Row 4824

Row ID: 4824 | Dataset Entry | Axioma AXP Content Repository

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I have posted this to the weekly thread but no one answered so i am posting here

i have been thinking about the similarities between Non-Deterministic finite state machines and Quantum computers , now when i researched about this Quantum computers can't be compared to Non-Deterministic finite state machines because they are probabilistic but why does that mean it can't be Non-Deterministic ? i mean Non-Deterministic transitions in finite state machines at its core is defined by Changing to random states regardless of the input , and according to my understanding is that in Quantum mechanics outputs don't get affected by any seed values(otherwise it would be pseudo-random like coin-flips/rolling Dies or a standard computer RNG) so even tho it is probabilistic it doesn't depend on any seed values therefore i can't see any difference between it and Non-Deterministic Finite State Machines. now IF someone argues that Non-Determinism can't have probabilistic outcomes then couldn't i argue that Quantum mechanics isn't random as it isn't Non-Deterministic therefore Deterministic (unless we consider randomness a spectrum and Quantum computers aren't high enough on the spectrum to be modeled by NDFSMs ?)my background is mainly in Computer science & Engineering so there might be something here about Quantum mechanics i don't understand?

FieldValue
text I have posted this to the weekly thread but no one answered so i am posting here i have been thinking about the similarities between Non-Deterministic finite state machines and Quantum computers , now when i researched about this Quantum computers can't be compared to Non-Deterministic finite state machines because they are probabilistic but why does that mean it can't be Non-Deterministic ? i mean Non-Deterministic transitions in finite state machines at its core is defined by Changing …
label r/quantumcomputing
dataType post
communityName r/QuantumComputing
datetime 2024-04-22
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Raw Record

{
  "text": " I have posted this to the weekly thread but no one answered so i am posting here \n\ni have been thinking about the similarities between Non-Deterministic  finite state machines and Quantum computers , now when i researched  about this Quantum computers can't be compared to Non-Deterministic  finite state machines because they are probabilistic but why does that  mean it can't be Non-Deterministic ? i mean Non-Deterministic  transitions in finite state machines at its core is defined by Changing  to random states regardless of the input , and according to my  understanding is that in Quantum mechanics outputs don't get affected by  any seed values(otherwise it would be pseudo-random like coin-flips/rolling Dies or a standard computer RNG) so even tho it is probabilistic it doesn't  depend on any seed values therefore i can't see any difference between  it and Non-Deterministic Finite State Machines. now IF someone argues  that Non-Determinism can't have probabilistic outcomes then couldn't i  argue that Quantum mechanics isn't random as it isn't Non-Deterministic  therefore Deterministic (unless we consider randomness a spectrum and Quantum computers aren't high enough on the spectrum to be modeled by NDFSMs ?)my background is mainly in Computer science & Engineering so there might be something here about Quantum mechanics i don't understand?    ",
  "label": "r/quantumcomputing",
  "dataType": "post",
  "communityName": "r/QuantumComputing",
  "datetime": "2024-04-22",
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}

Entry Information