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This is a list of models and meshes commonly used in 3D computer graphics for testing and demonstrating rendering algorithms and visual effects. Their use is important for comparing results, similar to the way standard test images are used in image processing.
Standard Cornell box rendered with POV-Ray Cornell box with 3 balls to model how different materials reflect light.. The Cornell box is a test aimed at determining the accuracy of rendering software by comparing the rendered scene with an actual photograph of the same scene, [1] and has become a commonly used 3D test model.
3DMark is a computer benchmarking tool created and developed by UL (formerly Futuremark), to determine the performance of a computer's 3D graphic rendering and CPU workload processing capabilities. Running 3DMark produces a 3DMark score, with higher numbers indicating better performance.
WebGL (short for Web Graphics Library) is a JavaScript API for rendering interactive 2D and 3D graphics within any compatible web browser without the use of plug-ins. [2] WebGL is fully integrated with other web standards , allowing GPU -accelerated usage of physics, image processing, and effects in the HTML canvas .
Radiosity – Computer graphics rendering method using diffuse reflection; Ray tracing – Rendering method; Real-time computer graphics – Sub-field of computer graphics; Reyes – Computer software architecture in 3D computer graphics; Scanline rendering/Scanline algorithm – 3D computer graphics image rendering method
The Utah teapot, or the Newell teapot, is one of the standard reference test models in 3D modeling and an in-joke [1] within the computer graphics community. It is a mathematical model of an ordinary Melitta -brand teapot designed by Lieselotte Kantner [ de ] that appears solid with a nearly rotationally symmetrical body.
The computer graphics pipeline, also known as the rendering pipeline, or graphics pipeline, is a framework within computer graphics that outlines the necessary procedures for transforming a three-dimensional (3D) scene into a two-dimensional (2D) representation on a screen. [1]
The graphics rendering pipeline ("rendering pipeline" or simply "pipeline") is the foundation of real-time graphics. [4] Its main function is to render a two-dimensional image in relation to a virtual camera, three-dimensional objects (an object that has width, length, and depth), light sources, lighting models, textures and more.