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  • Several aproximating formulae were derived for an apparatus, where electric field is produced by a thin straight conductor over a conducting body (the conducting body was for the purpouse of calculation replaced by a conducting plane). Using the formulae, the field strength has been calculated in detail and typical results were presented. The comparison of all the methods shows that in the area near the thin conductor any of the formulae can be used. In the vicinity of the conducting plane a difference exists.
  • Several aproximating formulae were derived for an apparatus, where electric field is produced by a thin straight conductor over a conducting body (the conducting body was for the purpouse of calculation replaced by a conducting plane). Using the formulae, the field strength has been calculated in detail and typical results were presented. The comparison of all the methods shows that in the area near the thin conductor any of the formulae can be used. In the vicinity of the conducting plane a difference exists. (en)
  • Several aproximating formulae were derived for an apparatus, where electric field is produced by a thin straight conductor over a conducting body (the conducting body was for the purpouse of calculation replaced by a conducting plane). Using the formulae, the field strength has been calculated in detail and typical results were presented. The comparison of all the methods shows that in the area near the thin conductor any of the formulae can be used. In the vicinity of the conducting plane a difference exists. (cs)
Title
  • Approximation of strong electric field
  • Approximation of strong electric field (en)
  • Approximation of strong electric field (cs)
skos:prefLabel
  • Approximation of strong electric field
  • Approximation of strong electric field (en)
  • Approximation of strong electric field (cs)
skos:notation
  • RIV/46747885:24220/09:#0001368!RIV10-GA0-24220___
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  • P(GD102/08/H081)
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  • 303928
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  • RIV/46747885:24220/09:#0001368
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  • Electrostatic field, mirror method, field of finite length conductor, conducting plane, electrostatic probe (en)
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  • [1A224DF4E5A2]
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  • Cheb
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  • Liberec
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  • Non-standard Application of Physical Fields – Analogy, modeling, verification and simulation
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  • Košek, Miloslav
  • Richter, Aleš
  • Malík, Michal
  • Primas, Jiří
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number of pages
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  • Technická univerzita v Liberci
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  • 978-80-7372-561-7
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  • 24220
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