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✅ Cryptographically verified · sealed pick #8460

Mold Alexandra vs Newtown

Championship · Wales · 03 Oct 2026, 13:30 UTC

Final score
1 : 2
Result
Lost
Pick
Mold Alexandra
Market
1X2
CLV vs fair close
+4.35%
Model prob.
37.0%
Best price
2.88
Min odds
2.76
Stake factor
1.10

Proof this pick was locked in before kickoff

The pick was encrypted before kickoff and published the moment it was sealed to Telegram and GitHub, each carrying an independent timestamp. The encrypted batch is also anchored in Bitcoin — a public record nobody, including us, can alter or back-date. After the match the key is released; decrypting that exact pre-published message reveals the pick, proving it was fixed in advance, not cherry-picked.

Encrypted pick (AES-256-GCM)
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
key fingerprint sha256: 3f4aa1bd514207671d9ddae09e7de24586389e93d9065703a5905459a9e1c7e3
Decrypt it & read the pick
Decryption key (released after the match)
c4c023392fa11c69b67a0b04dba169545383b70c584c19f6752e79381c9f125d
Decrypt in CyberChef →
Verify it yourself — paste both values, no install

The Encrypted pick above is base64( nonce[12 bytes] + ciphertext + tag[16 bytes] ), AES-256-GCM. Zero-install check: open your browser console (press F12 → Console), paste this, press Enter — it decrypts the exact pick shown above:

const blob = Uint8Array.from(atob("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"), c => c.charCodeAt(0));
const key  = Uint8Array.from("c4c023392fa11c69b67a0b04dba169545383b70c584c19f6752e79381c9f125d".match(/../g).map(h => parseInt(h, 16)));
crypto.subtle.importKey("raw", key, "AES-GCM", false, ["decrypt"])
  .then(k => crypto.subtle.decrypt({ name: "AES-GCM", iv: blob.slice(0, 12) }, k, blob.slice(12)))
  .then(b => console.log(new TextDecoder().decode(b).split("\n")[0]));

Prefer a GUI? The orange button opens CyberChef pre-filled. Or split the parts yourself for any AES-256-GCM tool:

  • Algorithm: AES-256-GCM
  • Key (hex): c4c023392fa11c69b67a0b04dba169545383b70c584c19f6752e79381c9f125d
  • IV / nonce (hex): 8157eb1c429fb93ee12f2122
  • Ciphertext (hex): 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
  • Auth tag (hex): 21f2daa4e93522b53ed40f7e89fc8f75

Any standard AES-256-GCM tool returns the exact same pick — the algorithm is a public standard.

The pick is the first line of the decrypted text. Records sealed from 24 September 2026 are followed by a line break and spaces up to a fixed size, so every encrypted pick has the same length and its size reveals nothing about the selection before the key is published. The commitment hash is sha256(first line + key), exactly as before.

How to verify the Bitcoin timestamp yourself

Bitcoin doesn't store the pick — it stores a 32-byte fingerprint (SHA-256) of the encrypted batch, via OpenTimestamps. That fingerprint is frozen in a public block nobody can alter or back-date. You can't spot it by eye on a block explorer (a block holds thousands of unrelated transactions) — you verify it with the .ots proof and any OpenTimestamps tool:

  1. Download the sealed batch file (.jsonl) and its proof (.ots) from GitHub.
  2. Drop both into opentimestamps.org (or run ots verify *.ots). It replays the proof and confirms the Bitcoin block and its UTC time.
  3. See it independently: block #969602 · anchoring transaction (its OP_RETURN holds the commitment). The block's Timestamp is when it became permanent.

Note: Bitcoin anchoring lands ~30–60 min after sealing, and a block's timestamp is miner-set (approximate). So the exact “before kickoff” proof is the seal time above — timestamped instantly by Telegram/GitHub — while Bitcoin is the independent, un-forgeable anchor of permanence.