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                    <title>University of Bremen - Electrodynamics</title>
                    <link>https://www.uni-bremen.de/en/hf/studies/electrodynamics</link>
                    <description>RF &amp; Microwave Engineering Laboratory, University, Bremen, Prof., Schneider, Lecture, Electrodynamics</description>
                    <language>en</language>
                    <copyright>University of Bremen</copyright>
                    <pubDate>Sat, 14 Mar 2026 01:01:37 +0100</pubDate>
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                            <pubDate>Mon, 23 Feb 2026 12:41:15 +0100</pubDate>
                            <title>01-ET-BA-ED(a)-V</title>
                            <link>https://www.uni-bremen.de/en/hf/studies/electrodynamics#c306759</link>
                            
                            <description>&amp;lt;h3&amp;gt;Summer Semester:&amp;lt;/h3&amp;gt;
&amp;lt;ul&amp;gt;&amp;lt;li&amp;gt;Tuesday, 2:00 pm - 4:00 pm (lecture)&amp;lt;br&amp;gt;&amp;lt;abbr title=&amp;quot;Naturwissenschaften 1&amp;quot;&amp;gt;NW1&amp;lt;/abbr&amp;gt;​​​​​, room H2&amp;lt;/li&amp;gt;&amp;lt;li&amp;gt;Wednesday, 1:00 pm - 3:00 pm (exercises)&amp;lt;br&amp;gt;&amp;lt;abbr title=&amp;quot;Naturwissenschaften 1&amp;quot;&amp;gt;NW1&amp;lt;/abbr&amp;gt;​​​​​, room H3&amp;lt;/li&amp;gt;&amp;lt;/ul&amp;gt;

&amp;lt;p&amp;gt;&amp;lt;abbr title=&amp;quot;Professor Doctor Engineer&amp;quot;&amp;gt;Prof. Dr.-Ing.&amp;lt;/abbr&amp;gt; Martin Schneider&amp;lt;br /&amp;gt;2+2 &amp;lt;abbr title=&amp;quot;hours&amp;quot;&amp;gt;h&amp;lt;/abbr&amp;gt; (lecture + exercises)&amp;lt;br /&amp;gt;Language: English&amp;lt;br /&amp;gt;Bachelor &amp;lt;abbr title=&amp;quot;Elektrotechnik / Informationstechnik&amp;quot;&amp;gt;ET/IT&amp;lt;/abbr&amp;gt; (6&amp;lt;sup&amp;gt;th&amp;lt;/sup&amp;gt; semester),&amp;amp;nbsp;Master &amp;lt;abbr title=&amp;quot;Communication and Information Technology&amp;quot;&amp;gt;CIT&amp;lt;/abbr&amp;gt; (1&amp;lt;sup&amp;gt;st&amp;lt;/sup&amp;gt; semester)&amp;lt;/p&amp;gt;
&amp;lt;h4&amp;gt;&amp;lt;br&amp;gt;Content:&amp;lt;/h4&amp;gt;
&amp;lt;p&amp;gt;Without Electrodynamics, without the theory of Maxwell, Faraday, &amp;lt;span lang=&amp;quot;fr&amp;quot; dir=&amp;quot;ltr&amp;quot;&amp;gt;Ampere&amp;lt;/span&amp;gt;, &amp;lt;span lang=&amp;quot;de&amp;quot; dir=&amp;quot;ltr&amp;quot;&amp;gt;Oersted&amp;lt;/span&amp;gt;, et al. about electric,magnetic, and electromagnetic phenomena like conduction, induction, and electromagnetic fields and waves, our modern world with all its achievements in electricity, electronics and communications would not exist. This course gives an understanding about the basis in the field of electrodynamics. The focus is on the discussion of Maxwell’s equations and electromagnetic wave phenomena.&amp;lt;/p&amp;gt;
&amp;lt;ul&amp;gt;&amp;lt;li&amp;gt;Mathematical background of electrodynamics (scalar and vector fields, vector operations &amp;lt;abbr title=&amp;quot;gradient&amp;quot;&amp;gt;grad&amp;lt;/abbr&amp;gt;, &amp;lt;abbr title=&amp;quot;divergence&amp;quot;&amp;gt;div&amp;lt;/abbr&amp;gt;, curl, complex notation)&amp;lt;/li&amp;gt;&amp;lt;li&amp;gt;Maxwell’s equations&amp;lt;/li&amp;gt;&amp;lt;li&amp;gt;Boundary conditions&amp;lt;/li&amp;gt;&amp;lt;li&amp;gt;Electromagnetic wave equation and their solutions&amp;lt;/li&amp;gt;&amp;lt;li&amp;gt;Polarization of electromagnetic waves&amp;lt;/li&amp;gt;&amp;lt;li&amp;gt;Poynting vector field&amp;lt;/li&amp;gt;&amp;lt;li&amp;gt;Reflection and refraction at interfaces&amp;lt;/li&amp;gt;&amp;lt;/ul&amp;gt;
&amp;lt;h4&amp;gt;&amp;lt;br&amp;gt;Examination:&amp;lt;/h4&amp;gt;
&amp;lt;p&amp;gt;written examination, 2 hours&amp;lt;/p&amp;gt;</description>
                            
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