Uploaded August 2023 | Updated September 2026, 1 day ago
A lively discussion with Joe Archbold, Dave Thomas and others, on "Looking Under the Hood of Wave/Particle Duality."
Resources:
Quantum Mechanics: A Dublin Interpretation With a Solution to the Measurement Problem
gsjournal.net/Science-Journals/Research%20Papers-Quantum%20Theory%20/%20Particle%20Physics/Download/9384
Joe Archbold's Powerpoint Presentation
nmsr.org/Archbold-Waves-08-09-2023.pdf
Dave Thomas's Powerpoint Presentation
nmsr.org/quantum-mechanix-dave-thomas.pdf
The Zoom Chat:
00:08:04 Coffee Brown: youtube.com/watch?v=_dQJBBklpQQ
00:30:01 Randy Truman: Galileo's Thermometer contains a number of floating balls that rise and fall according to the temperature of the fluid indicated by the lowest floating ball. This demonstrates the effect of temperature on buoyancy.
00:32:37 Randy Truman: A Cartesian diver shows the effect of pressure on the buoyancy of the submerged object. Increased fluid pressure reduces the displaced volume of the deformable object which reduces the buoyancy force.
00:33:14 Coffee Brown: "Gallileo's" ,,, thanks randy.
00:33:39 Coffee Brown: The temperature and density of the water are functions of each other,
00:34:03 Coffee Brown: Can we post that link here?
00:34:06 David Thomas: Joe’s link : gsjournal.net/Science-Journals/Research%20Papers-Quantum%20Theory%20/%20Particle%20Physics/Download/9384
00:34:16 Coffee Brown: Got it.
00:34:38 David Thomas: archbold@flash.net
00:58:29 Gerry Alldredge: Dave:
01:03:17 Gerry Alldredge: Dave (et al.): The Weinberg paper I mentioned on phone today is: journals.aps.org/pra/abstract/10.1103/PhysRevA.93.032124. {What happens in a measurement?
Steven Weinberg
Phys. Rev. A 93, 032124 – Published 18 March 2016}. It's earlier than I recalled on phone.
01:35:18 Coffee Brown: en.wikipedia.org/wiki/Hydrogen_spectral_series
01:36:18 Gerry Alldredge: I hit a wall in Weinberg's paper at "Lindblad equation". Anyone out there able to offer some insight there? --Gerry
01:39:33 Coffee Brown: en.wikipedia.org/wiki/Stern%E2%80%93Gerlach_experiment
A lively discussion with Joe Archbold, Dave Thomas and others, on "Looking Under the Hood of Wave/Particle Duality."
Resources:
Quantum Mechanics: A Dublin Interpretation With a Solution to the Measurement Problem
gsjournal.net/Science-Journals/Research%20Papers-Quantum%20Theory%20/%20Particle%20Physics/Download/9384
Joe Archbold's Powerpoint Presentation
nmsr.org/Archbold-Waves-08-09-2023.pdf
Dave Thomas's Powerpoint Presentation
nmsr.org/quantum-mechanix-dave-thomas.pdf
The Zoom Chat:
00:08:04 Coffee Brown: youtube.com/watch?v=_dQJBBklpQQ
00:30:01 Randy Truman: Galileo's Thermometer contains a number of floating balls that rise and fall according to the temperature of the fluid indicated by the lowest floating ball. This demonstrates the effect of temperature on buoyancy.
00:32:37 Randy Truman: A Cartesian diver shows the effect of pressure on the buoyancy of the submerged object. Increased fluid pressure reduces the displaced volume of the deformable object which reduces the buoyancy force.
00:33:14 Coffee Brown: "Gallileo's" ,,, thanks randy.
00:33:39 Coffee Brown: The temperature and density of the water are functions of each other,
00:34:03 Coffee Brown: Can we post that link here?
00:34:06 David Thomas: Joe’s link : gsjournal.net/Science-Journals/Research%20Papers-Quantum%20Theory%20/%20Particle%20Physics/Download/9384
00:34:16 Coffee Brown: Got it.
00:34:38 David Thomas: archbold@flash.net
00:58:29 Gerry Alldredge: Dave:
01:03:17 Gerry Alldredge: Dave (et al.): The Weinberg paper I mentioned on phone today is: journals.aps.org/pra/abstract/10.1103/PhysRevA.93.032124. {What happens in a measurement?
Steven Weinberg
Phys. Rev. A 93, 032124 – Published 18 March 2016}. It's earlier than I recalled on phone.
01:35:18 Coffee Brown: en.wikipedia.org/wiki/Hydrogen_spectral_series
01:36:18 Gerry Alldredge: I hit a wall in Weinberg's paper at "Lindblad equation". Anyone out there able to offer some insight there? --Gerry
01:39:33 Coffee Brown: en.wikipedia.org/wiki/Stern%E2%80%93Gerlach_experiment










