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2026
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| Online Access: | https://doi.org/10.5281/zenodo.19377138 |
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| _version_ | 1866901645845069824 |
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| author | Andrews, Cheryl |
| author_facet | Andrews, Cheryl |
| contents | <p>This KMZ dataset maps the high-energy kinetic signatures of two critical tectonic events identified in the Unified Ballistic-Rheological Model: the <strong>Nastapoka (Entry)</strong> and <strong>Manihiki (Exit)</strong> phases. By treating the Earth as a rheologically variable ballistic target, this map visualizes the harmonic stress nodes and recoil vectors resulting from a planetary-scale impact event.</p> <p><strong>Key Data Features:</strong></p> <ul> <li><strong>Entry Phase (Nastapoka):</strong> Spatial mapping of the five Harmonic Stress Rings (R1–R5). These nodes are calculated using the Radius of Curvature (R) Formula detailed in Section 2.5 of the associated paper.</li> <li><strong>Exit Phase (Manihiki):</strong> Visualization of the pentameral (five-sided) kinetic energy release geometry. This "Star" fracture pattern represents the recoil vectors identified in Section 6.</li> </ul> <p><strong>Technical Specifications:</strong></p> <ul> <li><strong>Format:</strong> KMZ (Compressed Keyhole Markup Language)</li> <li><strong>Reference System:</strong> WGS84</li> <li><strong>Software Compatibility:</strong> Optimized for Google Earth Pro, ArcGIS, and QGIS.</li> </ul> <p><strong>Usage Note:</strong></p> <p>To properly view the progression of the "Glass Earth" events, it is recommended to toggle the folder visibility between the "Entry" and "Exit" layers.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_19377138 |
| institution | Zenodo |
| language | |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Forensic Spatial Mapping of the Unified Ballistic-Rheological Hypothesis (2026) Andrews, Cheryl Ballistic-Rheology Post-Cryogenian Tectonic Architecture Harmonic Stress Nodes Kinetic Recoil Vectors Geospatial Dataset KMZ / KML Mapping G-Plates Reconstruction Forensic Geomorphology Euler Pole Rotation Nastapoka Structure (Hudson Bay) Manihiki Plateau (South Pacific) Earth and related Environmental Sciences Geophysics Geochemistry and Geophysics Tectonics Cheryl Andrews Glass Earth Theory <p>This KMZ dataset maps the high-energy kinetic signatures of two critical tectonic events identified in the Unified Ballistic-Rheological Model: the <strong>Nastapoka (Entry)</strong> and <strong>Manihiki (Exit)</strong> phases. By treating the Earth as a rheologically variable ballistic target, this map visualizes the harmonic stress nodes and recoil vectors resulting from a planetary-scale impact event.</p> <p><strong>Key Data Features:</strong></p> <ul> <li><strong>Entry Phase (Nastapoka):</strong> Spatial mapping of the five Harmonic Stress Rings (R1–R5). These nodes are calculated using the Radius of Curvature (R) Formula detailed in Section 2.5 of the associated paper.</li> <li><strong>Exit Phase (Manihiki):</strong> Visualization of the pentameral (five-sided) kinetic energy release geometry. This "Star" fracture pattern represents the recoil vectors identified in Section 6.</li> </ul> <p><strong>Technical Specifications:</strong></p> <ul> <li><strong>Format:</strong> KMZ (Compressed Keyhole Markup Language)</li> <li><strong>Reference System:</strong> WGS84</li> <li><strong>Software Compatibility:</strong> Optimized for Google Earth Pro, ArcGIS, and QGIS.</li> </ul> <p><strong>Usage Note:</strong></p> <p>To properly view the progression of the "Glass Earth" events, it is recommended to toggle the folder visibility between the "Entry" and "Exit" layers.</p> |
| title | Forensic Spatial Mapping of the Unified Ballistic-Rheological Hypothesis (2026) |
| topic | Ballistic-Rheology Post-Cryogenian Tectonic Architecture Harmonic Stress Nodes Kinetic Recoil Vectors Geospatial Dataset KMZ / KML Mapping G-Plates Reconstruction Forensic Geomorphology Euler Pole Rotation Nastapoka Structure (Hudson Bay) Manihiki Plateau (South Pacific) Earth and related Environmental Sciences Geophysics Geochemistry and Geophysics Tectonics Cheryl Andrews Glass Earth Theory |
| url | https://doi.org/10.5281/zenodo.19377138 |