| 1. | The direction of the drag force is parallel to the relative wind.
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| 2. | The dynamics may also be described by introducing an effective drag force.
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| 3. | It causes a strong drag force to be exerted on the body.
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| 4. | Drag force is directly influenced by the change of Sauter diameter.
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| 5. | As the forward motion slows, the drag force drops and this deceleration diminishes.
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| 6. | The drag force is mainly induced by the main flow in those applications.
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| 7. | The total force ( gravity + drag force ) on the object is approximately:
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| 8. | The drag force acting on the drop can then be worked out using Stokes'law:
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| 9. | By extension, the lift and drag forces will also be functions of \ omega.
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| 10. | The flow of the fluid around the airfoil gives rise to lift and drag forces.
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