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in solution for up to hours. Now, we leverage the unique abilities of nanopore trapping to detect proteins and their conformations, dynamics, interactions, catalytic mechanisms etc. in real-time
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DyeCycling to map protein energy landscapes in unprecedented detail, thereby gaining access to previously overlooked effects, like dynamic disorder, with far-ranging consequences for the design and functional
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blade aerodynamics, gust interactions, and fluid-structure interactions. The research focuses on unfolding the origin and development of unsteady flow separation and vortex formation. The lab has built a
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implant technology by designing, fabricating, and testing biomimetic, compliant metastructures made of hydrogel-ceramic nanocomposites capable of mechano-directed bone formation and designed to closely