Universität Wien

280394 VO MA PE 06/MA PE 07: Potential Field Methods (NPI) (2018S)

Details

max. 15 participants
Language: English

Examination dates

Lecturers

Classes (iCal) - next class is marked with N

  • Thursday 01.03. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II
  • Thursday 08.03. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II
  • Thursday 15.03. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II
  • Thursday 22.03. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II
  • Thursday 12.04. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II
  • Thursday 19.04. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II
  • Thursday 26.04. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II
  • Thursday 03.05. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II
  • Thursday 17.05. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II
  • Thursday 24.05. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II
  • Thursday 07.06. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II
  • Thursday 14.06. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II
  • Thursday 21.06. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II
  • Thursday 28.06. 09:30 - 11:30 Felix-Machatschki-Seminarraum Mineralogie 2B284 2.OG UZA II

Information

Aims, contents and method of the course

Potential theory and its application in geophysics, source distribution (Newtonian potential, 1/r-function, convolution theorem, Delta-distribution, special source geometries, arbitrary sources, dipole, dipole distribution, Poisson-theorem, multi-pole distribution, magnetic induction), Green's function, Green's theorem, Boundary value problem and field continuation, field transformation in Cartesian and polar coordinate system (filtering, convolution), equivalent sources, Continuity property at discontinuities, 2D potential fields (logarithmic potential, analytical signal, generalized AS), Euler- and Werner deconvolution.

Assessment and permitted materials

oral exam, making use of auxiliary means is not allowed

Minimum requirements and assessment criteria

Minimum requirements: knowledge of the topics of the course

Examination topics

Content of the course

Reading list

Literature and course material can be accessed via Moodle

Association in the course directory

Last modified: Sa 02.04.2022 00:25