Row 94850
Content Data
This page contains data entry 94850 from the Axioma AXP content repository. The structured data below represents the complete record for this entry.
No. While I'm sure this analogy will sound impressive to laymen it isn't a meaningful description of quantum computation.
*as "#edgeinformation"(#particle) tries to access the wave function information(#Wave)*
You seem to be describing interactions between "particles" and "waves". There isn't really two seperate things called "waves" and "particles" there are just wave-functions.
*The quantum waves beyond this edge calculate the most likely #possibilities.*
This statement doesn't really make any sense.
*We then intentionally collapse the wavefunction to observe the final state.*
The act of measurement collapses the wave-function and irreversibly changes its state. The state is not the same as the state immediately prior to measurement.
| Field | Value |
|---|---|
| text | No. While I'm sure this analogy will sound impressive to laymen it isn't a meaningful description of quantum computation. *as "#edgeinformation"(#particle) tries to access the wave function information(#Wave)* You seem to be describing interactions between "particles" and "waves". There isn't really two seperate things called "waves" and "particles" there are just wave-functions. *The quantum waves beyond this edge calculate the most likely #possibilities.* This statement doesn't really make… |
| label | r/quantumcomputing |
| dataType | comment |
| communityName | r/QuantumComputing |
| datetime | 2024-05-25 |
| username_encoded | Z0FBQUFBQm5Lak11ZWtmMlFMQktXVUpGV092a1NaOVVvM1hCNDZYUVVFNXBRZENaenpPZ2dDOHNoTGFVYjV6clAwNnZHa0Y4bjJxN0ZhaVlzTi0yVHlWeW13WE8tRjlpb2c9PQ== |
| url_encoded | Z0FBQUFBQm5LalBBbzZYeEtwb3VaMFIxa3p6bGtmNDJTWDZmODVoY1pEWVhfTHI1R2l1dGM0LWxuZGY0VnpEZFoteTVEcWhjQVc1T0pOYWgtSVkwZ0FuU1dMaGRxakR1SGtyTXRQRHkwSUViaW1MR3RrOE05TXhiY0tuU0dqUGpES0FDODJ1RzhkYkZrX2JVNV91U2J0dzNoNFFTbmkxT0dPRmh4NEt5RDFUOGNfRlFyc1VGLS1YaWJFa1VPa2toeFJKVGhBOExVOTVE |
Raw Record
{
"text": "No. While I'm sure this analogy will sound impressive to laymen it isn't a meaningful description of quantum computation.\n\n*as \"#edgeinformation\"(#particle) tries to access the wave function information(#Wave)*\n\nYou seem to be describing interactions between \"particles\" and \"waves\". There isn't really two seperate things called \"waves\" and \"particles\" there are just wave-functions.\n\n*The quantum waves beyond this edge calculate the most likely #possibilities.*\n\nThis statement doesn't really make any sense.\n\n*We then intentionally collapse the wavefunction to observe the final state.*\n\nThe act of measurement collapses the wave-function and irreversibly changes its state. The state is not the same as the state immediately prior to measurement.",
"label": "r/quantumcomputing",
"dataType": "comment",
"communityName": "r/QuantumComputing",
"datetime": "2024-05-25",
"username_encoded": "Z0FBQUFBQm5Lak11ZWtmMlFMQktXVUpGV092a1NaOVVvM1hCNDZYUVVFNXBRZENaenpPZ2dDOHNoTGFVYjV6clAwNnZHa0Y4bjJxN0ZhaVlzTi0yVHlWeW13WE8tRjlpb2c9PQ==",
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}
Entry Information
- Entry ID: 94850
- Repository: Axioma AXP
- Dataset: arrmlet/reddit_dataset_36
- Total Entries: 100,000