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I appreciated the information being presented, but when the controls are not visible at the same time as the thing they effect it makes the interactive component almost worthless.
Nicely illustrated, and only one criticism: our preference for luminance (using more bits for "Y" vs "Cr/Cb") isn't due to the number of rods in the eye - there are so many rods so that we can capture more photons at night, and they are usually saturated at daylight illuminances. The effectiveness of the YCbCr encoding is much more related to the predominant pathway to the LGN (80-90% of the "number of bits" used) encoding luminance and center-surround, so those things both map well to using more bits for "Y".
This has been one of the best explanations I've seen, thanks for sharing
I appreciate the insight to something I use all the time.
I remember when I first learned about the difference between spatial and frequency domains. I didn’t actually get it fully during class. But during the walk home I had to stop and sit down and think about it… I started to “refactor” all of human history into frequency changes! It’s a pretty interesting concept.
One interesting thing about JPEG is that you can do some lossless manipulations with it. In particular, you can concatenate multiple images together.

Unfortunately, no common JPEG libraries expose these operations. Your only option is to use some crusty C-based code that hasn't been updated since the 2010-s.

Thanks, this is a clear explanation, thanks for sharing! I’d be curious in follow ups on other formats like PNG
Low quantized jpeg is such a recognizable and nostalgic aesthetic.