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Small Footprint High Flow Rate Microdevice for Rare Target Cell Capture
Author(s) -
Taehyun Park
Publication year - 2022
Language(s) - English
Resource type - Dissertations/theses
DOI - 10.31390/gradschool_dissertations.1843
Subject(s) - footprint , volumetric flow rate , computational fluid dynamics , computer science , flow (mathematics) , sample (material) , capillary action , microfluidics , materials science , biomedical engineering , nanotechnology , chemistry , engineering , chromatography , mechanics , composite material , physics , paleontology , biology

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