Documented knowledge and experience in data analysis and scientific computing (such as proficiency in Python/R/MATLAB, data visualization, machine
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XR Job description Navigating complex public transportation environments is an enormous challenge for many individuals with visual, hearing, motor, or cognitive disabilities, limiting
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-static beamforming methods, and semi-tomographic reconstruction algorithms that enable high-quality 3D visualization of the abdominal aorta. In addition, you will develop algorithms for segmentation
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communication formats and sustainability visuals. Conduct consumer choice experiments, behavioural studies, and focus group discussions to evaluate the effectiveness of sustainability communication tools. Publish
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at the Visual Optics Lab Antwerp (VOLANTIS) on the preparation and defence of a PhD thesis in the field of Optometry and Ophthalmology. The project involves developing a mathematical model of human eye
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training through high-fidelity 3D visualization (PhD 5). The vacant research position corresponds to the abovementioned ‘PhD 1’ in the FireRisk project. More specifically, you will combine spatial data
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) conferences. You will contribute to teaching activities (max 10%) within the department. Where to apply Website https://www.academictransfer.com/en/jobs/362546/phd-geosocial-worlds-territoria… Requirements
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computing using clusters like UPPMAX and GPUs for high-performance computing are essential. While not required, experience in genetic and omics data analysis and visualization, and familiarity with network