When the Force on an Object Increases So Does Its
That is the area under the curve of an acceleration vs. Here the flow is laminar with N R less than 1.
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A Motion of this sphere to the right is equivalent to fluid flow to the left.
. Here and elsewhere if motion is in a straight line vector quantities can be substituted by scalars in the equations. It thus requires more force to accelerate it the same amount than it did at a lower velocity. Relativistic force does not produce a constant acceleration but an ever-decreasing acceleration as the object approaches the speed.
T graph corresponds to the change of velocity. By the fundamental theorem of calculus it can be seen that the integral of the acceleration function at is the velocity function vt. This force becomes your apparent weight which points in a direction backward and down.
The apparent weight of an accelerating object is the vector sum of its real weight and the negative of all the forces that produce the objects acceleration a dvdt. The net force experienced is the vector sum of these two forces. There is a force called viscous drag F V to the left on the ball due to the fluids viscosityb At a higher speed the flow becomes partially turbulent creating a wake starting where the flow lines separate from the surface.
Newtons Second Law. W apparent w real - ma. When an objects velocity increases so does its energy and hence its mass equivalent inertia.
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