(Requires integral calculus.) Imagine that a quanton's wavefunction at a given time is y(x) = Ae¯xal, where A is an unspecified constant and a = 35 nm. If we were to perform an experiment to locate the quanton at this time, what would be the probability (as a percent) of a result within +0.47 a = ±16.45 nm of the origin? The probability is Note: Round the final answer to one decimal place. %.
(Requires integral calculus.) Imagine that a quanton's wavefunction at a given time is y(x) = Ae¯xal, where A is an unspecified constant and a = 35 nm. If we were to perform an experiment to locate the quanton at this time, what would be the probability (as a percent) of a result within +0.47 a = ±16.45 nm of the origin? The probability is Note: Round the final answer to one decimal place. %.
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![(Requires integral calculus.) Imagine that a quanton's wavefunction at a given time is y(x) Ae-x/al, where A is an unspecified
=
constant and a = 35 nm . If we were to perform an experiment to locate the quanton at this time, what would be the probability (as a
percent) of a result within ±0.47 a = ±16.45 nm of the origin?
The probability is
Note: Round the final answer to one decimal place.
%.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F00e5c5de-298c-41fb-9861-0262471f9c17%2Fd0811aaf-e226-432f-90e5-08b35555130a%2Fjutr4wo_processed.png&w=3840&q=75)
Transcribed Image Text:(Requires integral calculus.) Imagine that a quanton's wavefunction at a given time is y(x) Ae-x/al, where A is an unspecified
=
constant and a = 35 nm . If we were to perform an experiment to locate the quanton at this time, what would be the probability (as a
percent) of a result within ±0.47 a = ±16.45 nm of the origin?
The probability is
Note: Round the final answer to one decimal place.
%.
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