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- The force of drag is the force component in the direction of the flow velocity that an object experiences when moving through a fluid1. The drag equation is Fd = 1/2 * ρ * u² * A * Cd21, where Fd is the drag force, ρ is the fluid density, u is the relative velocity, A is the reference area, and Cd is the drag coefficient21. The drag coefficient depends on the object's geometry and accounts for both skin friction and form drag1.Learn more:✕This summary was generated using AI based on multiple online sources. To view the original source information, use the "Learn more" links.
Drag equation
- is the drag force, which is by definition the force component in the direction of the flow velocity,
- is the mass density of the fluid, [1]
- is the flow velocity relative to the object,
en.wikipedia.org/wiki/Drag_equationwww.symbolab.com/calculator/physics/drag-equation - People also ask
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6.6: Drag Force and Terminal Speed - 5.2: Drag Forces - Physics LibreTexts
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Drag Forces | Physics - Lumen Learning
WEBLearn how to calculate the drag force on an object moving in a fluid, and how it depends on velocity, shape, size, and density. Explore the applications of drag force and the concept of terminal velocity.
6.4 Drag Force and Terminal Speed | University …
WEBDrag forces acting on an object moving in a fluid oppose the motion. For larger objects (such as a baseball) moving at a velocity in air, the drag force is determined using the drag coefficient (typical values are given in …
5.2 Drag Forces – College Physics - University of …
WEBDrag force F D F D is found to be proportional to the square of the speed of the object. Mathematically. F D ∝v2 F D ∝ v 2. F D = F D = 1 2 1 2 CρAv2, C ρ A v 2, where C C is the drag coefficient, A A is the area of the …
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WEBAs mentioned, the drag equation with a constant drag coefficient gives the force moving through fluid a relatively large velocity, i.e. high Reynolds number, Re > ~1000. This is also called quadratic drag.
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