claim
pending-review
claim:information-flow-and-increase-must-be-understood-relative-to-open-subsystems-not-isolated-total-systems

Information flow and increase must be understood relative to open subsystems, not isolated total systems.

2021-10-18_Prabros._1604.02603.pdf_6f9f31.md
Frontmatter (12 fields)
{
  "doc": "2021-10-18_Prabros._1604.02603.pdf_6f9f31.md",
  "author": null,
  "context": "Reconciliation with thermodynamics: while total entropy cannot decrease, subsystems can decrease entropy by consuming energy from environment.",
  "enrichment": {
    "is_stale": true
  },
  "norm_label": "Information flow and increase must be understood relative to open subsystems, not isolated total systems.",
  "source_url": null,
  "graphify_id": "subsystem_information_flow",
  "source_file": "2021-10-18_Prabros._1604.02603.pdf_6f9f31.md",
  "imported_from": "/Users/antonborzov/Documents/Research.nosync/papers/extract_typed_out/2021-10-18_Prabros._1604.02603.pdf_6f9f31/graph.json",
  "extracted_type": "claim",
  "source_location": "§1.1",
  "graphify_file_type": "claim"
}

Outgoing (1)

Incoming (0)

None.

Mentions (1)

  • papers-typed
    2021-10-18_Prabros._1604.02603.pdf_6f9f31.md