Consider a 2430 lb automobile clocked by law-enforcement radar at a speed of 85.5 mph (miles per hour). If the position of the car is known to within 5.0 ft at the time of the measurement, what is the uncertainty in the velocity of the car? Δυ Σ If the speed limit is 75 mph, could the driver of the car reasonably evade a speeding ticket invoking the Heisenberg uncertainty principle? yes no mph

Modern Physics
3rd Edition
ISBN:9781111794378
Author:Raymond A. Serway, Clement J. Moses, Curt A. Moyer
Publisher:Raymond A. Serway, Clement J. Moses, Curt A. Moyer
Chapter5: Matter Waves
Section: Chapter Questions
Problem 18P
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Consider a 2430 lb automobile clocked by law-enforcement radar at a speed of 85.5 mph (miles per hour). If the position of the
car is known to within 5.0 ft at the time of the measurement, what is the uncertainty in the velocity of the car?
Δυ Σ
If the speed limit is 75 mph, could the driver of the car reasonably evade a speeding ticket by invoking the Heisenberg
uncertainty principle?
yes
no
mph
Transcribed Image Text:Consider a 2430 lb automobile clocked by law-enforcement radar at a speed of 85.5 mph (miles per hour). If the position of the car is known to within 5.0 ft at the time of the measurement, what is the uncertainty in the velocity of the car? Δυ Σ If the speed limit is 75 mph, could the driver of the car reasonably evade a speeding ticket by invoking the Heisenberg uncertainty principle? yes no mph
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