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A laboratory model of inertia-driven unsteady flow in the coronary arteries is being developed. All dimensions are three times larger than the original dimensions. The

  1. A laboratory model of inertia-driven unsteady flow in the coronary arteries is being developed.

  2. All dimensions are three times larger than the original dimensions.

  3. The working fluid is a glycerol-water mixture that has the same physical properties as blood. 

  4. Determine the frequency of the scale model relative to the original mode.

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