On Mon, Oct 5, 2015 Bruno Marchal <[email protected]> wrote: > >> >> No, it does make Einstein wrong because Einstein detested non locality >> even more than he hated non determinism. >> > > > But the experience here does not show the existence of physical > non-locality, it only shows the way we are entangled through many > universes/histories/computations. It is just that Einstein did not thought > on the many-worlds way of interpreting the wave. >
Another world is about as non-local as you can get and good thing too because any physical theory that is consistent with experiment can not be realistic deterministic and local, at least one attribute has to go. >> >> >> From a philosophical point of view the universal wave equation is of no >> more importance than lines of latitude and longitude, only the square of >> the absolute value is of any importance and even then it is only a >> probability, at least latitude and longitude define a exact position. > > > > > But the only explanation why the square gives the results we get at the > place we do the measurement needs to accept that the wave go through those > places, > We know from Gleason's theorem that in 3 spatial dimensions only the square of Schrodinger's wave (the Born rule), and not the cube or anything else, can yield a probability without inconsistencies; so the real question isn't why is the Born rule a square but why is it a probability at all. > > > and that is not the case with latitude and longitude lines. > With latitude and longitude I can calculate a exact position, but with Schrodinger's wave the best I can do is a probability. > > > I can make the wave interfering. > But you can get the same results by ignoring waves and just calculate the probability using Heisenberg's matrices. John K Clark -- You received this message because you are subscribed to the Google Groups "Everything List" group. To unsubscribe from this group and stop receiving emails from it, send an email to [email protected]. To post to this group, send email to [email protected]. Visit this group at http://groups.google.com/group/everything-list. For more options, visit https://groups.google.com/d/optout.

