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Lecture
Coordinates and Projection Systems
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Related lectures (31)
Projection Orthogonale: Properties and Methods
Explores the properties of orthogonal projection and the Monge method for projecting points in space.
Land modeling: Numeric representation of the land
Covers numeric representation techniques, data acquisition, geographic space, discrete and continuous phenomena in land modeling.
Coordinate Conversions: Transformations de coordonnées - Conversions
Explores reference systems evolution, coordinate conversions, satellite tracking, and map projections.
Introduction to QGIS
Covers the basics of QGIS, including project management, data manipulation, and map production.
Satellite Tracking: Basics and Applications
Covers the basics of satellite tracking, GPS systems, geolocation, and challenges in GNSS applications.
Digital Urban History: QGIS Practical Session
Covers the practical use of QGIS for spatial data analysis and visualization, including georeferencing historical maps and manipulating vector data.
Satellite Tracking: Geolocation and Map Projections
Explores satellite tracking for geolocation and map projections, discussing challenges in representing spherical surfaces on a plane and the effects of different projection systems.
Digital Elevation Models: Basic Element
Explores the role of relief in modeling Earth's surface phenomena and the advancements in technology for producing precise digital elevation models.
Satellite Localization: Projections and Transformations
Explores map projections, coordinate transformations, and their impact on GPS measurements.
Geometric Projections: Orthogonal and Monge Projections
Covers orthogonal and Monge projections in descriptive geometry, focusing on geometric properties and visualization techniques.
Projections, Principes: Satellite Tracking and Cartography
Explores affine coordinate transformation, satellite tracking, and challenges in map projections.
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