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By J. Park

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Whole-body biomechanics, which includes occupational and sports biomechanics, generally employs the rigid object model, or linked rigid object models. Cell and tissue level biomechanics, as well as implant and injury biomechanics, generally employ deformable continuum models. Biological, as well as nonbiological, molecules are modeled as ensembles whose behavior is statistically analyzed. Cellular automata already have significant applications in fluid flow analysis and developmental TISSUE MECHANICS 43 biology.

The reaction proceeds in time in oscillating spirals. There are a number of websites that contain movies of BZ reactions. These movies give a better impression of the oscillatory character of the reaction than does this snapshot. gif. Courtesy of Art Winfree. (b) Top row of four circular frames: target patterns (circular waves) generated by pacemaker nuclei in the Belousov-Zhabotinskii reaction. The photographs are about 1 minute apart. Second row of four circular frames: spiral waves, initiated by gently stirring the reagent.

Both free object diagrams and control volumes are drawings made to simplify the application of conservation principles to a particular physical situation. A conservation principle can often be written in the form of an accounting statement: [The time rate of change of a quantity in a system] = [the amount of the quantity coming into the system per unit time] – [the amount of the quantity leaving the system per unit time] + [the amount of the quantity produced within the system per unit time] – [the amount of the quantity consumed within the system per unit time].

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