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, including photolithographic microfabrication and diverse 3D printing techniques, will be explored. Likewise, various characterization methods will be used, including electrochemistry, chemical/fluorescence
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). The work duties includes: System level photonic engineering Computer Aided Design (CAD) and 3D printing Circuitry, simulations and PCBs Testing and calibrations in laser remote sensing and spectroscopy Field
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therapy applications. Various materials and fabrication methods, including photolithographic microfabrication and diverse 3D printing techniques, will be explored. Likewise, various characterization methods
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highly valued, as well as prior experience working with various cell lines and studying cell-cell junctions. It is beneficial if the applicant has experience using Matlab and 3D printing, as
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engineering solutions for current industrial sustainability challenges, for instance, research related to electrification of the transport sector, sustainable manufacturing via additive manufacturing (3D
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sector, sustainable manufacturing via additive manufacturing (3D printing) and development of experimental methodology and analysis for effective evaluation of advanced high-throughput experiments. More
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, for instance, research related to electrification of the transport sector, sustainable manufacturing via additive manufacturing (3D printing) and development of experimental methodology and analysis
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sector, sustainable manufacturing via additive manufacturing (3D printing) and development of experimental methodology and analysis for effective evaluation of advanced high-throughput experiments. Link
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sustainability challenges, for instance, research related to electrification of the transport sector, sustainable manufacturing via additive manufacturing (3D printing) and development of experimental methodology
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generation using MOFs. The project mainly involves the synthesis and characterization of existing and new MOFs, as well as the development of post-synthesis processing methods such as 3D printing and the