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Lecture
Geographic Information Systems: Introduction
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Related lectures (32)
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Spatial Discrete Variables, Spatial Arrangement and Neighborhood
Covers spatial arrangement, neighborhood, and statistical measures for analyzing spatial patterns in geographic information systems.
Digital Elevation Models: Basic Elements
Covers digital elevation models, altitude acquisition methods, representation techniques, and relief visualization using shading and contour lines.
GIS Teaser
Covers the basics of geographic information systems and their role in wildlife protection through drone monitoring.
Spatial Autocorrelation and Dependence
Covers spatial autocorrelation, spatial dependence, biases in classical statistics, and limitations of statistical tools in geography.
Cartographic Localization
Explores the challenges of cartographic localization and the evolving landscape of cartographic tools.
Vector-Vector Interactions
Covers interactions between vector layers in GIS using QGIS tools.
Digitization of Vector Objects
Covers the digitization of vector objects in GIS, including creation, editing, and topology management.
Vector mode and image mode
Covers observation units in GIS, focusing on vector and image modes.
Modeling the Territory: Geographic Information Systems
Covers geographic information systems, digital representation, spatial analysis, societal interactions, and the role of models in understanding territories.
Thematic attributes and classification
Covers statistical thematic mapping, types of thematic maps, and discretization methods for representing and classifying dataset characteristics.