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Source code and figures from the book, testbed programs, and additional content will be available from the authors' website () or the publisher's website (/title/9780321399526). Programs are written in C++, C#, WPF, or pseudocode–whichever language is most effective for a given example.
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The text and hundreds of figures are presented in full color throughout the book. Programming and debugging approaches unique to graphics development
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Implementations of GPU shaders, software rendering, and graphics-intensive 3D interfacesģD real-time graphics platforms–their design goals and trade-offs–including new mobile and browser platforms New coverage of the rendering equation, GPU architecture considerations, and importance- sampling in physically based renderingĪn emphasis on modern approaches, as in a new chapter on probability theory for use in Monte-Carlo rendering Topics are reinforced by exercises, programÂming problems, and hands-on projects.
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Sections on current computer graphics practice show how to apply given principles in common situations, such as how to approximate an ideal solution on available hardware, or how to represent a data structure more efficiently. Later chapters, covering a broad range of topics, demonstrate more sophisticated approaches. Early chapters show how to create 2D and 3D pictures right away, supporting experimentation. The authors explain the principles, as well as the mathematics, underlying computer graphics–knowledge that is essential for successful work both now and in the future. This third edition has been completely rewritten to provide detailed and up-to-date coverage of key concepts, algorithms, technologies, and applications. The second edition became an even more comprehensive resource for practitioners and students alike. The first edition, the original “Foley and van Dam,†helped to define computer graphics and how it could be taught. Feiner, K | Category: Graphics | Language: English | Page: 1 | ISBN: 0321399528 |ĭescription: Computer Graphics: Principles and Practice, Third Edition, remains the most authoritative introduction to the field. Hughes, Andries van Dam, Morgan McGuire, David F.