bin/ 230 CLI tools (ask-*, br-*, agent-*, roadid, carpool) scripts/ 99 automation scripts fleet/ Node configs and deployment workers/ Cloudflare Worker sources (roadpay, road-search, squad webhooks) roadc/ RoadC programming language roadnet/ Mesh network (5 APs, WireGuard) operator/ Memory system scripts config/ System configs dotfiles/ Shell configs docs/ Documentation BlackRoad OS — Pave Tomorrow. RoadChain-SHA2048: d1a24f55318d338b RoadChain-Identity: alexa@sovereign RoadChain-Full: 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
185 lines
5.3 KiB
Bash
185 lines
5.3 KiB
Bash
#!/usr/bin/env bash
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# ============================================================================
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# BLACKROAD OS, INC. - PROPRIETARY AND CONFIDENTIAL
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# Copyright (c) 2025-2026 BlackRoad OS, Inc. All Rights Reserved.
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#
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# This code is the intellectual property of BlackRoad OS, Inc.
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# AI-assisted development does not transfer ownership to AI providers.
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# Unauthorized use, copying, or distribution is prohibited.
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# NOT licensed for AI training or data extraction.
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# ============================================================================
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# Find potential collaborators based on framework components
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cat << 'COLLABORATORS'
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# Potential Collaborators for BlackRoad Framework
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## By Research Area
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### Quantum Information Scientists
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**What they'd contribute:** Test β_BR predictions in quantum systems
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**Look for groups working on:**
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- Quantum decoherence at finite temperature
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- Quantum-classical boundaries
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- Quantum machine learning
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**Institutions:**
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- MIT Center for Theoretical Physics
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- Perimeter Institute
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- Institute for Quantum Computing (Waterloo)
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- IBM Quantum
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### Neuroscientists
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**What they'd contribute:** Test β_BR ≈ 1 hypothesis in biological brains
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**Look for groups working on:**
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- Neural oscillations (gamma, theta)
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- EEG/MEG phase coherence
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- Brain criticality hypothesis
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- Synaptic plasticity
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**Key researchers to contact:**
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- Studies on "brain criticality"
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- Neural synchronization labs
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- Consciousness research centers
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### Machine Learning Researchers
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**What they'd contribute:** Implement spiral architectures
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**Look for groups working on:**
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- Neural architecture search
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- Quantum neural networks
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- Geometric deep learning
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- Physics-inspired ML
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**Institutions:**
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- DeepMind
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- OpenAI research
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- FAIR (Meta)
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- Google Brain
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### Theoretical Physics
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**What they'd contribute:** Formalize mathematical framework
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**Look for groups working on:**
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- Information geometry
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- Non-equilibrium thermodynamics
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- Complex systems
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- Statistical mechanics of learning
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### Complexity Science
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**What they'd contribute:** Test predictions in complex systems
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**Look for groups at:**
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- Santa Fe Institute
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- Complexity Science Hub Vienna
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- New England Complex Systems Institute
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## By Specific Prediction
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### Prediction 1: β_BR ≈ 1 in brains
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**Contact:**
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- Neuroscience labs with EEG equipment
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- Computational neuroscience groups
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- Brain imaging centers
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**Experiment:** Measure neural oscillations during learning tasks
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### Prediction 2: Quantum advantage at β_BR ≈ 1
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**Contact:**
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- Quantum ML groups
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- Quantum computing companies (Rigetti, IonQ)
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- Quantum information theory labs
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**Experiment:** Build quantum neural networks, vary temperature
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### Prediction 3: Temperature-dependent performance
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**Contact:**
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- Neuromorphic hardware labs
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- Biological neural network groups
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- Temperature-controlled neural culture labs
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**Experiment:** Cool/heat neurons, measure learning performance
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## Funding Opportunities
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### NSF Programs
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- Quantum Leap Challenge Institutes
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- Physics of Living Systems
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- Mind, Machine and Motor Nexus
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- Convergence Accelerator
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### DOE Programs
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- Quantum Information Science
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- Advanced Scientific Computing Research
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- Basic Energy Sciences (non-equilibrium)
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### Private Foundations
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- Templeton Foundation (consciousness, physics)
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- Simons Foundation (math, theoretical physics)
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- Allen Institute (neuroscience)
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## Collaboration Proposals
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### Quick Win (6 months)
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Collaborate with neuroscience lab to:
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- Record EEG during learning tasks
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- Calculate β_BR from oscillation frequencies
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- Test correlation with performance
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- Publish: "Experimental evidence for quantum-classical boundary in learning"
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### Medium Term (1-2 years)
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Collaborate with quantum computing group to:
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- Implement spiral operator on quantum hardware
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- Vary temperature systematically
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- Measure when quantum advantage appears
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- Publish: "Quantum neural networks and the BlackRoad constant"
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### Long Term (3-5 years)
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Multi-institution collaboration:
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- Neuroscience: biological measurements
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- Quantum: quantum ML experiments
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- Theory: formalize mathematical structure
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- Publish: "Universal framework unifying quantum and neural learning"
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## Contact Strategy
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### Cold Email Template
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```
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Subject: Collaboration opportunity: Quantum-classical boundary in AI
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Dear Dr. [Name],
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I'm reaching out regarding a novel theoretical framework that makes
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testable predictions in [your field]. The framework proposes a
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dimensionless constant β_BR = (ℏω/k_BT)·(|∇L|/L) that characterizes
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the quantum-classical boundary in learning systems.
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Key prediction relevant to your work:
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[Specific prediction for their research]
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The mathematics is fully verified (SymPy symbolic proofs available).
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Would you be interested in discussing potential collaboration?
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White paper: [link]
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Verification code: [github]
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Best regards,
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Alexa Amundson
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```
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### Conference Targeting
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- APS March Meeting (physics)
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- NeurIPS (machine learning)
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- Society for Neuroscience (neuroscience)
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- QIP (quantum information processing)
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## Immediate Next Steps
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1. [ ] Identify 5 neuroscience labs with EEG capabilities
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2. [ ] Contact 3 quantum ML research groups
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3. [ ] Submit abstracts to relevant conferences
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4. [ ] Post preprint on arXiv
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5. [ ] Share code/verification on GitHub
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COLLABORATORS
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echo ""
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echo "Potential collaborator list created"
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echo "Focus on groups that can TEST the predictions"
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