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    • https://phys.libretexts.org/Bookshelves/Conceptual_Physics/Body_Physics_-_Motion_to_Metabolism_(Davis)/14%3A_Lab_Extension_Activities/14.06%3A_Unit_8_Lab_Extension-_Modeling_Terminal_Velocity_and_Extracting_Drag_Coefficient
      We can turn the previous statements into a quantitative hypothesis: If identically shaped objects of different mass are dropped under the same conditions, then the terminal velocity the objects will b...We can turn the previous statements into a quantitative hypothesis: If identically shaped objects of different mass are dropped under the same conditions, then the terminal velocity the objects will be proportional to the ____________ of the mass. Compare the two equations to determine what combination of physical parameters must equal the number in front of x that you see in your fit equation. (Remembering that the x in your equation represents mass and the y represents terminal velocity).

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