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http://localhost:8080/xmlui/handle/123456789/147891
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DC Field | Value | Language |
---|---|---|
dc.contributor.author | Sonia Bhonchal Bhardwaj | |
dc.date.accessioned | 2022-05-03T09:54:08Z | - |
dc.date.available | 2022-05-03T09:54:08Z | - |
dc.date.issued | 2018 | |
dc.identifier.isbn | 9781789234749 9781789234756 | |
dc.identifier.uri | http://localhost:8080/xmlui/handle/123456789/147891 | - |
dc.language.iso | eng | |
dc.publisher | IntechOpen | |
dc.relation.isbasedon | 10.5772/intechopen.72261 | |
dc.relation.uri | https://www.intechopen.com/books/oral-microbiology-in-periodontitis | |
dc.rights.uri | CC BY-NC-ND (姓名標示-非商業性-禁止改作) | |
dc.source | DOAB | |
dc.subject.classification | Dentistry | |
dc.subject.other | thermoelectric power sensor | |
dc.subject.other | wideband | |
dc.subject.other | GaAs MMIC | |
dc.subject.other | MEMS | |
dc.subject.other | floating slug | |
dc.subject.other | back cavity | |
dc.subject.other | microwave measurement | |
dc.subject.other | MEMS | |
dc.subject.other | high temperature pressure sensors | |
dc.subject.other | AlGaN/GaN circular HFETs | |
dc.subject.other | GaN diaphragm | |
dc.subject.other | adaptive control | |
dc.subject.other | backstepping approach | |
dc.subject.other | tracking performance | |
dc.subject.other | microgyroscope | |
dc.subject.other | resonant frequency | |
dc.subject.other | resistance parameter | |
dc.subject.other | micro fluidic | |
dc.subject.other | oil detection | |
dc.subject.other | MEMS | |
dc.subject.other | microactuator | |
dc.subject.other | magnetic | |
dc.subject.other | micro-NIR spectrometer | |
dc.subject.other | scanning grating mirror | |
dc.subject.other | deflection position detector | |
dc.subject.other | dual-mass MEMS gyroscope | |
dc.subject.other | frequency tuning | |
dc.subject.other | frequency split | |
dc.subject.other | quadrature modulation signal | |
dc.subject.other | frequency mismatch | |
dc.subject.other | suspended micro hotplate | |
dc.subject.other | single-layer SiO2 | |
dc.subject.other | temperature uniformity | |
dc.subject.other | power consumption | |
dc.subject.other | infrared image | |
dc.subject.other | MEMS (micro-electro-mechanical system) | |
dc.subject.other | inertial switch | |
dc.subject.other | acceleration switch | |
dc.subject.other | threshold accuracy | |
dc.subject.other | squeeze-film damping | |
dc.subject.other | photonic crystal cavity | |
dc.subject.other | photonic crystal nanobeam cavity | |
dc.subject.other | optical sensor | |
dc.subject.other | refractive index sensor | |
dc.subject.other | nanoparticle sensor | |
dc.subject.other | optomechanical sensor | |
dc.subject.other | temperature sensor | |
dc.subject.other | Accelerometer readout | |
dc.subject.other | low noise | |
dc.subject.other | low zero-g offset | |
dc.subject.other | microfluidic | |
dc.subject.other | femtosecond laser | |
dc.subject.other | rapid fabrication | |
dc.subject.other | glass welding | |
dc.subject.other | bonding strength | |
dc.subject.other | accelerometer design | |
dc.subject.other | spring design | |
dc.subject.other | analytical model | |
dc.subject.other | gas sensor | |
dc.subject.other | micropellistor | |
dc.subject.other | microdroplet | |
dc.subject.other | pulse inertia force | |
dc.subject.other | methane | |
dc.subject.other | tetramethylammonium hydroxide (TMAH) | |
dc.subject.other | wet etching | |
dc.subject.other | silicon | |
dc.subject.other | 3D simulation | |
dc.subject.other | level-set method | |
dc.subject.other | single crystal silicon | |
dc.subject.other | anisotropy | |
dc.subject.other | vibrating ring gyroscope | |
dc.subject.other | frequency split | |
dc.subject.other | accelerometer | |
dc.subject.other | tunnel magnetoresistive effect | |
dc.subject.other | electrostatic force feedback | |
dc.subject.other | n/a | |
dc.title | Oral Microbiology in Periodontitis | |
dc.type | 電子教科書 | |
dc.classification | 醫學類 | |
Theme: | 教科書-醫學類 |
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