4 ms·
Each coin-toss is a deterministic physical process governed by laws of motion. If we had perfect information about the motion of all components in the system (
by idontpost 4y ago
Each coin-toss is a deterministic physical process governed by laws of motion. If we had perfect information about the motion of all components in the system (hand, coin, air, floor, etc.), then we could, in principle, perfectly predict the outcome of every toss. Each individual toss would have a 100% probability of its predicted outcome.
Since we typically lack any of that information, we are stuck with the 50 / 50 prior distribution.
- davrosthedalek 4y agoThis is very debatable if you throw QM into the mix. From all what we know, we cannot predict everything with 100% success rate -- QM cannot be explained by a hidden variables model.
- tezthenerd 4y agoArgh - yes it can. Bell explicitly have a pretty trivial one in one of his early papers. QM cannot be explained by a non-contextual hidden variables model. (The simplest physical version of contextuality is locality - so as Bell showed you cannot explain quantum theory with a local hidden variables model).
- davrosthedalek 4y agoLet's not break causality by observing non-local hidden variables.
- Q_is_4_Quantum 4y agoPresumably talking to the wind here as this thread is old, but nonlocal hidden variables do not break causality! This can be seen explicitly in Bell's trivial model, where the state of a system is just the regular quantum state plus a uniform random number between 0 and 1 (hidden). Or put it this way, if this model "breaks causality" then so does regular non-relativistic quantum theory.
- idontpost 4y ago