Categories: Tutorials, 3D Tutorials

Gnomon Master Class David Schoneveld - Fluid Simulation in Destruction
English | FLV | MPEG Audio 98kb/s | VP6.2 Video | 1024x640 | 122 minutes | 472Mb
Genre: eLearning

Cgtuts: Introduction to Smoke Simulation in Blender 2.5
In this invaluable, in-depth series we’ll be taking a look at smoke and fire simulation techniques within Blender 2.5, and who better to take us through this process than the man behind the official documents himself, Gottfried Hofmann. Prepare to be amazed at just what Blender can do for free.

Cgtuts: An Introduction to Fluid Simulations in Blender
Learning to simulate realistic fluids in any 3d app is always a challenge, but Blender's sophisticated solver allows for some very rewarding results.
In this introduction to Blender fluid simulations, you will learn the basics of how to set up a fluid simulation in Blender with an obstacle, and a few fluid set ups to give you an idea of some of the other things that you can do with Blender fluids.
In this introduction to Blender fluid simulations, you will learn the basics of how to set up a fluid simulation in Blender with an obstacle, and a few fluid set ups to give you an idea of some of the other things that you can do with Blender fluids.
Categories: E-Books & Audio Books
Computational Fluid Dynamics for Sport Simulation (Lecture Notes in Computational Science and Engineering)
Springer | ISBN: 3642044654 | edition 2010-01-01 | PDF | 134 pages | 10.45 MB

cmiVFX - Blender Organic Modeling Techniques | 1.1 GB

cmiVFX – Blender Organic Modeling Techniques
Take your Blender skills to the next level! This video will take you through the process of creating a high-detail model of a mammoth in Blender. You will learn how to make efficient use of Blender’s modeling tools, including not only box-modeling and poly-by-poly-modeling, but also how to use the modifier stack and how to use multi-resolution, sculpting and the re topology-tools.

Systems Biology: Simulation of Dynamic Network States By Bernhard O. Palsson
2011 | 332 Pages | ISBN: 1107001595 | PDF | 4 MB
2011 | 332 Pages | ISBN: 1107001595 | PDF | 4 MB
Biophysical models have been used in biology for decades, but they have been limited in scope and size. In this book, Bernhard O. Palsson shows how network reconstructions that are based on genomic and bibliomic data, and take the form of established stoichiometric matrices, can be converted into dynamic models using metabolomic and fluxomic data. The Mass Action Stoichiometric Simulation (MASS) procedure can be used for any cellular process for which data is available and allows a scalable step-by-step approach to the practical construction of network models. Specifically, it can treat integrated processes that need explicit accounting of small molecules and protein, which allows simulation at the molecular level. The material has been class-tested by the author at both the undergraduate and graduate level.
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