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Related lectures (31)
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Land modeling: Numeric representation of the land
Covers numeric representation techniques, data acquisition, geographic space, discrete and continuous phenomena in land modeling.
Thematic attributes and classification
Covers statistical thematic mapping, types of thematic maps, and discretization methods for representing and classifying dataset characteristics.
Projections: Projection Suisse
Explains the Swiss projection system, its coordinate system, advantages, deformation, and examples from France.
Numerical Modelling of the Atmosphere
Focuses on numerical modelling of atmospheric processes to predict weather and climate phenomena, covering key concepts and methods.
Physics 1: Harmonic Oscillator and Spherical Coordinates
Explores harmonic oscillators, pendulum movement, and spherical coordinates in physics.
Coordinates and Projection Systems
Covers principles of transposing spatial entities, scales, coordinate systems, projection systems, and EPSG codes.
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.
Data modeling: Geographic Information Systems
Introduces data modeling in the context of Geographic Information Systems, covering the added value and methods used.
Coordinates and Projection Systems
Explores scales, coordinate systems, projections, and legal positioning references in territory modeling.
Timber Plate Structural Design
Covers the CAD-to-CAE data transformation process for advanced timber plate structural design.
Instantaneous Center of Rotation
Explains the concept of the instantaneous center of rotation in solid mechanics and how to determine it based on known speeds of points.
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