The term " resultant " in mathematics and physics is usually applied to the net result of adding two or more forces ( or other vector quantities ).
22.
But in physics, when we say a force causes acceleration, by " acceleration " we mean a change in velocity, which is a vector quantity.
23.
The total momentum \ vec { p } of the system, a vector quantity, can also be computed by adding together the momenta of all its components.
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Note that both the force and the electric field are vector quantities, so a positive test charge will experience a force in the direction of the electric field.
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With a negative square it cannot be a scalar or vector quantity, so it is a new sort of object, a "'bivector " '.
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:Escape velocity is infact a vector quantity, as it is relative to the centre of gravity . talk ) 05 : 49, 22 March 2011 ( UTC)
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Sez who ? ( And yes, I know quite well that acceleration is a vector quantity yadda yadda yadda . ) Clarityfiend 22 : 11, 11 September 2006 ( UTC)
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Shocks are vector quantities with the direction of the shock being important to the item of interest, Shock detectors also can be highly sensitive to the direction of the input shock.
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I suspect that using the Latinate word for the vector quantity and the Anglo-Saxon one for the scalar was a quite arbitrary choice at some point, made just for convenience.
30.
:For your second question, note that momentum is a vector quantity, so it has both magnitude " and direction "-that should put you on the right track.
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