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tomography and will include using and advancing 3D/4D image quantification for such materials/data plus establishing experiment/data-analysis pipelines. You will develop your own experiments as well as working
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to: i) lead the design and creation of an experimental setup to examine fluid-structure interactions between 3D-printed models of deep sea sponges and ii) lead the formulation and analysis of finite
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variety of instruments and tools (3D motion capture, force plates, electromyography, ultrasound, metabolic energy analysis).· Ensure data quality of biomechanics-related testing.· Perform data analyses and
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variety of instruments and tools (3D motion capture, force plates, electromyography, ultrasound, metabolic energy analysis).· Ensure data quality of biomechanics-related testing.· Perform data analyses and
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. Knowledge of geoinformation technologies, 3D building modelling (BIM), and AI applications Knowledge of R and Python—especially spatial data science techniques Analytical and process-oriented thinking as
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spectroscopy Should have working knowledge of optics, electronics, 3D experimental design (e.g., CAD) and coding languages (e.g., Python) Should be willing to train users of spectroscopic and experimental
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