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Field
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development of alternative methods to animal testing for biomedical and toxicological applications Establishment of 2D cell culture and 3D organoid models and integration to microphysiological systems in
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REQUIREMENTS The Department of Mechanical Engineering is seeking a research assistant under the direct supervision of Dr. Amrita Basak. Job Duties: Perform experiments and characterize wire-powder 3D printed
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tools (e.g. Flow-3D), and keen to develop both technical and communication skills. Funding and Benefits The studentship includes: Full tuition fees A tax-free bursary of up to £25,000/year Access
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scenarios as typically encountered by UK mountain rescue teams and apply innovative biomechanical analysis using Bournemouth University ’s in-vivo 3D motion tracking technology to determine residual motion of
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and motion of hand captured by 3D/4D scanning to the mechanics of the textiles for exoskeleton design. 2. Build and experimentally evaluate textile exoskeletons using lab-based motion capture, pressure
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Raman systems. Demonstrated hands-on experience with rapid prototyping (PCB design, laser cutting, 3D printing) and middleware development to interconnect measurement systems. Experience integrating
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diabetes. Your job Biofabrication is a relatively young field in which 3D fabrication technologies are used to generate living tissues by precisely patterning cells and biomaterials. In this project, funded
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-material capability with a suitable closure model; (2) improved strategy for interface tracking/capturing; (3) very high-speed scenarios with use of nonlinear Riemann-solvers. If time allows exploratory 3D
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Tomography (CT) – two key NDT techniques used to inspect metallic and composite materials. These methods generate large 3D datasets that can be difficult for human experts to analyze manually, increasing
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also a pioneer in in situ 3D ED studies, as will be important in this project. More about us at our webpage . Position You will design and fabricate lithographically etched sample supports and MEMS