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Reply Some weeks ago, the Riemann zeta function and the Riemann hypothesis were again in the news. Sir Michael Atiyah proposed a wrong failed proof of the Riemann hypothesis. My blog has an history of being controversial from time to time.

So I am going to reveal another of my craziest ideas here. I can be wrong and it is just a curious coincidence I noted long ago but as it is short, I decided to postpone it to a transitional post like this.

What is this thing about? Let me explain me better… The cosmological constant that Einstein introduced like a property of spacetime is related to a possible new length scale usually tied to the Hubble length in Cosmology. It is also related to de Sitter spacetimes and the so-called Garidi mass in de Sitter group representations.

Taking as fundamental constant, together the tripleyou get the quadruple set of parameters.

This is known from Wesson or Garidi in de Sitter spacetime representation theory. We recall that we can define the Planck length and the cosmological lengthand you can easily prove I have done this before in this blog that 1 is a sort of cosmic fine structure constant. What has all this to do with my post and the Riemann zeta function?

Just a weird numerical coincidence I noted some years ago and I did not publish because is completely crazy.

We have as you probably know two different determinations ofwe can denote them by and. They differ about just the above cosmic fine structure constant factor.

Theoretical physicists are just depressed when they got a prediction that it is about orders of magnitude different from observational data! Now, a curious coincidence I like to compare it to the moonshine conjecture since it involves large numbers, like those also used in Dirac-Eddington hypothesis:The contents of the TeX Live ports are listed below.

This list is current as of TeX Live texlive-basic. amsfonts: TeX fonts from the American Mathematical Society.

Newton’s gravity reads: In extra dimensions,,, it reads For extra dimensions, if their size are much smaller than considered distances,, then by matching So, gravitational is weak in our scale because it gets diluted through extra dimensions.

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