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Lecture
Spatial Entities and Geographic Information Systems
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Related lectures (32)
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Spatial Autocorrelation: Moran's I
Covers global spatial autocorrelation and Moran's I interpretation through regression coefficients and spatial weighting schemes.
Geographic Information Systems
Introduces Geographic Information Systems as decision support tools with emphasis on data accuracy and maintenance.
Spatial Phenomena: Isovalues
Covers isovalue curves in geographic information systems and their creation using QGIS.
Digitalisation d'objets vectoriels
Covers creating new geographic objects in a GIS and managing topology for digitalization.
Spatial Autocorrelation and Dependence
Covers spatial autocorrelation, spatial dependence, biases in classical statistics, and limitations of statistical tools in geography.
Spatial Phenomena: Isovalues
Covers continuous spatial phenomena and isovalues in geographic information systems, including interpolation methods and examples of isovalues curves for various environmental factors.
Spatial Autocorrelation: Moran's I
Explores Moran's I for assessing spatial clustering in geographical data using precipitation as an example.
Interactions between Vector Data Layers
Explores vector-vector interactions, SQL queries, and boolean operations in QGIS.
Digital Elevation Models: Basic Elements
Covers digital elevation models, altitude acquisition methods, representation techniques, and relief visualization using shading and contour lines.
Discrete Variables, Geometric Properties
Covers discrete variables in geographic information systems and their geometric properties, including spatial arrangement and autocorrelation.