Disclosure: Universal Heatmap Law of Computational Information
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| Natura: | Recurso digital |
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Zenodo
2025
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| _version_ | 1866901726188011520 |
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| author | Sayeh, mostefa |
| author_facet | Sayeh, mostefa |
| contents | <p>I introduce the <strong>Universal Heatmap Law of Computational Information</strong>, a simple mathematical expression that describes how symbolic heat changes over time. The law combines reinforcement, decay, cooling, and access into a single deterministic relation:</p> <p><strong>Hi(t)=max{0,⌊γHi(t−1)⌋+αxi(t)−β}.</strong></p> <p>What makes this law important is its universality: it does not belong to any single field but can be applied wherever information evolves through repeated use and natural fading. By presenting it in this disclosure, I aim to establish clear prior art and to place the Heatmap Theory of Computational Information as a foundation that future researchers can build on across different areas of science and technology.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_17172117 |
| institution | Zenodo |
| language | |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Disclosure: Universal Heatmap Law of Computational Information Sayeh, mostefa Heatmap Theory; Computational Information; Universal Mathematical Law; Symbolic Heat; Access–Recency–Decay Dynamics; Information Evolution; Deterministic Update Rule; Integer-Based Model; Scale-Free Principle; Prior Art Protection. <p>I introduce the <strong>Universal Heatmap Law of Computational Information</strong>, a simple mathematical expression that describes how symbolic heat changes over time. The law combines reinforcement, decay, cooling, and access into a single deterministic relation:</p> <p><strong>Hi(t)=max{0,⌊γHi(t−1)⌋+αxi(t)−β}.</strong></p> <p>What makes this law important is its universality: it does not belong to any single field but can be applied wherever information evolves through repeated use and natural fading. By presenting it in this disclosure, I aim to establish clear prior art and to place the Heatmap Theory of Computational Information as a foundation that future researchers can build on across different areas of science and technology.</p> |
| title | Disclosure: Universal Heatmap Law of Computational Information |
| topic | Heatmap Theory; Computational Information; Universal Mathematical Law; Symbolic Heat; Access–Recency–Decay Dynamics; Information Evolution; Deterministic Update Rule; Integer-Based Model; Scale-Free Principle; Prior Art Protection. |
| url | https://doi.org/10.5281/zenodo.17172117 |