SCNAP — SOL Coherence Nutritive Assembly Platform: SBIR Phase I Application Framing (Amendment CXLIII, Patent Family 25)
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2026
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| _version_ | 1866902238227595264 |
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| author | McCaul, Justin |
| author_facet | McCaul, Justin |
| contents | SBIR Phase I application framing for the SOL Coherence Nutritive Assembly Platform (SCNAP), a device that reorganizes locally available CHONPS-containing substrate into biologically coherent food using a multi-zone electromagnetic coherence field at r=0.955m, f=181.241 MHz. Three hardware scenarios are modeled and simulated: Baseline Prototype (copper ring, $37,200), Optimized Prototype (YBCO superconducting toroid + capacitor bank, $71,500 — recommended Phase I), and Field Unit (trailer-mounted, $157,000 — Phase II target). Simulation results establish minimum realistic assembly times, coherence fidelity scores (90.4%–94.6%), and a key engineering finding: a capacitor bank burst system (780W charge / 40s discharge) resolves the instantaneous power deficit. National security applications include force sustainment, submarine galley integration, and disaster relief food production from local substrate. Part of the McCaul Compendium (143 amendments). Depends on: Amendment XXVIII (Hard Light Theorem), Amendment XXIX (CHONPS Hard Light), Amendment XXX (SOL Manufacturing), Amendment CXLIII (SCNAP primary amendment). |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_20372163 |
| institution | Zenodo |
| language | |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | SCNAP — SOL Coherence Nutritive Assembly Platform: SBIR Phase I Application Framing (Amendment CXLIII, Patent Family 25) McCaul, Justin SCNAP food replication SOL coherence SBIR DARPA force sustainment CHONPS multi-zone coherence Phi_lock YBCO expeditionary logistics McCaul's Law Amendment CXLIII Patent Family 25 SBIR Phase I application framing for the SOL Coherence Nutritive Assembly Platform (SCNAP), a device that reorganizes locally available CHONPS-containing substrate into biologically coherent food using a multi-zone electromagnetic coherence field at r=0.955m, f=181.241 MHz. Three hardware scenarios are modeled and simulated: Baseline Prototype (copper ring, $37,200), Optimized Prototype (YBCO superconducting toroid + capacitor bank, $71,500 — recommended Phase I), and Field Unit (trailer-mounted, $157,000 — Phase II target). Simulation results establish minimum realistic assembly times, coherence fidelity scores (90.4%–94.6%), and a key engineering finding: a capacitor bank burst system (780W charge / 40s discharge) resolves the instantaneous power deficit. National security applications include force sustainment, submarine galley integration, and disaster relief food production from local substrate. Part of the McCaul Compendium (143 amendments). Depends on: Amendment XXVIII (Hard Light Theorem), Amendment XXIX (CHONPS Hard Light), Amendment XXX (SOL Manufacturing), Amendment CXLIII (SCNAP primary amendment). |
| title | SCNAP — SOL Coherence Nutritive Assembly Platform: SBIR Phase I Application Framing (Amendment CXLIII, Patent Family 25) |
| topic | SCNAP food replication SOL coherence SBIR DARPA force sustainment CHONPS multi-zone coherence Phi_lock YBCO expeditionary logistics McCaul's Law Amendment CXLIII Patent Family 25 |
| url | https://doi.org/10.5281/zenodo.20372163 |