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Force and Motion II 2.0
Force and Motion II 2.0

... The last line in the derivation reveals precisely how F depends on x. In summary, by inserting the motion function x = Asin(2t/T) into Newton’s law, F = m d2x/dt2 , we have deduced the following force function: F(x) =  (42m/T2) x . ...
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... • Velocity refers to both speed and direction • Acceleration means a change in velocity • Mass is a property of objects that represents their reluctance to accelerate • If an object is accelerating, it’s being acted on by an unbalanced force, and F = ma • Gravity causes all objects to suffer the sam ...
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... (a) For a car traveling with speed v around a curve of radius r, determine a formula for the angle at which a road should be banked so that no friction is required. (b) What is this angle for an expressway off-ramp curve of radius 50 m at a design speed of 50 km/h? ...
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... pattern may be used.  The key to safe and successful weight lifting is in arranging the various levers involved in such a way as to minimize the torque produced by the external resistance while maximizing the ...
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... to the net force acting on the body (a ∝ FN ET ) and inversely proportional 1 ). Combining these two, we can replace the to the mass of the body (a ∝ m proportionality with equality. That is, a= ...
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... Once the ball is moving, it will continue to move in a straight line at a constant speed, unless another force changes its motion. You need force to start things moving and also to make any change to their motion once they are moving. Forces can be used to increase or decrease the speed of an object ...
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... As we can see from the spreadsheet, the velocity does not continue to increase (as it would without air resistance), but instead it approaches a terminal velocity. This is because as the speed increases due to gravity, the air resistance also increases which acts against gravity. As the air resistan ...
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Newton`s Unified Theory

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Newton's laws of motion

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