Einstein for Everyone
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Einstein for Everyone
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Re: Einstein for Everyone
#2Re: Einstein for Everyone
#3HN, what does "Whether it decays or not depends upon properties of that system that have been smoothed away by the quantum wave" mean?! What properties exactly, and smoothed away how? Just by the fact that observing the system causes a change within the system and therefore changes the quantum waves?
Re: Einstein for Everyone
#4Some parts of the first edition are available online: http://www.eftaylor.com/special.html http://www.eftaylor.com/pub/spacetime/STP1stEdThruP20.pdf
Re: Einstein for Everyone
#5From the "Completeness of Quantum Theory" chapter (on one theory of the determinability of quantum systems): "If an atom has a probability of one half of radioactive decay over an hour, then all that really means is that its wave function describes an ensemble of many different atomic systems, half of which decay in an hour. Whether one particular atom in the ensemble will decay in one hour is definitely determinable…
To say that properties "have been smoothed away" means that the particular statistical measures that quantum theory was using were losing the fine-grained detail necessary for understanding particular events. It's not that the "quantum wave" is literally smoothing things in the world, but that the theory of the "quantum wave" is disregarding particular facts.
Imagine that we described human populations without having the ability to observe individual sex characteristics, or individual human interactions. We might say things like "a human has a 10% chance of splitting into two humans over the course of a 20 year span." In this case, our statistics "smooth away" differences such as sex, and the interactions of specific humans over time, leaving us with a probabilistic statement. We might start reading the apparent non-determinism as a fact of nature, rather than as a problem with our knowledge.
Re: Einstein for Everyone
#6From the "Completeness of Quantum Theory" chapter (on one theory of the determinability of quantum systems): "If an atom has a probability of one half of radioactive decay over an hour, then all that really means is that its wave function describes an ensemble of many different atomic systems, half of which decay in an hour. Whether one particular atom in the ensemble will decay in one hour is definitely determinable…
This statement you quote has often been called by the jargon name "hidden variables theory". You're asking: What are these hidden variables? Well, Einstein could never find them, and later work has shown that this is because they don't exist. Read the end of the chapter first. ;)
Incidentally, at first glance this chapter doesn't look like light reading.
Re: Einstein for Everyone
#7Re: Einstein for Everyone
#8From the "Completeness of Quantum Theory" chapter (on one theory of the determinability of quantum systems): "If an atom has a probability of one half of radioactive decay over an hour, then all that really means is that its wave function describes an ensemble of many different atomic systems, half of which decay in an hour. Whether one particular atom in the ensemble will decay in one hour is definitely determinable…
He put forth this theory before the EPR experiments (he's the E); these experiments made that interpretation unlikely. Specifically, the EPR experiments showed that the state (if any) is probably non-local.
Re: Einstein for Everyone
#9I'm looking for the tersest complete guide from Newtonian physics to GR. Single author would be best, but I imagine it's not possible.