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the EU’s independence and resilience in food, feed and fiber production. BIOCRAFT will tackle these intertwined challenges by pioneering disruptive biotechnological solutions that deliver new climate
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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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at the department for the fabrication of such constructs are: Additive manufacturing technologies for building functional 3D scaffolds, such as 3D fiber deposition, bioprinting, and digital light processing. Advanced
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. This will be complemented by the use of fiber-optic temperature sensing in both the soil and the stream. Experimental work will be conducted in three catchments in Germany. Being part of the research unit
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health. Applicants with a biomedical research program that can establish collaborations with the UCF CREOL College of Optics and Photonics (https://creol.ucf.edu) are encouraged to apply. The successful
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at the department for the fabrication of such constructs are: Additive manufacturing technologies for building functional 3D scaffolds, such as 3D fiber deposition, bioprinting, and digital light processing. Advanced
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instrumentation for the early detection of dissipation/quench, initially through voltage measurement, but other approaches (radio frequency, optical fiber, etc.) may also be considered. These developments will be
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recyclable, non-persistent thermoset resins based on their inherent reactivity. Applications include bio-based composites with natural fibers for durable goods. Designed to be recyclable and minimize
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by developing recyclable, non-persistent thermoset resins based on their inherent reactivity. Applications include bio-based composites with natural fibers for durable goods. Designed to be recyclable