Physics is really important to game programmers who need to know how to add physical realism to their games. In video games, the physics engine uses real-time physics to improve realism. This book aims to take readers through the process of building a complete game-ready physics engine from scratch.
Physics is really important to game programmers who need to know how to add physical realism to their games. In video games, the physics engine uses real-time physics to improve realism. This book aims to take readers through the process of building a complete game-ready physics engine from scratch.
Ian Millington is a partner of IPR Ventures, a consulting company developing next-generation AI technologies for entertainment, modeling, and simulation. Previously he founded Mindlathe Ltd, the largest specialist AI middleware company in computer games, working with on a huge range of game genres and technologies. He has a long background in AI, including PhD research in complexity theory and natural computing. He has published academic and professional papers and articles on topics ranging from paleontology to hypertext.
Inhaltsangabe
Introduction. Particle Physics: The Mathematics of Particles. The Laws of Motion. The Particle Physics Engine. Mass Aggregate Physics: Adding General Forces. Springs and Spring-Like Things. Hard Constraints. The Mass Aggregate Physics Engine. Rigid-Body Physics: The Mathematics of Rotations. Laws of Motion for Rigid Bodies. The Rigid-Body Physics Engine. Collision Detection: Collision Detection. Generating Contacts. Contact Physics: Collision Resolution. Resting Contacts and Friction. Stability and Optimization. Putting It All Together. Further Topics in Physics: Physics in Two Dimensions. Other Programming Languages. Other Types of Physics. Appendices: Useful Inertia Tensors. Useful Friction Coefficients. Mathematics Summary
Introduction. Particle Physics: The Mathematics of Particles. The Laws of Motion. The Particle Physics Engine. Mass Aggregate Physics: Adding General Forces. Springs and Spring-Like Things. Hard Constraints. The Mass Aggregate Physics Engine. Rigid-Body Physics: The Mathematics of Rotations. Laws of Motion for Rigid Bodies. The Rigid-Body Physics Engine. Collision Detection: Collision Detection. Generating Contacts. Contact Physics: Collision Resolution. Resting Contacts and Friction. Stability and Optimization. Putting It All Together. Further Topics in Physics: Physics in Two Dimensions. Other Programming Languages. Other Types of Physics. Appendices: Useful Inertia Tensors. Useful Friction Coefficients. Mathematics Summary
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