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Lecture
Introduction to Geographic Information Systems
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Related lectures (32)
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Raster - Vector Integration
Covers the integration of raster and vector data in GIS using QGIS.
Geographic Information Systems Teaser
Covers the basics of geographic information systems and the use of drones for wildlife monitoring.
Land modeling: Numeric representation of the land
Covers numeric representation techniques, data acquisition, geographic space, discrete and continuous phenomena in land modeling.
Spatial Autocorrelation: Moran's I
Covers global spatial autocorrelation and Moran's I interpretation through regression coefficients and spatial weighting schemes.
Digital Elevation Models: Basic Elements
Covers digital elevation models, altitude acquisition methods, representation techniques, and relief visualization using shading and contour lines.
Spatial Discrete Variables, Spatial Arrangement and Neighborhood
Covers spatial arrangement, neighborhood, and statistical measures for analyzing spatial patterns in geographic information systems.
Spatial Autocorrelation and Dependence
Covers spatial autocorrelation, spatial dependence, biases in classical statistics, and limitations of statistical tools in geography.
Geographical Information Systems: Introduction
Covers the basics of Geographic Information Systems, including geodata acquisition, storage, analysis, and advanced representation techniques.
Interactions between Raster and Vector
Covers interactions between raster and vector data layers in GIS, including extracting information at specific points and calculating statistics within polygon zones.
Geographic Information Systems: Data Acquisition and Representation
Explores Geographic Information Systems, covering data acquisition, representation, and visualization of geodata.