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Related lectures (17)
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Isovalues: Introduction to Geographic Information Systems
Introduces isolines and demonstrates their creation in QGIS.
Basic Elements of Altitude Models
Covers methods for acquiring and representing altitude data, emphasizing the historical and analytical importance of relief.
Isovalues: Applications and Creation
Explores the use and creation of isovalue curves in different applications.
Discrete Variables, Geometric Properties
Covers discrete variables in geographic information systems and their geometric properties, including spatial arrangement and autocorrelation.
Digital Elevation Models: Basic Elements
Covers digital elevation models, altitude acquisition methods, representation techniques, and relief visualization using shading and contour lines.
Digital Elevation Models: Basic Concepts
Covers methods for sampling elevation and measuring elevation using leveling, photogrammetry, and LiDAR in Geographic Information Systems.
Altitude Models and Derivative Variables
Covers geographic information systems, relief indicators, and digital elevation models.
Cones and Cylinders: Geometry Descriptive
Explores cones and cylinders in descriptive geometry, covering ruling surfaces and tangent planes.
Altitude Models and Derived Variables
Covers geographic information systems, digital elevation models, derived variables, visibility analysis, shadow casting, solar radiation, drainage lines, and flood zones.
Turbulence: Numerical Flow Simulation
Explores turbulence characteristics, simulation methods, and modeling challenges, providing guidelines for choosing and validating turbulence models.
Derived variables: thematic applications
Explores thematic variables derived from digital altitude models for various applications.
Relief Representation / Geomorphometry
Explores relief representation and geomorphometry through digital models and variables characterization.
Geospatial Analysis: Derived Variables
Covers derived thematic variables from digital elevation models for geospatial analysis.
Derived Variables 2: Applications and Analysis
Covers thematic variables derived from DEMs and their applications in GIS.
L-Systems: Understanding and Applications
Covers the basics of L-Systems, explores various examples, discusses stochastic variations, and extends to 3D modeling.
Topology: Polyhedral Products and Edge Detection
Explores topology concepts and edge detection in computer vision, highlighting the significance of contours and gradients in image analysis.
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