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dc.contributor.editorMartinez-Duarte, Rodrigo
dc.date.accessioned2023-05-11T17:19:33Z
dc.date.available2023-05-11T17:19:33Z
dc.date.issued2023
dc.identifierONIX_20230511_9783036573014_92
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/100075
dc.description.abstractDielectrophoresis (DEP) continues to be an effective technique for the label-free identification and manipulation of targeted particles in multiple applications. This second volume of the "Micromachines for Dielectrophoresis" series includes 13 novel contributions to the field in aspects ranging from fundamentals and theoretical modeling to applications.
dc.languageEnglish
dc.subject.classificationthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issuesen_US
dc.subject.otherdielectrophoresis (DEP)
dc.subject.othersemiconducting carbon nanotubes
dc.subject.othercarbon nanotube field-effect transistors (CNTFETs)
dc.subject.otherelectrokinetics of metallodielectric Janus particles
dc.subject.otherdipolophoresis
dc.subject.otherdielectrophoresis
dc.subject.otherinduced-charge electrophoresis
dc.subject.othertravelling waves and non-uniform fields
dc.subject.otherelectrorotation
dc.subject.otherlevitation and stability
dc.subject.othermicrofluidics
dc.subject.othersingle cell
dc.subject.othersingle bacterium
dc.subject.otherflow cytometer
dc.subject.otherelectrophoretic displays
dc.subject.otherdriving waveform
dc.subject.otherdamping oscillation
dc.subject.otherparticles separation
dc.subject.otherred saturation
dc.subject.othercell characterization
dc.subject.othercell separation
dc.subject.otherinterdigitated electrodes (IDEs)
dc.subject.otherCMOS-based lab-on-a-chip
dc.subject.othermetal droplet driving
dc.subject.otherDEP force in narrow volumes
dc.subject.othercapacitor charge cycle
dc.subject.othermicro-fluidic volumes
dc.subject.otherDEP trajectories
dc.subject.other2D and 3D modelling
dc.subject.otherDEP-induced polarizability increase
dc.subject.otherconditioned polarization
dc.subject.otherlossy dispersive materials
dc.subject.otherthermodynamics
dc.subject.otherRayleigh’s dissipation function
dc.subject.otherlaw of maximum entropy production (LMEP)
dc.subject.otherchondrocyte
dc.subject.othermechanical anisotropy
dc.subject.othertissue engineering
dc.subject.othercell patterning
dc.subject.otherBrownian dynamics
dc.subject.otherLab-on-a-chip
dc.subject.otherLangevin equation
dc.subject.otheroptical trap
dc.subject.otherClausius–Mossotti function
dc.subject.otherdielectric beta-dispersion
dc.subject.otherelectrokinetics
dc.subject.otherLorentz cavity
dc.subject.otherMaxwell cavity
dc.subject.othermolecular dynamics simulations
dc.subject.otherproteins
dc.subject.otherelectric curtain
dc.subject.otherelectrostatics
dc.subject.otherupconcentration
dc.subject.othernanoparticles
dc.subject.othersystem’s perspective
dc.subject.otherMatLab® model
dc.subject.otherDEP trajectory
dc.subject.otherLMEP
dc.subject.otherprotein dielectrophoresis
dc.subject.othervirus trapping
dc.subject.otherLOC
dc.subject.otherμTAS
dc.subject.otherforce spectroscopy
dc.subject.othern/a
dc.titleMicromachines for Dielectrophoresis, Volume II
dc.typebook
oapen.identifier.doi10.3390/books978-3-0365-7300-7
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0
oapen.relation.isbn9783036573014
oapen.relation.isbn9783036573007
oapen.pages232
oapen.place.publicationBasel


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