EPISODE · May 9, 2026 · 30 MIN
Chromaticity
from Quantum Foam
Here is the eleventh episode of Quantum Foam, Chromaticity. A new String Theory membrane is required to create the essence of Sir Isaac Newton. Quantum Chromodynamics. Chromaticity. They refer to the color vibrancy. We are interested in how different display technology can project items in our viewable color spaces. There is a problem with the old color space gamut. Red is red and yellow is yellow. They finally made English the language of programming. Red is monochromatic and is equivalent to 516 nanometers according to some standards. We want the newest standards for Ultra High Definition devices. DisplayMate makes it a business to communicate the standards to the display industry. Right now we have 4K and 8K display devices. These new standards are created to be able to show a High Dynamic Rage in 10-bit and 12-bit depths. Programming the universe may utilize this chromaticity, which attempts to fabricate a method to display our reality. We want new visualizers that use these high-quality color spaces. This is green to white technology. The 10-bit color depth capability with these displays supposedly show all of the natural, real colors that are in the gamut of spectrum that can we see. What is a brightness and what is a color? There are LCD, LED, and OLED flat displays that we have currently available to us. A TV display takes normalized data and makes it uniform. We are considering a 16-cubit display proposed gamut matrix. We have averaged spectrophotometric information. One screen needs to be able to match another screen on another device. We are attempting to create animated voxels that can be displayed as holograms with a 3D chromaticity. What are we to do with all this spectrophotometric data? James Webb Space Telescope images are coming down hot from outer space. Different color filters are applied and then images are recorded in large digital files. The spectral power distribution will tell us the colors to display. How much power is required in order for us to gage the SPD lambda brightness? What we do is split colors. There were old standards used to display colors that didn't correctly represent certain aspects of the image in question. I've seen code in general. There isn't really that much that has been updated in Artificial Intelligence. We have had computers that are able to talk to us for years. We are speaking about the colors so that we can have the tools we need for describing future scientific diagrams. The subset of color that we can come up with can use and cross-reference the software for the creation of Theory Of Everything universes. XYZ linear space is being used. We need to run these through a quantum computer using Linear Calculus Equations. We need a new box version of a color space which can display 16-cubit accuracy. It is possible to create a true difference engine. It would be nice to have a tachyon generator and send data to the future. The best starting point for color has already been made as a standard. This provides the standard color prism. Daylight is described with better math using the newest standards included in the chromaticity of the display technology.
What this episode covers
An Uncensored Podcast Directly Taking On Physics, Mathematics, Science, and The Theory Of Everything.
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Chromaticity
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