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Lecturer(s)
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Course content
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The content of the practical exercises focuses on the following topics: 1. Precise field measurements using GNSS technology (principles of geodetic data collection, use of the CZEPOS network, measurements in RTK mode, processing of measured data in GIS) 2. New possibilities for using landscape mapping applications (ArcGIS Field Maps) 3. Geophysical prospectingan introduction to the topic, geophysical prospecting in practiceGPR mapping, DEMP, data processing in GIS 4. Mapping Using UAVsPrinciples, Mission Planning, and Data Processing Options in the Visible Spectrum 5. Mapping with a 3D laser scannerLIDAR data processing 6. Vegetation mapping (obtaining detailed information on canopy cover, photosynthetic capacity, and site conditions) 7. Mobile meteorological mapping (use of automatic weather stations and handheld thermal imaging cameras)
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Learning activities and teaching methods
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Monologic Lecture(Interpretation, Training), Dialogic Lecture (Discussion, Dialog, Brainstorming), Demonstration, Laboratory Work, Group work
- Preparation for the Course Credit
- 10 hours per semester
- Homework for Teaching
- 10 hours per semester
- Attendace
- 70 hours per semester
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Learning outcomes
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The course aims to familiarise students with the operation and use of modern instrumentation for field research and mapping. The course focuses on the use of the department's modern equipment. Students will learn about new methods of landscape mapping and data collection. Practical exercises take place in the laboratory, the computer lab, and in the field. Data analysis is conducted in the computer lab or in the physical geography laboratory.
Students will learn to operate surveying equipment for specific research and mapping needs, both indoors and outdoors. They will be able to distinguish among and use surveying equipment for various tasks focused on mapping and monitoring the landscape and its features.
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Prerequisites
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Knowledge covering the general geographical disciplines of a bachelor's degree program in geography.
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Assessment methods and criteria
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Analysis of Activities ( Technical works)
Knowledge of the subject matter covered in the specialized courses and the designated literature.
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Recommended literature
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ESRI Training ? webový portál zaměřený na cvičení a praktické úlohy pro ESRI produkty. .
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Coomans T., Cattoor B., Jonge, K. (2019). Mapping landscapes in transformation. Leuven.
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Komárek J, Klouček T., Holleschová I., Beková A., Barták V. (2020). Mapování porostu podél dopravní infrastruktury: certifikovaná metodika.. Praha.
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Kuna M. a kol. (2004). Nedestruktivní archeologie: teorie, metody a cíle. Praha.
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Lukeš P. (2018). Hodnocení zdravotního stavu lesních porostů v České republice pomocí satelitních dat Sentinel-2. Brandýs nad Labem.
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Novák, J. (2021). Drony: kompletní průvodce včetně přehledu nové legislativy. Praha.
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Pavelka K. (2017). Exaktní metody průzkumu památek: s využitím geodetických a geofyzikálních metod.. Praha.
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Sedláček J. (2013). Úvod do užité geofyziky. Olomouc.
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Tarolli P., Mudd S. M. (2020). Remote Sensing of Geomorphology. Developments in Earth Surface Processes ? Svazek 23. Amsterdam.
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Ukanská K., Blišťan P., Bartoš K., Kovanič Ľ. (2020). Specific irregular surfaces: laser scanning and structure from motion approach. Brno.
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