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Lecture
Geographic Information Systems: Introduction
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Vector-Vector Integration: Methods and Tools
Explores methods and tools for integrating vector layers in QGIS, including SQL queries and boolean operators.
Discrete variables: Geometric properties
Covers geometric properties of discrete variables in GIS, including location, size, and shape.
Thematic attributes and classification
Covers statistical thematic mapping, types of thematic maps, and discretization methods for representing and classifying dataset characteristics.
Spatial Autocorrelation: Moran's I
Covers global spatial autocorrelation and Moran's I interpretation through regression coefficients and spatial weighting schemes.
Hydrology Modeling: Routing System
Covers the modeling of hydrological systems, focusing on the retention of floods and the example of the Routing System.
Discrete Variables, Geometric Properties
Covers discrete variables in geographic information systems and their geometric properties, including spatial arrangement and autocorrelation.
Spatial Arrangement and Neighborhood of Discrete Variables
Covers spatial arrangement, object description, statistical dispersion, and proximity relationships in geographic information systems.
Altitude Models and Derivative Variables
Covers geographic information systems, relief indicators, and digital elevation models.
Introduction to Database Systems
Covers the fundamentals of database systems, including data modeling, information processing, and the challenges of managing large volumes of data.
Spatial Phenomena: Isovalues
Covers isovalue curves in geographic information systems and their creation using QGIS.