2D Game Collision Detection

2D Game Collision Detection

Author: Thomas Schwarzl

Publisher: Thomas Schwarzl

Published: 2012

Total Pages: 82

ISBN-13: 1479298123

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Are You Wondering How 2D Collision Detection In Video Games Works? Learn how to determine shot impacts, find out which enemies are covered by lines of sight, recognize collisions of race cars or simply check if the mouse cursor floats above a button. This Book Is Designed For Game Developers Who Want To Implement Fast And Efficient 2D Collision Detection. The only prerequisite you need is basic knowledge in procedural programming. If you are familiar with any popular programming language like C, C++, Java, C# or Objective-C you have all you need to understand the code examples throughout the book. What You Will Get From This Book. The following topics get explained in detail: 2D vector mathematics, how to spot collisions of various 2D shapes, simple yet effective body representation of game objects, identifying clashing objects in motion and plenty of optimization tricks. Your Knowledge Will Be Built Up From Scratch. The book is written for beginners, new to the topic of geometrical 2D collision detection. There are plenty of illustrations and code examples which make it easy to understand the necessary concepts and algorithms. Use This Book As A Reference Guide. Aside its introductional nature this book is also designed to serve as a reference guide for looking up specific collision detection functions. So advanced game programmers will derive benefit from it as well. All The Presented Code Is Ready For Immediate Use. The code forged throughout the book can be downloaded from the book's website and can be used right away.


Collision Detection in Interactive 3D Environments

Collision Detection in Interactive 3D Environments

Author: Gino van den Bergen

Publisher: CRC Press

Published: 2003-10-27

Total Pages: 308

ISBN-13: 148229799X

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The heart of any system that simulates the physical interaction between objects is collision detection-the ability to detect when two objects have come into contact. This system is also one of the most difficult aspects of a physical simulation to implement correctly, and invariably it is the main consumer of CPU cycles. Practitioners, new to the f


Annual Report

Annual Report

Author: New York (State). Board of Railroad Commissioners

Publisher:

Published: 1904

Total Pages: 1512

ISBN-13:

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Real-Time Collision Detection

Real-Time Collision Detection

Author: Christer Ericson

Publisher: CRC Press

Published: 2004-12-22

Total Pages: 633

ISBN-13: 0080474144

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Written by an expert in the game industry, Christer Ericson's new book is a comprehensive guide to the components of efficient real-time collision detection systems. The book provides the tools and know-how needed to implement industrial-strength collision detection for the highly detailed dynamic environments of applications such as 3D games, virt


Computer Animation

Computer Animation

Author: Rick Parent

Publisher: Newnes

Published: 2012-10-18

Total Pages: 541

ISBN-13: 0124159737

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Driven by demand from the entertainment industry for better and more realistic animation, technology continues to evolve and improve. The algorithms and techniques behind this technology are the foundation of this comprehensive book, which is written to teach you the fundamentals of animation programming. In this third edition, the most current techniques are covered along with the theory and high-level computation that have earned the book a reputation as the best technically-oriented animation resource. Key topics such as fluids, hair, and crowd animation have been expanded, and extensive new coverage of clothes and cloth has been added. New material on simulation provides a more diverse look at this important area and more example animations and chapter projects and exercises are included. Additionally, spline coverage has been expanded and new video compression and formats (e.g., iTunes) are covered. Includes companion site with contemporary animation examples drawn from research and entertainment, sample animations, and example code Describes the key mathematical and algorithmic foundations of animation that provide you with a deep understanding and control of technique Expanded and new coverage of key topics including: fluids and clouds, cloth and clothes, hair, and crowd animation Explains the algorithms used for path following, hierarchical kinematic modelling, rigid body dynamics, flocking behaviour, particle systems, collision detection, and more