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Lecturer(s)
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Jedlička Karel, Ing. Ph.D.
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Course content
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Introduction, terminology. Symbolic coding of spatial analyses. Programming languages for spatial analyses. Algorithms of digital terrain model creation. Interpolation of rasters. Raster analysis. Graphs and spatial models. Spatial modelling.
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Learning activities and teaching methods
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Students' portfolio, Individual study, Lecture, Practicum
- Contact hours
- 39 hours per semester
- Presentation preparation (report) (1-10)
- 5 hours per semester
- Preparation for an examination (30-60)
- 30 hours per semester
- Graduate study programme term essay (40-50)
- 29 hours per semester
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| prerequisite |
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| Knowledge |
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| explain fundaments of GIS |
| explain fundaments of databases |
| explain concepts of vector and raster data |
| explain, how character and accuracy of geographic data depends on its source |
| Skills |
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| acquire geographical data from available sources |
| store geographic data to a data base |
| use at least one GIS package at an entry level |
| be able to turn description of a geographical problem into a workflow solving the problem |
| Competences |
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| N/A |
| N/A |
| N/A |
| N/A |
| learning outcomes |
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| Knowledge |
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| definovat základní pojmy z teorie systémů |
| vysvětlit principy fungování základních analytických funkcí geografických informačních systémů |
| vysvětlit rozdíl mezi přístupem k vybranému GIS přes GUIa přes API |
| spolupracovat na řešení geograficky vztaženého problému s odborníkem z jiné aplikační oblasti (např. doprava, ekologie, hydrologie, atp.) |
| Skills |
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| Vytvořit model pro analytické řešení prostorové vztaženého problému |
| ovládat principy automatizace prostorových analýz |
| přistupovat k vybranému geografickému informačnímu systému přes jeho API |
| vysvětlit principy GIS odborníkovi z jiné aplikační oblasti (např. doprava, ekologie, hydrologie, atp.) |
| Competences |
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| N/A |
| N/A |
| N/A |
| N/A |
| teaching methods |
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| Knowledge |
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| Lecture with visual aids |
| Interactive lecture |
| Lecture supplemented with a discussion |
| Task-based study method |
| Multimedia supported teaching |
| Skills |
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| Practicum |
| Skills demonstration |
| Task-based study method |
| Cooperative instruction |
| Competences |
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| Skills demonstration |
| Practicum |
| Project-based instruction |
| Textual studies |
| assessment methods |
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| Knowledge |
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| Oral exam |
| Written exam |
| Practical exam |
| Skills |
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| Seminar work |
| Group presentation at a seminar |
| Practical exam |
| Competences |
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| Seminar work |
| Individual presentation at a seminar |
| Written exam |
| Oral exam |
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Recommended literature
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Burrough, Peter A.; McDonnell, Rachael A. Principles of geographical information systems. 1st ed. repr. Oxford : Oxford University Press, 1998. ISBN 0-19-823365-5.
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Fortheringham, A. Stewart; Wegener, Michael. Spatial models and GIS : new potential and new models ; Ed. by A. Stewart Fortheringham, Michael Wegener. London : Taylor & Francis, 2001. ISBN 0-748-40846-0.
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Longley, Paul A. Geographic information systems and science. Chichester : John Wiley & Sons, Ltd., 2001. ISBN 0-471-89275-0.
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Maidment, David R. Arc Hydro : GIS for water resources ; David R. Maidment, editor. Redlands : ESRI Press, 2002. ISBN 1-58948-034-1.
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Montgomery, D. R. Hydrological applications of GIS : Edited by A. M. Gurnell, D. R. Montgomery. Chichester : John Wiley and Sons, 2001. ISBN 0-471-89876-7.
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Neteler, Markus; Mitasova, Helena. Open source GIS : a GRASS GIS approach. 2nd ed. Boston : Kluwer Academic Publishers, 2004. ISBN 1-4020-8064-6.
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