Proofs
Zeq's doctrine is one line: never say "trust me." Every result the framework produces carries something you can check for yourself — the equation it used, the constants it bound, its uncertainty, and a cryptographic ZeqProof any node can re-verify. Trust is never asked for; it's always demonstrable.
Every compute returns a signed envelope carrying:
Because the proof binds the operator, the result, and the exact tick together, a verifier re-runs the maths and re-checks the stamp independently — it never has to trust the node that produced the number.
The layers of trust
Per-result
The ZeqProof binds one computation. Any node can re-verify it offline from the envelope alone.
Per-history
A machine's whole audit chain is sealed so rewriting the past costs real sequential time — tamper-resistant, not just tamper-evident.
Per-precision
Every result is checked against the ≤0.1% bound and independently re-computed before it's returned.
Explore
The envelope
What ships with every result, and how a stranger checks it.
- The Zeq envelope — every field and what it binds
- The verification envelope — re-verify without trusting the source
Precision & the seal
Why the number is accurate and the history holds.
- Precision & proof — the ≤0.1% bar, verdicts, re-evaluation
- Proof of Elapsed Zeqonds — the seal spine that resists rewriting
Prove the whole node
Verify a node, and check quantum outputs.
- Conformance & verification — prove a node's physics is unmodified bit-for-bit, plus honestly-bounded quantum-output verification
The audit chain these proofs live on is part of your machine; the verification APIs are in the reference.