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      • In essence, the Schrödinger puzzle (or quantum puzzle) creates two different solutions for the reader, using the same clues. Like Schrödinger’s closed box, both options are equally valid, and exist simultaneously. Or in other words: It’s a two-for-one deal.
      grid-alchemy.com/2022/01/12/making-a-schrodinger-puzzle-part-1/
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  2. In quantum mechanics, Schrödinger's cat is a thought experiment concerning quantum superposition. In the thought experiment, a hypothetical cat may be considered simultaneously both alive and dead, while it is unobserved in a closed box, as a result of its fate being linked to a random subatomic event that may or may not occur.

  3. Aug 21, 2019 · Now a new study looks at how the cat in the famous puzzle could exist through a bit of quantum trickery. First, let's recap "Schrödinger's Cat." In 1935, Austrian physicist Erwin Schrödinger...

  4. It looks like a Futoshiki puzzle, 4x4 grid, with greater than/less than signs between cells. You're supposed to end up with a unique solution. Place numbers from 1 to N (N being the size of the grid) without repeating a number in any row or column and obeying the comparison symbols.

  5. Jan 12, 2022 · In essence, the Schrödinger puzzle (or quantum puzzle) creates two different solutions for the reader, using the same clues. Like Schrödinger’s closed box, both options are equally valid, and exist simultaneously. Or in other words: It’s a two-for-one deal.

  6. Jul 26, 2023 · What are Schrödinger puzzles? Named after the famous Schrödinger’s cat thought experiment in quantum physics, Schrödinger puzzles have a duality that set them apart from traditional crosswords. In a standard crossword, each clue corresponds to one specific word or phrase.

  7. Apr 13, 2013 · First, Schrodinger himself stated clearly that the cat would be in one state or another; the puzzle is why. The best answer I know is that it is possible to get weird quantum states, but they are very delicate.

  8. Schrödinger's cat is a famous hypothetical experiment designed to point out a flaw in the Copenhagen interpretation of superposition as it applies to quantum theory.

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