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4 - UWO Physics
4 - UWO Physics

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Questions – Impulse and Momentum

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... is the velocity. The SI unit for linear momentum is the kilogram meter per second, or a unit of mass times a unit of speed. The relationship between impulse and momentum comes from Newton's second law. ...
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... projectiles have a downward acceleration and that this only affects the vertical velocity for a projectile there is no acceleration in the horizontal direction (ignore air resistance) the greater the mass of an object and/or the greater velocity, the more momentum the object has in that direction mo ...
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... Force is directly proportional to mass and acceleration. Imagine a ball of a certain mass moving at a certain acceleration. This ball has a certain force. Now imagine we make the ball twice as big (double the mass) but keep the acceleration constant. F = ma says that this new ball has twice the forc ...
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... •Electromagnetic force--!—Electroweak force Non-fundamental forces: Pushing, Pulling, Kicking, Grabbing, etc…. These are related to the electromagnetic force. They arise from the interactions between the electrically charged particles that comprise atoms and molecules. ...
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... controversies  and  inadequacies  in  a   competing  theory   b) all  facts  are  considered  and  discussed   c) the  hypothesis  is  not  at  risk.  If  data   does  not  agree  with  the  hypothesis,   then  the  data  is  assumed  t ...
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... Example: a proton-proton collision A proton collides elastically with another proton that is initially at rest. The incoming proton has an initial speed of 3.50 X 105 m/s and makes a glancing collision with the second proton*. After the collision, one proton moves off at an angle of 370 to the orig ...
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... a.- Use the method of finite differences using the various different finite different schemae presented in the text to obtain approximations for u(x, t). Carry out mesh extensions and give the values of the approximation error as a function of the number of nodes in the FD model. b.- Solve the probl ...
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Equations of motion

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