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| 001 | on1047524929 | ||
| 003 | OCoLC | ||
| 005 | 20210822114318.0 | ||
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_a102158 _bKnowledge Unlatched |
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_aTBMM _2bicssc |
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_a535/.8 _223 |
| 049 | _aMAIN | ||
| 245 | 0 | 0 |
_aImpedance spectroscopy : _badvanced applications : battery research, bioimpedance, system design / _cedited by Olfa Kanoun. |
| 264 | 1 |
_aBerlin ; _aBoston : _bWalter de Gruyter, _c[2018] |
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| 300 | _a1 online resource (xvi, 187 pages) | ||
| 336 |
_atext _btxt _2rdacontent |
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| 337 |
_acomputer _bc _2rdamedia |
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| 338 |
_aonline resource _bcr _2rdacarrier |
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| 504 | _aIncludes bibliographical references. | ||
| 505 | 0 | 0 |
_tFrontmatter -- _tPreface -- _tContents -- _tList of Contributing Authors -- _tImpedance spectroscopy advances and future trends: A comprehensive review / _rKanoun, Olfa -- _tPart I: Electrochemical and physical phenomena -- _tStudy of the humidity effect on the electrical impedance of MWCNT epoxy nanocomposites / _rSanli, Abdulkadir / Benchirouf, Abderrahmane / Mèuller, Christian / Kanoun, Olfa -- _tTemperature influence on impedance of premium summer diesel fuel measured with the use of impedance spectroscopy / _rMacioszek, Lukasz / Rybski, Ryszard -- _tA study of the effect of short-term relaxation on the EIS test technique for EV battery cells / _rBarai, Anup / McGorden, Andrew / Jennings, Paul -- _tHumidity sensitivity investigation of reduced graphene oxide by impedance spectroscopy / _rAl-Hamry, Ammar / de Torres, Renato Veiga / Mèuller, Christian / Kanoun, Olfa -- _tImpedance study of Ni-Cr alloy in contact with biologic and organic solution using constant phase element / _rLeguedani, Noureddine / Hafid, My Mustapha / el Idrissi, Siham Yazami / Kessad, Yousra -- _tPart II: Measurement systems -- _tInfluence of the settling behavior on the measurement uncertainty of EIS and how to decrease the measurement duration / _rBaumhèofer, Thorsten / Rothgang, Susanne / Sauer, Dirk Uwe -- _tMixed-level simulation tool for design optimization of electrical impedance spectroscopy systems / _rLamlih, Achraf / Kerzâerho, Vincent / Bernard, Serge / Soulier, Fabien / Comte, Mariane / Renovell, Michel / Rouyer, Tristan / Bonhommeau, Sylvain -- _tA highly scalable FPGA implementation for cross-correlation with up-sampling support / _rSchmidt, Renâe / Blokzyl, Stephan / Hardt, Wolfram -- _tInterface circuit for oil quality assessment considering dielectric losses and stray capacitances / _rFendri, Ahmed / Jribi, Racem / Kanoun, Olfa / Ghariani, Hamadi -- _tPart III: Sensors -- _tModeling for improved performance of non-contacting capacitive sensors for detecting aqueous solutions / _rWeber, Christian / Tahedl, Markus / Kanoun, Olfa -- _tEddy current corrosion measurement of steel / _rMèartens, Olev / Land, Raul / Min, Mart / Rist, Marek / Ferenets, Marju / Kèasper, Andres -- _tFirst measurements with a radiation hard relative humidity sensor for the ATLAS Experiment / _rTobehn-Steinhèauser, Ingo / Kersten, Susanne / Stauffenberg, Jaqueline / Wèunscher, Heike / Zeitnitz, Christian / Ortlepp, Thomas -- _tCNT-enhanced carbon electrode for nitrite detection and water analysis / _rWendler, Frank / Aurosmit, Paul / Kanoun, Olfa -- _tPart IV: Bioimpedance measurements and methods -- _tEnergy-efficient pulses for deep brain stimulation / _rGordon, Rauno / Min, Mart / Land, Raul -- _tHow many frequencies to use in electrical bioimpedance measurements / _rOjarand, Jaan / Land, Raul / Min, Mart / Rist, Marek -- _tA method of intra-ventricular bioimpedance spectroscopy to estimate the dynamic volume of right ventricle / _rKink, Andres / Rist, Marek / Land, Raul / Käoiv, Hip / Min, Mart |
| 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 covers new advances in the field of impedance spectroscopy including fundamentals, methods and applications. It releases scientific contributions from the International Workshop on Impedance Spectroscopy (IWIS) as extended chapters including detailed information about recent scientific research results. The book includes typically subsections on: Fundamental of Impedance Spectroscopy Bio impedance Techniques and Applications Impedance Spectroscopy for Energy Storage Systems Sensors Based on Impedance Spectroscopy Measurement systems Excitation Signals Modeling Parameter extraction. | ||
| 542 | 1 |
_fThis work is licensed under a Creative Commons license _uhttps://creativecommons.org/licenses/by-nc-nd/4.0/legalcode |
|
| 588 | 0 | _aOnline resource; title from digital title page (viewed on February 21, 2019). | |
| 590 | _aAdded to collection customer.56279.3 | ||
| 650 | 0 |
_aImpedance spectroscopy _xIndustrial applications. _916695 |
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_aMaterials _xTesting. _94073 |
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_aEngineering measurement & calibration. _2bicssc _916696 |
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_aMaterials _xTesting. _2fast _0(OCoLC)fst01011882 _94073 |
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| 655 | 4 | _aElectronic books. | |
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_aKanoun, Olfa, _eeditor. _916697 |
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_iPrint version: _tImpedance spectroscopy advanced applications. _dBerlin ; Boston : Walter de Gruyter, [2018] _z9783110557121 _w(DLC) 2018030273 |
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_3EBSCOhost _uhttps://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=2012028 |
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