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  2. File:Muscle Force Velocity relationship.png - Wikipedia

    en.wikipedia.org/wiki/File:Muscle_Force_Velocity...

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  3. Hill's muscle model - Wikipedia

    en.wikipedia.org/wiki/Hill's_muscle_model

    is the maximum velocity, when = Although Hill's equation looks very much like the van der Waals equation, the former has units of energy dissipation, while the latter has units of energy. Hill's equation demonstrates that the relationship between F and v is hyperbolic. Therefore, the higher the load applied to the muscle, the lower the ...

  4. File:Velocity vs time graph.svg - Wikipedia

    en.wikipedia.org/.../File:Velocity_vs_time_graph.svg

    This vector image was created with Inkscape. ... Description=Example of a en:velocity vs. time graph, and the relationship between velocity v, en:displacement s, ...

  5. Bond graph - Wikipedia

    en.wikipedia.org/wiki/Bond_graph

    Bond graphs are multi-energy domain (e.g. mechanical, electrical, hydraulic, etc.) and domain neutral. This means a bond graph can incorporate multiple domains seamlessly. The bond graph is composed of the "bonds" which link together "single-port", "double-port" and "multi-port" elements (see below for details).

  6. File:Velocity Time physics graph.svg - Wikipedia

    en.wikipedia.org/wiki/File:Velocity_Time_physics...

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  7. Free body diagram - Wikipedia

    en.wikipedia.org/wiki/Free_body_diagram

    A body is said to be "free" when it is singled out from other bodies for the purposes of dynamic or static analysis. The object does not have to be "free" in the sense of being unforced, and it may or may not be in a state of equilibrium; rather, it is not fixed in place and is thus "free" to move in response to forces and torques it may experience.

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  9. Motion graphs and derivatives - Wikipedia

    en.wikipedia.org/wiki/Motion_graphs_and_derivatives

    Since the velocity of the object is the derivative of the position graph, the area under the line in the velocity vs. time graph is the displacement of the object. (Velocity is on the y-axis and time on the x-axis. Multiplying the velocity by the time, the time cancels out, and only displacement remains.)