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Volumn 74, Issue , 2009, Pages 265-268
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Exploring the innovational potential of biomimetics for novel 3D MEMS
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Author keywords
3D MEMS; Bioinspiration; Biomimetics; Click stop; Complexity; Diatoms; Emerging technologies; Form; Hinges; Interlocking devices; Learning from nature; Material; Mechanism; Multifunctional surfaces; Pumps; Springs; Structure
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Indexed keywords
BIO-INSPIRATION;
CLICK STOP;
DIATOMS;
EMERGING TECHNOLOGIES;
FORM;
INTERLOCKING DEVICES;
BIOLOGY;
BIOMIMETICS;
FUNCTIONAL MATERIALS;
HINGES;
MEMS;
MICROELECTROMECHANICAL DEVICES;
PHYTOPLANKTON;
PUMPS;
SEMICONDUCTOR QUANTUM DOTS;
TECHNOLOGICAL FORECASTING;
TECHNOLOGY TRANSFER;
THREE DIMENSIONAL;
BIOLOGICAL MATERIALS;
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EID: 73549117495
PISSN: 10226680
EISSN: None
Source Type: Book Series
DOI: 10.4028/www.scientific.net/AMR.74.265 Document Type: Conference Paper |
Times cited : (24)
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References (32)
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