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Collected articles in this series are dedicated to the development and use of software for earth system modelling and aims at bridging the gap between IT solutions and climate science. The particular topic covered in this volume addresses the historical development, state of the art and future perspectives of the mathematical techniques employed for numerical approximation of the equations describing atmospheric and oceanic motion. Furthermore, it describes the main computer science and software engineering strategies employed to turn these mathematical methods into effective tools for understanding earth's climate and forecasting its evolution. These methods and the resulting computer algorithms lie at the core of earth system models and are essential for their effectiveness and predictive skill.
Earth sciences -- Computer simulation. --- Engineering. --- Software engineering. --- Geography --- Earth & Environmental Sciences --- Geology --- Meteorology & Climatology --- Physical Geography --- Geology - General --- Earth sciences --- Computer simulation. --- Geosciences --- Earth sciences. --- Computer mathematics. --- Earth Sciences. --- Earth Sciences, general. --- Simulation and Modeling. --- Computational Mathematics and Numerical Analysis. --- Environmental sciences --- Physical sciences --- Geography. --- Computer science --- Mathematics. --- Computer modeling --- Computer models --- Modeling, Computer --- Models, Computer --- Simulation, Computer --- Electromechanical analogies --- Mathematical models --- Simulation methods --- Model-integrated computing --- Cosmography --- World history --- Computer mathematics --- Discrete mathematics --- Electronic data processing --- Mathematics
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Geology. Earth sciences --- Artificial intelligence. Robotics. Simulation. Graphics --- Computer. Automation --- vormgeving --- informatica --- simulaties --- wiskunde --- geografie --- KI (kunstmatige intelligentie) --- AI (artificiële intelligentie)
Choose an application
Collected articles in this series are dedicated to the development and use of software for earth system modelling and aims at bridging the gap between IT solutions and climate science. The particular topic covered in this volume addresses the historical development, state of the art and future perspectives of the mathematical techniques employed for numerical approximation of the equations describing atmospheric and oceanic motion. Furthermore, it describes the main computer science and software engineering strategies employed to turn these mathematical methods into effective tools for understanding earth's climate and forecasting its evolution. These methods and the resulting computer algorithms lie at the core of earth system models and are essential for their effectiveness and predictive skill.
Geology. Earth sciences --- Artificial intelligence. Robotics. Simulation. Graphics --- Computer. Automation --- vormgeving --- informatica --- simulaties --- wiskunde --- geografie --- KI (kunstmatige intelligentie)
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