LEADER 00967nam a2200289 i 4500 001 991001016739707536 005 20020507181713.0 008 970423s1958 us ||| | eng 020 $a0471846451 035 $ab10789480-39ule_inst 035 $aLE01305789$9ExL 040 $aDip.to Matematica$beng 082 0 $a515.7 084 $aAMS 46-01 084 $aAMS 46-XX 100 1 $aTaylor, Angus Ellis$0534495 245 10$aIntroduction to functional analysis /$cAngus E. Taylor 260 $aNew York ;$c1958 300 $aix, 423 p. ;$c23 cm 650 0$aFunctional analysis 650 0$aFunctional analysis$xTextbooks 907 $a.b10789480$b03-07-14$c28-06-02 912 $a991001016739707536 945 $aLE013 46-XX TAY11 (1958)$g1$i2013000080482$lle013$o-$pE0.00$q-$rl$s- $t0$u4$v2$w4$x0$y.i1088998x$z28-06-02 996 $aIntroduction to functional analysis$9921311 997 $aUNISALENTO 998 $ale013$b01-01-97$cm$da $e-$feng$gus $h0$i1 LEADER 03056nam 2200865z- 450 001 9910557730503321 005 20210501 035 $a(CKB)5400000000046018 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/68259 035 $a(oapen)doab68259 035 $a(EXLCZ)995400000000046018 100 $a20202105d2021 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aMicrofluidics for Biosensing and Diagnostics 210 $aBasel, Switzerland$cMDPI - Multidisciplinary Digital Publishing Institute$d2021 215 $a1 online resource (114 p.) 311 08$a3-0365-0062-6 311 08$a3-0365-0063-4 330 $aEfforts to miniaturize sensing and diagnostic devices and to integrate multiple functions into one device have caused massive growth in the field of microfluidics and this integration is now recognized as an important feature of most new diagnostic approaches. These approaches have and continue to change the field of biosensing and diagnostics. In this Special Issue, we present a small collection of works describing microfluidics with applications in biosensing and diagnostics. 606 $aHistory of engineering and technology$2bicssc 610 $aacoustofluidics 610 $aaminoglycosides 610 $abiomolecules 610 $abiosensor 610 $acavitation 610 $aCMOS biosensor 610 $acolorimetry 610 $aconformational states 610 $adiagnostic 610 $adielectrophoretic immobilization 610 $adroplet 610 $adynamic flow 610 $afinite difference method 610 $aGMR sensor 610 $ahybrid integration 610 $ainitiation of flow 610 $alab-on-chip 610 $amicrodroplets 610 $amicrofluidic 610 $amicrofluidic probe 610 $amicrofluidics 610 $amicromixing 610 $aMicrosoft Excel 610 $aNavier-Stokes 610 $anumerical techniques 610 $aoptical absorbance 610 $aopto-mechanics 610 $aphoto-isomerisation 610 $aphotokinetics 610 $apoint-of-care 610 $aPoiseuille flow 610 $asalivary potassium 610 $asampling 610 $asize and mobility traps (SMT) 610 $aTaylor dispersion 610 $atherapeutic drug monitoring (TDM) 610 $atime dependent flow 610 $awhole cell 615 7$aHistory of engineering and technology 700 $aInglis$b David W$4edt$01319359 702 $aWarkiani$b Majid Ebrahimi$4edt 702 $aQasaimeh$b Mohammad A$4edt 702 $aChen$b Weiqiang$4edt 702 $aInglis$b David W$4oth 702 $aWarkiani$b Majid Ebrahimi$4oth 702 $aQasaimeh$b Mohammad A$4oth 702 $aChen$b Weiqiang$4oth 906 $aBOOK 912 $a9910557730503321 996 $aMicrofluidics for Biosensing and Diagnostics$93033822 997 $aUNINA