How many photons per second are emitted by a -mW CO2 laser that has a wavelength of mm?
(a) The -coordinate of an electron is measured with an uncertainty of mm. What is the x-component of the electron's velocity, , if the minimum percent uncertainty in a simultaneous measurement of is ?
(b) Repeat part (a) for a proton.
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Key Concepts
Uncertainty Principle
Percent Uncertainty
Velocity and Kinematics
Two stars, both of which behave like ideal blackbodies, radiate the same total energy per second. The cooler one has a surface temperature and a diameter times that of the hotter star.
(a) What is the temperature of the hotter star in terms of ?
(b) What is the ratio of the peak-intensity wavelength of the hot star to the peak-intensity wavelength of the cool star?
Photorefractive keratectomy (PRK) is a laser-based surgical procedure that corrects near- and farsightedness by removing part of the lens of the eye to change its curvature and hence focal length. This procedure can remove layers mm thick using pulses lasting ns from a laser beam of wavelength nm. Low-intensity beams can be used because each individual photon has enough energy to break the covalent bonds of the tissue. If a -mW beam is used, how many photons are delivered to the lens in each pulse?
A scientist has devised a new method of isolating individual particles. He claims that this method enables him to detect simultaneously the position of a particle along an axis with a standard deviation of nm and its momentum component along this axis with a standard deviation of kg-m/s. Use the Heisenberg uncertainty principle to evaluate the validity of this claim.
The uncertainty in the y-component of a proton's position is m. What is the minimum uncertainty in a simultaneous measurement of the -component of the proton's velocity?
-g marble is gently placed on a horizontal tabletop that is m wide.
(a) What is the maximum uncertainty in the horizontal position of the marble?
(b) According to the Heisenberg uncertainty principle, what is the minimum uncertainty in the horizontal velocity of the marble?
(c) In light of your answer to part (b), what is the longest time the marble could remain on the table? Compare this time to the age of the universe, which is approximately billion years. (Hint: Can you know that the horizontal velocity of the marble is exactly zero?)
