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of multifunctional soft robotic systems Track 2: Soft optical actuator and network Design and fabrication of high-performance soft optical actuator Design, modeling, and fabrication of soft optical network for light
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(protein-protein and protein-DNA interactions). Produce stable complexes between proteins and/or DNA. Determine structures of proteins/complexes. Design mutants and perturbations for in vivo experiments
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physicists are adopting machine learning to explore complex quantum systems, opening doors to advancements in fields like materials science and quantum chemistry. Similarly, quantum physicists are exploring
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Invasion Research Network (MIREN ). Project description The biodiversity crisis is in part driven by invasive species, yet many non-natives are only recognized as invasive once they are widespread. A key
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of multifunctional soft robotic systems Track 2: Soft optical actuator and network Design and fabrication of high-performance soft optical actuator Design, modeling, and fabrication of soft optical network for light
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to enhance the efficiency and performance of ferroic materials. We are particularly excited to explore ferroic phase transitions and the emergence of complex configurations that cannot be captured by
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and computational resources, and close collaboration with leading academic and industrial partners. Empa supports professional development, networking opportunities, and a healthy work-life balance in a
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and computational resources, and close collaboration with leading academic and industrial partners. Empa supports professional development, networking opportunities, and a healthy work-life balance in a
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network for your future career, and be part of a laboratory with a strong track record of placing post-doctoral employees into competitive research positions and professorships. Working, teaching and
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transient cellular events into DNA and reads them out by sequencing. Computational challenges include detection of biological signals while applying Record-seq to complex in vivo environments (Schmidt