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Titlebook: Computer Animation and Simulation 2001; Proceedings of the E Nadia Magnenat-Thalmann,Daniel Thalmann Conference proceedings 2001 Springer-V

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Ways Out of the Trap of Article 1(1) TRIPSWe describe a part of a system which generates a 3D animated drummer based on the contents of a sound wave. The focus of this paper will be on the automatic generation of 3D animations, based on an abstract representation of the music (a MIDI file). The system is implemented in Java and uses the Java3D API for visualisation.
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https://doi.org/10.1007/978-3-642-83558-2un using conventional cameras and without the use of special apparel or other equipment, improving usability in existing application domains and opening up new possibilities since the methods can be applied to image sequences acquired from any source. We present results from a system able to perform
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TRP Channels in Sensory Transductiontool defined as a combination of three free-form deformation tools. The first one is Chang and Rockwood’s axial tool and the two others are its extensions to a tool defined by a Bezier patch and a tool defined by a Bezier trivariate volume. The presentation of our “Multidimensional deformation tool”
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https://doi.org/10.1007/978-3-8349-9211-6nge from adding special effects to movies to enhancing the look and feel of video games. In this talk I will present different techniques to simulate the motion and appearance of smoke and fire. My approach is based on the physics of fluid flow, namely the Navier-Stokes Equations. I will present a s
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Keyword-Advertising und TYPO3?,s. Animator control and motion complexity is achieved by driving the fire motion using multi-scale turbulent wind fields and geometric quantities. Our model also supports adaptivity of the fire fronts, multiple simultaneous fires, and merging of multiple fires. This new technique produces convincing
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Keyword-Advertising und TYPO3?,plines (DMS). It begins with the replacement of the previous “parametric density” function by an actually “per unit length density” function. It then shows how continuous deformation energy can be used to model internal strains for DMS according to the classical theory of elasticity. After these the
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