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Take into account the subtlety of Schrödinger's metaphor because most people belittle the concept by reducing everything to a naive logic in which the cat was already dead even before opening the box and my 6-year-old nephew would have reached this point too.Schrödinger's real metaphorical sense does not refer directly to the cat (macroscopic structure) but to the uranium atom (microscopic structure) which decays (dead cat) with a random temporal probability implying that the cat's life is linked to the temporal random probability of the decay of uranium. In short, the interpretation that derives from the macroscopic observable would be a selective filter that delays the interpretation of the microscopic observable, which means that the absence of symptoms could be a phenomenon dampened by the macromolecular filter. | Take into account the subtlety of Schrödinger's metaphor because most people belittle the concept by reducing everything to a naive logic in which the cat was already dead even before opening the box and my 6-year-old nephew would have reached this point too.Schrödinger's real metaphorical sense does not refer directly to the cat (macroscopic structure) but to the uranium atom (microscopic structure) which decays (dead cat) with a random temporal probability implying that the cat's life is linked to the temporal random probability of the decay of uranium. In short, the interpretation that derives from the macroscopic observable would be a selective filter that delays the interpretation of the microscopic observable, which means that the absence of symptoms could be a phenomenon dampened by the macromolecular filter. | ||
In this sense, from the moment in which the uranium, following its own random decay process, activates the hammer that breaks the ampoule and the cyanide spreads into the box. The time elapsing from the decay to the actual death of the cat <math>\Delta(t)</math> corresponds to the superposition of states | In this sense, from the moment in which the uranium, following its own random decay process, activates the hammer that breaks the ampoule and the cyanide spreads into the box. The time elapsing from the decay to the actual death of the cat <math>\Delta(t)</math> corresponds to the superposition of states. | ||
We will often return to these topics during the readings, especially in describing the various clinical cases that will be reported, denoting the temporal differences between normal clinical situations and manifestation of symptoms, | |||
This <math>\Delta(t)</math> is the superposition of states and the collapse of the wave function (dead or alive cat) corresponds to a mainly quantum dialectic. | This <math>\Delta(t)</math> is the superposition of states and the collapse of the wave function (dead or alive cat) corresponds to a mainly quantum dialectic. |
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