An atom of xenon has a radius Ixe = 108. pm and an average speed in the gas phase at 25°C of 137.m/s. Suppose the speed of a xenon atom at 25°C has been measured to within 1.0%. Calculate the smallest possible length of box inside of which the atom could be known to be located with certainty. Write your answer as a multiple of Ixe and round it to 2 significant figures. For example, if the smallest box the atom could be in turns out to be 42.0 times the radius of an atom of xenon, you would enter "42.rxe" as your answer.
An atom of xenon has a radius Ixe = 108. pm and an average speed in the gas phase at 25°C of 137.m/s. Suppose the speed of a xenon atom at 25°C has been measured to within 1.0%. Calculate the smallest possible length of box inside of which the atom could be known to be located with certainty. Write your answer as a multiple of Ixe and round it to 2 significant figures. For example, if the smallest box the atom could be in turns out to be 42.0 times the radius of an atom of xenon, you would enter "42.rxe" as your answer.
Chemistry: Principles and Reactions
8th Edition
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:William L. Masterton, Cecile N. Hurley
Chapter2: Atoms, Molecules, And Ions
Section: Chapter Questions
Problem 93QAP: Hydrogen gas is prepared in a lab experiment. In this experiment, 18.00 g of aluminum metal are...
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