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Winter Semester 2018/19
Spatial Information Systems LN5039
Course contents: Introduction to GIS, distribution and structure; discussion of the components of GIS;
Coordinate systems, types of data and their sources, the practical aspects of storing and controlling access to data;
The basic geometry of vector data types; symbolization vector layers, use of symbols and parameters;
GIS software packages, software freeware / open source, database, spreadsheet composition maps.
Symbolization layer based on attribute tables, preparing print map sheets.
Learning outcomes: The student is a knowledge about the basic issues of spatial information systems, it has the practical skills acquisition, processing and sharing of data in the basic format to replace them using commonly available informatic's tools
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Course coordinators
Term 2016Z: | Term 2017Z: | Term 2014Z: | Term 2015Z: | Term 2018Z: | Term 2012Z: | Term 2013Z: | Term 2010Z: | Term 2011Z: |
Learning outcomes
Lectures:
EK1. The student knows the basic concepts of spatial information systems.
EK2. He knows the software packages and the use and application in the study of nature.
Laboratories:
EK1. Students can prepare for the workplace and equip them with the necessary tools to achieve their tasks. He has knowledge of handling and use of GIS software (for example, ArcMap)
Assessment criteria
EK1.
Can describe the geometry data types, types and applying coordinate systems (3).
Describes techniques for the collection, processing and presentation of data using specialized hardware and software (4)
The student can explain the types of relationships (analyzes) that may exist between the two groups of data and describes the differences between these relationships (5)
EK2.Potrafi replace GIS software packages (3)
He knows and is able to describe the data source for GIS (4)
He knows the purpose, scope and usefulness of GIS to geographical education and the possibility of their use in learning, teaching and economic life (5)
laboratories
EK1.
He knows the tools that operate on different objects, layers, and libraries, tables, such as translation, digitization, editing, and analysis. performs the digitization reference to a previously prepared thematic layers (3)
It can present data in ArcMap for the execution of tasks and customize the choice of method for the visualization of data and their interpretation. symbolization makes vector layers with special reference to the information necessary to forward (4)
Mastered the basics of the classes used laboratoratoryjnych programs and is able to interpret the results of data visualization (5)
Bibliography
Basic literature: 1. Okła K.: Geomatyka w Lasach Państwowych. Część I. Podstawy, Centrum Informacyjne Lasów Państwowych, Warszawa, 2010. 2. Miś R., Strzeliński P., Węgiel A. Systemy informacji przestrzennej w leśnictwie i ochornie środowiska leśnego. Wyd. AR im. A. Cieszkowskiego w Poznaniu. Poznań, 2001. 3. Werner P. Wprowadzenie do systemów geoinformacyjnych. Wydaw. UW. Warszawa, 2004. 4. Czyżkowski B., Praktyczny przewodnik po GIS, PWN, Warszawa 2006.
Further reading: 1. Czyżkowski B., Praktyczny przewodnik po GIS, PWN, Warszawa 2006. 2. Geomatyka w badaniach struktur przestrzenych kompleksów leśnych. Wydawnictwo SGGW. Warszawa, 2000. 3. Czasopisma o tematyce geoinformatycznej (na bieżąco)