Record ID | marc_columbia/Columbia-extract-20221130-030.mrc:106880741:4333 |
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LEADER: 04333cam a2200649Mi 4500
001 14746120
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035 $a(OCoLC)1058180907$z(OCoLC)899156279$z(OCoLC)903973691$z(OCoLC)1080585727
037 $aTANDF_285005$bIngram Content Group
050 4 $aQD116.I57$bL43 2013
072 7 $aSCI$x013010$2bisacsh
082 04 $a543.4$223
049 $aZCUA
100 1 $aKanoun, Olfa.
245 10 $aLecture notes on impedance spectroscopy :$bmeasurement, modeling and applications /$ceditor, Olfa Kanoun, Chair for Measurement and Sensor Technology, Chemnitz University of Technology, Chemnitz, Germany. Volume 3.
260 $aBacon Raton :$bCRC Press,$c©2013.
264 1 $aBoca Raton :$bCRC Press,$c[2013]
264 4 $c©2013
300 $a1 online resource (112 pages)
336 $atext$btxt$2rdacontent
337 $acomputer$bc$2rdamedia
338 $aonline resource$bcr$2rdacarrier
490 1 $aLecture Notes on Impedance Spectroscopy ;$vv. 3
588 0 $aPrint version record.
504 $aIncludes bibliographical references and index.
505 0 $aFront Cover; Lecture Notes on Impedance Spectroscopy: Measurement, Modeling and Applications; Copyright; Table of contents; Preface; Distance measure for impedance spectra for quantified evaluations; Material characterisation of nano scale solid state electrolytes; Thermoelectrochemical investigation of silver electrodeposition from nitric and tartaric solutions; Acquisition of impedance and gravimetric data for the characterization of electrode/electrolyte interfaces; Comparison of eddy current theory and Finite Element Method for metal evaluation; Eddy current validation of Euro-coins.
505 8 $aInvestigation of infection defense using impedance spectroscopyErythrocyte orientation and lung conductivity analysis with a high temporal resolution FEM model for bioimpedance measurements; Influence of meat aging on modified Fricke model's parameter; Comparison between state of charge determination methods for lithium-ion batteries based on the measurement of impedance, voltage and coulomb counting; Microwave-assisted synthesis and properties of nanosized LiMPO4 (M = Mn, Co); Influence of nanoscaling on the electrochemical properties of LiCoO2 and TiO2.
500 $aCharacterization of CVD/ALD layers with impedance sensorsBack Cover.
520 $aImpedance Spectroscopy is a powerful measurement method used in many application fields such as electrochemistry, material science, biology and medicine, semiconductor industry and sensors. Using the complex impedance at various frequencies increases the informational basis that can be gained during a measurement. It helps to separate different effects that contribute to a measurement and, together with advanced mathematical methods, non-accessible quantities can be calculated. This book is the third in the series Lecture Notes on Impedance Spectroscopy (LNIS). The series covers new advances in.
546 $aEnglish.
588 0 $aOnline resource; title from PDF title page (ebrary, viewed February 12, 2015).
650 0 $aImpedance spectroscopy.
650 0 $aElectrochemical analysis.
650 6 $aSpectroscopie d'impédance.
650 6 $aAnalyse électrochimique.
650 7 $aSCIENCE$xChemistry$xAnalytic.$2bisacsh
650 7 $aElectrochemical analysis.$2fast$0(OCoLC)fst00906359
650 7 $aImpedance spectroscopy.$2fast$0(OCoLC)fst00968092
655 0 $aElectronic books.
655 4 $aElectronic books.
700 1 $aKanoun, Olfa,$eeditor.
711 2 $aInternational Workshop on Impedance Spectroscopy$d(2009 :$cChemnitz, Germany)
776 0 $z0415644305
830 0 $aLecture notes on impedance spectroscopy.
856 40 $uhttp://www.columbia.edu/cgi-bin/cul/resolve?clio14746120$zTaylor & Francis eBooks
852 8 $blweb$hEBOOKS