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MARC Record from marc_columbia

Record ID marc_columbia/Columbia-extract-20221130-031.mrc:445436231:3430
Source marc_columbia
Download Link /show-records/marc_columbia/Columbia-extract-20221130-031.mrc:445436231:3430?format=raw

LEADER: 03430cam a2200553 i 4500
001 15440610
005 20210727123945.0
008 200809s2020 nyua b 001 0 eng
010 $a 2020032428
024 $a99987174583
035 $a(OCoLC)on1178640313
040 $aLBSOR/DLC$beng$erda$cDLC$dOCLCO$dOCLCF$dYDX
020 $a9781536184051$qpaperback
020 $a1536184055$qpaperback
020 $z9781536184259$qadobe electronic book
035 $a(OCoLC)1178640313
042 $apcc
050 00 $aQC243$b.A23 2020
082 00 $a534/.2$223
245 00 $aAcoustic waves :$bproperties and measurement /$cLucas S. Lorenzen, editor.
264 1 $aNew York :$bNova Science Publishers,$c[2020]
300 $ax, 175 pages :$billustrations;$c23 cm.
336 $atext$btxt$2rdacontent
337 $aunmediated$bn$2rdamedia
338 $avolume$bnc$2rdacarrier
490 1 $aPhysics research and technology
504 $aIncludes bibliographical references and index.
505 0 $aMeasurement and analysis of acoustic signal in liquid-filled pipes / Matjaž Prek -- Adaptive time-domain analysis of acoustic waves / Delfim Soares Jr. -- Extension of acoustic impedance methods to the analysis of the electrostatic transduction of plate acoustic waves / Bernard Dulmet, Lilia Arapan and Mihaela-Eugenia Ivan -- Method of geometric acoustics in the theory of magnetoacoustic waves / Badma Mikhalyaev.
520 $a"Acoustic signal analysis is commonly used for non-invasive pipeline condition assessment and diagnosis. Considering that pipeline systems are made of different materials ranging from steel to polymers, the analysis method is also contingent on the vibroacoustic properties of the pipe wall material. In this compilation, an adaptive, locally defined time marching technique is presented to analyze wave propagation models. The methodology is based on two time integration parameters, namely [alpha] and [gamma]. Additionally, the authors present recent improvements in acoustic impedance methods to describe the transduction and propagation of guided elasticwaves in MEMS devices electrostatically actuated through thin air-gaps. The closing study focuses on the way in which the Lorentz force acting on a continuous medium from the side of the magnetic field has a significant effect on the behavior of magnetoacoustic waves"--$cProvided by publisher.
650 0 $aSound-waves.
650 0 $aSound$xMeasurement.
650 0 $aPipelines$xInspection.
650 0 $aSignal processing.
650 0 $aTime-domain analysis.
650 0 $aAcoustic impedance$xMeasurement.
650 0 $aPlasma waves.
650 0 $aAcoustical engineering.
650 7 $aAcoustic impedance$xMeasurement.$2fast$0(OCoLC)fst00795908
650 7 $aAcoustical engineering.$2fast$0(OCoLC)fst00795936
650 7 $aPipelines$xInspection.$2fast$0(OCoLC)fst01064665
650 7 $aPlasma waves.$2fast$0(OCoLC)fst01066365
650 7 $aSignal processing.$2fast$0(OCoLC)fst01118281
650 7 $aSound$xMeasurement.$2fast$0(OCoLC)fst01126950
650 7 $aSound-waves.$2fast$0(OCoLC)fst01127077
650 7 $aTime-domain analysis.$2fast$0(OCoLC)fst01151183
700 1 $aLorenzen, Lucas S.,$eeditor.
776 08 $iOnline version:$tAcoustic waves$dNew York : Nova Science Publishers, [2020]$z9781536184259$w(DLC) 2020032429
830 0 $aPhysics research and technology.
852 00 $boff,sci$hQC243$i.A23 2020