Post-quantum cryptography addresses mathematical vulnerabilities but misses the primary attack vector in Web3: execution-layer compromises. Most digital asset losses occur when malware manipulates transaction intent, keys, or wallet state before signing, not from broken cryptography. Deterministic execution integrity at the OS level prevents unauthorized code from accessing sensitive processes or data, addressing the real-world threat surface that quantum-resistant algorithms alone cannot protect against.

4m read timeFrom thequantuminsider.com
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Where Real-World Losses Actually OccurDeterministic Execution IntegrityWhy this Matters in a Post-Quantum World
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