3 ms·
I wasn't aware brains were made of things other than atoms and molecules. Interesting stuff.
by deciplex 10y ago
I wasn't aware brains were made of things other than atoms and molecules. Interesting stuff.
- effie 10y agoI do not claim that, please read again more carefully. If you do describe the joint system experiment+brain with quantum-theoretic formalism, the brain does get entangled. However, my objection is to the very idea of using quantum-theoretic formalism to describe macroscopic things. Because: even if we imagine we somehow obtained a solution to Schroedinger's equation for this system, we have no need for it. The purpose of \psi function is to get probabilities of system configuration or results of measurement of some quantity. This is useful for comparing the theory of natural phenomena with the reality. Much less so for describing the system of experiment+experimenter. Would you want to apply the quantum formalism to obtain probabilities of the end states of the joint system, when you can just ask the experimenter on what was the result of measurement and thus obtain definite answer with more value to physics?
- deciplex 10y agoUhhh..... > Regarding the entanglement of brain with experiment, that is totally unfounded extrapolation of applicability of many-particle Schroedinger's equation. It is useful for atoms and molecules, but it is practically intractable for systems of few atoms. It seems like you're saying that a different physics governs reality once the number of particles is large enough. Is your sole objection instead that rigorously describing the state of a brain is computationally intractable? If so, what bearing does that have on this: > We shouldn't assign mysterious properties to "measurement" as though it's some magical thing that just makes quantum mechanics happen. Just call it what it is: entangling the state of your brain with the results of an experiment. To answer your question, I don't need formally specify the experimenter in rigorous detail, in order to reason about what is going to happen when I ask the experimenter the result. It's also weird that you mention that I can "just ask the experimenter" when that doesn't really help me make any predictions. (Unless I try to predict what the experimenter will say, at which point we're back to entangled brains again.) What were you getting at with that?