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        <title type="main">Elettromagnetismo</title>
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            <forename>Stefano</forename>
            <surname>Selleri</surname>
            <placeName type="affiliation">University of Florence, Italy</placeName>
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        <publisher>Firenze University Press</publisher>
        <pubPlace>Florence</pubPlace>
        <date when="2024">2024</date>
        <idno type="DOI">https://doi.org/10.36253/979-12-215-0478-1</idno>
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          <p>Available for academic research purposes</p>
          <p>Copyright Firenze University Press</p>
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        <title>Manuali – Scienze Tecnologiche</title>
        <idno type="ISSN" subtype="print">2704-6141</idno>
        <idno type="ISSN" subtype="electronic">2704-6095</idno>
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          <date>2024</date>
          <idno type="ISBN" subtype="electronic">979-12-215-0471-2</idno>
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          <date>2024</date>
          <idno type="ISBN" subtype="electronic">979-12-215-0478-1</idno>
          <biblScope unit="page">438 pages</biblScope>
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          <edition n="3">Print edition</edition>
          <date>2024</date>
          <idno type="ISBN" subtype="print">979-12-215-0469-9</idno>
          <biblScope unit="page">438 pages</biblScope>
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            <p>It is available for online purchase at <ref target="https://books.fupress.com/isbn/9791221504781">https://books.fupress.com/isbn/9791221504781</ref></p>
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      <abstract xml:lang="en">
        <p>The book provides an understanding of the basics of electromagnetics for the bachelor course in Biomedical and Electronics Engineering. Topics covered include: Maxwell's equations; static electric and magnetic fields; electromagnetic properties of materials; energy and power associated with electromagnetic fields; plane waves in free space and in homogeneous or inhomogeneous, multilayered materials; transmission line theory; the Smith chart; and load-line matching.
The book also details aspects more relevant to bioelectromagnetism, such as models and properties of biological materials and the biological effects of time-varying electromagnetic fields.
The book equips readers with the necessary competencies to attend subsequent courses in Electromagnetic Engineering and Bioelectromagnetics.</p>
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      <abstract xml:lang="it">
        <p>Il volume fornisce le basi di elettromagnetismo per il corso di laurea in Ingegneria Biomedica ed Elettronica. Gli argomenti trattati sono: equazioni di Maxwell; campi elettrici e magnetici statici; proprietà elettromagnetiche dei materiali; energia e potenza associata ai campi elettromagnetici; onde piane nello spazio libero, in materiali omogenei o disomogenei multistrato; teoria delle linee di trasmissione; carta di Smith; adattamento linea-carico.
Presenta poi alcuni aspetti più rilevanti per le applicazioni bioelettromagnetiche, quali i modelli e le proprietà dei materiali biologici e gli effetti biologici dei campi elettromagnetici tempovarianti.
Il libro fornisce al lettore le competenze necessarie per frequentare i successivi corsi di Ingegneria Elettromagnetica e Bioelettromagnetismo.
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            <item>Maxwell’s Equations</item>
            <item>Electromagnetic Propagation</item>
            <item>Plane Waves</item>
            <item>Transmission Lines</item>
            <item>Bioelectromagnetics</item>
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      <p>It is available online at https://doi.org/10.36253/979-12-215-0478-1<ref target="https://doi.org/10.36253/979-12-215-0478-1" /></p>
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          <head>References</head>
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            <bibl>J.C. Maxwell, “A Dynamical Theory of the Electromagnetic Field”, Philosophical Transactions of the Royal Society of London, Vol. 155, pp. 459-512, 1865.</bibl>
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            <bibl>J.-H. Park, C.-S. Kim, B.-C. Choi, K.-Y. Ham, “The correlation of the complex dielectric constant and blood glucose at low frequency,” Biosensors and Bioelectronics, vol. 19, 2003, pp. 321-324.</bibl>
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          <bibl n="167492">W.R. Hamilton, “On Differences and Differentials of Functions of Zero,” Trans. Royal Irish Acad., Vol. XVII, 1837, pp. 236-237</bibl>
          <bibl n="167503">P.G. Tait, An Elementary Treatise on Quaternions, Clarendon Press, Oxford, UK, 1867.</bibl>
          <bibl n="167494">W.R. Hamilton ``On Quaternions; or on a new System of Imaginaries in Algebra,&amp;#39;&amp;#39; Letter to John T. Graves. 17 October 1843.</bibl>
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          <bibl n="167493">C.-T. Tai “A survey on the improper uses of ∇ in vector analysis,” Tech. Rep. RL 909 Rad. Lab. Univ. Of Michigan, Nov. 1994.</bibl>
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            <bibl>J. Grund, K.-W. Rathjen, C. Radel, M. Stiemer, S. Dickmann, “Planar Multilayer Model of Human Tissue Exposed to Plane Electromagnetic Wave,” IEEE J. of Electromagnetics, RF and Microwaves in Medicine and Biology, Vol. 5, Dec. 2021, pp. 305-312.</bibl>
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