Row 88586

Row ID: 88586 | Dataset Entry | Axioma AXP Content Repository

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So first, the quantum computing unit of information, called a qubit, is not multiple states existing simultaneously. What is happening is more nuanced than that, but I won't get into it.

Next, the butterfly effect is a different phenomenon more related to chaos theory. That is, if you have a dynamical system, it could be extremely sensitive to initial conditions as well as impossible to numerically predict its future state (these things are related).

Your last question is interesting, though, because an advantage of a quantum machine is that it would be able to naturally simulate a quantum mechanical system. In fact, you can simulate a quantum system classically it's just that it becomes intractable pretty quickly, and so the whole simulation could require absurd amounts of memory or time.

A quantum machine would be able to simulate a quantum mechanical system without such a huge overhead as you would see in a classical system.

FieldValue
text So first, the quantum computing unit of information, called a qubit, is not multiple states existing simultaneously. What is happening is more nuanced than that, but I won't get into it. Next, the butterfly effect is a different phenomenon more related to chaos theory. That is, if you have a dynamical system, it could be extremely sensitive to initial conditions as well as impossible to numerically predict its future state (these things are related). Your last question is interesting, though, …
label r/quantumcomputing
dataType comment
communityName r/QuantumComputing
datetime 2024-05-25
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Raw Record

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  "text": "So first, the quantum computing unit of information, called a qubit, is not multiple states existing simultaneously. What is happening is more nuanced than that, but I won't get into it.\n\nNext, the butterfly effect is a different phenomenon more related to chaos theory. That is, if you have a dynamical system, it could be extremely sensitive to initial conditions as well as impossible to numerically predict its future state (these things are related).\n\nYour last question is interesting, though, because an advantage of a quantum machine is that it would be able to naturally simulate a quantum mechanical system. In fact, you can simulate a quantum system classically it's just that it becomes intractable pretty quickly, and so the whole simulation could require absurd amounts of memory or time.\n\nA quantum machine would be able to simulate a quantum mechanical system without such a huge overhead as you would see in a classical system.",
  "label": "r/quantumcomputing",
  "dataType": "comment",
  "communityName": "r/QuantumComputing",
  "datetime": "2024-05-25",
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Entry Information