An electron traveling at 4.5Ã—105m/s has an uncertainty in its velocity of 1.95Ã—105m/s .What is the uncertainty in its position?

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What is the uncertainty in its position? - Yahoo!: given: An electron traveling at 2.5×10^5 m/s has an uncertainty in its velocity of 7.46×10^4 m/s. What is the uncertainty in its position? Delta x = ? units?

Uncertainty principle - Wikipedia, the free: In quantum mechanics, the uncertainty principle is any of a variety of mathematical inequalities asserting a fundamental limit to the precision with which certain

What is the uncertainty (of the electron) in its: Best Answer: It does. So go study the mathematical statement of it. The problem is really simple.

Heisenberg Uncertainty Principle - find minimum: Heisenberg Uncertainty Principle - find minimum uncertainty in position in Introductory Physics Homework is being discussed at Physics Forums

Yahoo! Answers - What is the uncertainty in its: Best Answer: 1) You can only find the MINIMUM uncertainty in its position which I will assume is what the question wants. 2) You haven't bothered to give

The Heisenberg Uncertainty Principle - Morningside: That is, if the uncertainty in momentum is small, the uncertainty in position is large. Mathematically, Heisenberg's result looks like this:

An Electron Has An Uncertainty In Its Position Of |: Answer to An electron has an uncertainty in its position of 552 pm. What is the uncertainty in its velocity? (Mass of an electron .

Estimate the uncertainty in its position -: What is the uncertainty of the position of the bacterium? i couldn't help u there sorry When uncertainty in position of an electron is zero what will be uncertainty

The Uncertainty Principle (Stanford Encyclopedia of: This is the first formulation of the uncertainty principle. In its present form it is an epistemological principle, its position is measured with inaccuracy

Uncertainty Principle - Mac OS X Server: the uncertainty principle states that the position and velocity cannot both be measured,exactly, at the same time (actually pairs of position, energy and time)