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19 October 2022
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Created page with "The expression for can be readily applied to the probabilities and positions as defined above, resulting in the first term given by <center> {| width="80%" | |- | width="33%" | | width="33%" |{{CD1}}<math>\langle x^2(t)\rangle=\sum_{j=1}^{92}P_j(t) x_j^2</math>{{CD2}} | width="33%" align="right" |<math>(8)</math> |} </center> And the second term given by the square of Eq. (4). The second term of <math>\Delta P_x</math> is given by the square of Eq. (5), but the f..."
+1,501