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  ​

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