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Geodetic control network
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Related lectures (18)
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Geodetic References: Coordinates and Systems
Explores geodetic references, coordinate systems, the geoid, and reference systems for accurate measurements.
Control and Monitoring of Dams and Hydraulic Structures
Covers the control and monitoring of dams and hydraulic structures.
Satellite Tracking: Basics and Applications
Covers the basics of satellite tracking, GPS systems, geolocation, and challenges in GNSS applications.
Introduction to Geomatics: Diversity and Inclusion in Engineering
Introduces geomatics with a focus on diversity and inclusion in engineering, emphasizing practical work and collaboration for spatial analysis.
Coordinate Systems and Satellite Tracking
Explores coordinate systems, geoid shape, satellite tracking, and reference systems for accurate geodetic measurements.
Datum and Projection System: Topographic Base Establishment
Explores the challenges of different geodetic references in establishing a topographic base for a cross-border project.
Geodetic References: Coordinate Conversions and Global Systems
Explores coordinate conversions, datum changes, global kinematics, and geodetic reference systems, including CH1903 and satellite tracking.
Satellite Localization: Concepts and Applications
Explores the basics of satellite localization, addressing GPS systems, geolocation challenges, and GNSS applications in seismic and meteorological studies.
Geodesy Fundamentals: Understanding Earth Reference Systems
Provides an overview of geodesy, focusing on Earth's reference systems and the importance of accurate geodetic data for practical applications.
Geodesy Fundamentals: Coordinate Systems and GPS Applications
Introduces geodesy, focusing on coordinate systems and GPS technology applications.
Coordinate Conversions: Transformations de coordonnées - Conversions
Explores reference systems evolution, coordinate conversions, satellite tracking, and map projections.
Geodesy Bases and Coordinate Systems
Explores geodesy bases, coordinate systems, and projections for astronomy and navigation.
Geodesy Bases: Coordinate Systems, Geoid, and Ellipsoid
Explores geodesy basics, covering coordinate systems, geoid, and ellipsoid representations on a flat plane.
Geoid References: Geoid
Explores the geoid, gravity conditions, geoid elevation, and reference systems.
Additional Transformations from/to ECEF
Explores additional transformations between geocentric and geodetic systems, map projections, and vertical reference systems.
Geodetic Engineering: Positioning, Mapping, and Navigation
Explores geodetic engineering, focusing on positioning technologies, mapping, and navigation using satellites, GPS, and inertial sensors.
Acquisition de données primaires: Positioning and Thematic Data
Covers primary data acquisition methods in GIS, including positioning and thematic data techniques.
Geodetic Engineering: Positioning and Mapping
Explores geodetic engineering, covering spatial data theory, positioning technologies, and mapping techniques.
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