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Brand New Result Proving Penrose & Tao's Uncomputability in Physics!

Theories of Everything with Curt Jaimungal

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Fluid Dynamics and Computation

This chapter explores the complexities of the Navier-Stokes and Euler equations in fluid dynamics, emphasizing the challenges of proving smooth solutions and the implications of undecidability in fluid behavior. It introduces a groundbreaking theorem establishing the relationship between fluid flows and computational theory, suggesting that three-dimensional Euler flows can function as Turing machines. The discussion also highlights advancements in understanding geometric transformations and the potential for fluid systems to exhibit undecidable properties.

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