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If uncertainty in position and momentum ...

If uncertainty in position and momentum are equal then uncertainty in velocity is.

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If uncertainly in position and momentum are equal then uncertainty in velocity is

When uncertainty in position and momentum are equal, then uncertainty in velocity is

It is not possible to determine preciselt both the position and momentum (or velocity) of a small moving particle such as electron, proton etc. This is known as Heisenber uncertainty principle. The mathemactical form of this principle is : Delta x.Delta p ge (h)/(4pi) (constant) However this principle is irrevalent in case of bigger particles such as a cup, ball, car etc., that we come across in our daily life. If uncertainty in position and momentum are equal, the v uncertainty in velocity would be

It is not possible to determine precisely both the position and momentum (or velocity) of a small moving particle such as electron, proton etc. This is known as Heisenberg uncertainty principle. The mathematical form of this principle is : Delta x.Delta p ge (h)/(4pi) (constant) However this principle is irrelevant in case of bigger particles such as a cup, ball, car etc., that we come across in our daily life. If uncertainty in position and momentum are equal, the v uncertainty in velocity would be

When uncertainty in position and momentum are equal, then the uncertainly in velocity is

If uncertainties in position and momentum are equal , the uncertainty of velocity is given by :

If the uncertainties in position and momentum are equal, the uncertainty in the velocity is :