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Selected Papers from the ISTEGIM'19: Thermal Effects in Gas flow in Microscale

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

femtosecond laser micromachining; high order harmonic generation; de laval gas micro nozzle; attosecond science; thermal effects; substrate conductivity; absorptive heating; evaporative cooling; vapor pressure difference; reduced model; LMTD method; conjugate heat transfer (CHT); compressible fluid; maldistribution; gas–surface interaction; thermal accommodation coefficient; vacuum; experimental study; optical signals monitoring; air–water flows; slug velocity; slug frequency; rarefied gas; accommodation coefficient; molecular dynamics (MD) simulation; Ar–Au interaction; He–Au interaction; mixing rules; ab-initio potentials; micro channel; wire-net perturbators; s-shaped perturbators; high-temperature heat exchangers; surface scanning optics; Raman; near infrared; middle infrared imaging; scanning; multimodal spectroscopy; local reaction control techniques; microchannel; cryogenics; MATLAB®; numerical thermal analysis; cryocooler; regenerator; optimization; ANSYS Fluent; slip velocity; channel flow; molecular tagging velocimetry; metal-oxide-semiconductor (CMOS)-based fluorescence sensing; light emitting diode (LED)-induced fluorescence; SU-8 2015 waveguide; silicon fluidic cell; 3,5–diacetyl-1,4-dihydrolutidine (DDL); n/a

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-0365-0101-7

País de edición

Suiza