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icon for Quantum breaks Bitcoin by ___?

Quantum breaks Bitcoin by ___?

icon for Quantum breaks Bitcoin by ___?

Quantum breaks Bitcoin by ___?

NOWE
Dec 31, 2027
Polymarket

$3,854 Wol.

Polymarket

December 31, 2026

$2,426 Wol.

1%

December 31, 2027

$1,428 Wol.

8%

This market will resolve to "Yes" if, by 11:59 PM ET on the date specified, a quantum computer has been publicly demonstrated to derive a valid private key corresponding to an existing Bitcoin address using a quantum algorithm, such that the derived key is sufficient to sign a valid transaction on the Bitcoin mainnet. Otherwise, this market will resolve to “No.” To qualify, the demonstration must satisfy all of the following: The private key must be derived from a real Bitcoin address whose corresponding public key has been revealed on the Bitcoin blockchain (for example, via a prior transaction). The address must use standard Bitcoin cryptography with no artificial weakening or modification. The target address must be reasonably believed not to be controlled by the demonstrator. This may be established through credible reporting, prior attribution (such as a known exchange or historical address), or broad consensus among experts. The derivation must rely on a quantum computing method that provides a computational advantage for solving the elliptic curve discrete logarithm problem underlying Bitcoin’s ECDSA (e.g., Shor’s algorithm or a comparable quantum algorithm). Purely classical methods, side-channel attacks, or approaches where quantum computation does not play a material role in deriving the key do not qualify. The derived private key must be shown to be valid by either signing and broadcasting a valid transaction from the target address on the Bitcoin mainnet, or by independent reproduction and confirmation by multiple credible third parties. The result must be widely accepted by the cryptographic research community as valid. The resolution source will be a consensus of credible reporting.

This market will resolve to "Yes" if, by 11:59 PM ET on the date specified, a quantum computer has been publicly demonstrated to derive a valid private key corresponding to an existing Bitcoin address using a quantum algorithm, such that the derived key is sufficient to sign a valid transaction on the Bitcoin mainnet. Otherwise, this market will resolve to “No.”

To qualify, the demonstration must satisfy all of the following:

The private key must be derived from a real Bitcoin address whose corresponding public key has been revealed on the Bitcoin blockchain (for example, via a prior transaction). The address must use standard Bitcoin cryptography with no artificial weakening or modification.

The target address must be reasonably believed not to be controlled by the demonstrator. This may be established through credible reporting, prior attribution (such as a known exchange or historical address), or broad consensus among experts.

The derivation must rely on a quantum computing method that provides a computational advantage for solving the elliptic curve discrete logarithm problem underlying Bitcoin’s ECDSA (e.g., Shor’s algorithm or a comparable quantum algorithm). Purely classical methods, side-channel attacks, or approaches where quantum computation does not play a material role in deriving the key do not qualify.

The derived private key must be shown to be valid by either signing and broadcasting a valid transaction from the target address on the Bitcoin mainnet, or by independent reproduction and confirmation by multiple credible third parties. The result must be widely accepted by the cryptographic research community as valid.

The resolution source will be a consensus of credible reporting.
This market will resolve to "Yes" if, by 11:59 PM ET on the date specified, a quantum computer has been publicly demonstrated to derive a valid private key corresponding to an existing Bitcoin address using a quantum algorithm, such that the derived key is sufficient to sign a valid transaction on the Bitcoin mainnet. Otherwise, this market will resolve to “No.” To qualify, the demonstration must satisfy all of the following: The private key must be derived from a real Bitcoin address whose corresponding public key has been revealed on the Bitcoin blockchain (for example, via a prior transaction). The address must use standard Bitcoin cryptography with no artificial weakening or modification. The target address must be reasonably believed not to be controlled by the demonstrator. This may be established through credible reporting, prior attribution (such as a known exchange or historical address), or broad consensus among experts. The derivation must rely on a quantum computing method that provides a computational advantage for solving the elliptic curve discrete logarithm problem underlying Bitcoin’s ECDSA (e.g., Shor’s algorithm or a comparable quantum algorithm). Purely classical methods, side-channel attacks, or approaches where quantum computation does not play a material role in deriving the key do not qualify. The derived private key must be shown to be valid by either signing and broadcasting a valid transaction from the target address on the Bitcoin mainnet, or by independent reproduction and confirmation by multiple credible third parties. The result must be widely accepted by the cryptographic research community as valid. The resolution source will be a consensus of credible reporting.
Wolumen
$3,854
Data zakończenia
Jan 1, 2028
Rynek otwarty
Apr 8, 2026, 12:58 PM ET

Rozstrzygający

0x65070BE91...
This market will resolve to "Yes" if, by 11:59 PM ET on the date specified, a quantum computer has been publicly demonstrated to derive a valid private key corresponding to an existing Bitcoin address using a quantum algorithm, such that the derived key is sufficient to sign a valid transaction on the Bitcoin mainnet. Otherwise, this market will resolve to “No.” To qualify, the demonstration must satisfy all of the following: The private key must be derived from a real Bitcoin address whose corresponding public key has been revealed on the Bitcoin blockchain (for example, via a prior transaction). The address must use standard Bitcoin cryptography with no artificial weakening or modification. The target address must be reasonably believed not to be controlled by the demonstrator. This may be established through credible reporting, prior attribution (such as a known exchange or historical address), or broad consensus among experts. The derivation must rely on a quantum computing method that provides a computational advantage for solving the elliptic curve discrete logarithm problem underlying Bitcoin’s ECDSA (e.g., Shor’s algorithm or a comparable quantum algorithm). Purely classical methods, side-channel attacks, or approaches where quantum computation does not play a material role in deriving the key do not qualify. The derived private key must be shown to be valid by either signing and broadcasting a valid transaction from the target address on the Bitcoin mainnet, or by independent reproduction and confirmation by multiple credible third parties. The result must be widely accepted by the cryptographic research community as valid. The resolution source will be a consensus of credible reporting.

This market will resolve to "Yes" if, by 11:59 PM ET on the date specified, a quantum computer has been publicly demonstrated to derive a valid private key corresponding to an existing Bitcoin address using a quantum algorithm, such that the derived key is sufficient to sign a valid transaction on the Bitcoin mainnet. Otherwise, this market will resolve to “No.”

To qualify, the demonstration must satisfy all of the following:

The private key must be derived from a real Bitcoin address whose corresponding public key has been revealed on the Bitcoin blockchain (for example, via a prior transaction). The address must use standard Bitcoin cryptography with no artificial weakening or modification.

The target address must be reasonably believed not to be controlled by the demonstrator. This may be established through credible reporting, prior attribution (such as a known exchange or historical address), or broad consensus among experts.

The derivation must rely on a quantum computing method that provides a computational advantage for solving the elliptic curve discrete logarithm problem underlying Bitcoin’s ECDSA (e.g., Shor’s algorithm or a comparable quantum algorithm). Purely classical methods, side-channel attacks, or approaches where quantum computation does not play a material role in deriving the key do not qualify.

The derived private key must be shown to be valid by either signing and broadcasting a valid transaction from the target address on the Bitcoin mainnet, or by independent reproduction and confirmation by multiple credible third parties. The result must be widely accepted by the cryptographic research community as valid.

The resolution source will be a consensus of credible reporting.
This market will resolve to "Yes" if, by 11:59 PM ET on the date specified, a quantum computer has been publicly demonstrated to derive a valid private key corresponding to an existing Bitcoin address using a quantum algorithm, such that the derived key is sufficient to sign a valid transaction on the Bitcoin mainnet. Otherwise, this market will resolve to “No.” To qualify, the demonstration must satisfy all of the following: The private key must be derived from a real Bitcoin address whose corresponding public key has been revealed on the Bitcoin blockchain (for example, via a prior transaction). The address must use standard Bitcoin cryptography with no artificial weakening or modification. The target address must be reasonably believed not to be controlled by the demonstrator. This may be established through credible reporting, prior attribution (such as a known exchange or historical address), or broad consensus among experts. The derivation must rely on a quantum computing method that provides a computational advantage for solving the elliptic curve discrete logarithm problem underlying Bitcoin’s ECDSA (e.g., Shor’s algorithm or a comparable quantum algorithm). Purely classical methods, side-channel attacks, or approaches where quantum computation does not play a material role in deriving the key do not qualify. The derived private key must be shown to be valid by either signing and broadcasting a valid transaction from the target address on the Bitcoin mainnet, or by independent reproduction and confirmation by multiple credible third parties. The result must be widely accepted by the cryptographic research community as valid. The resolution source will be a consensus of credible reporting.
Wolumen
$3,854
Data zakończenia
Jan 1, 2028
Rynek otwarty
Apr 8, 2026, 12:58 PM ET

Rozstrzygający

0x65070BE91...

Uważaj na linki zewnętrzne.

Często zadawane pytania

"Quantum breaks Bitcoin by ___?" to rynek prognoz na Polymarket z 2 możliwymi wynikami, gdzie traderzy kupują i sprzedają udziały na podstawie tego, co ich zdaniem się wydarzy. Obecny wiodący wynik to "December 31, 2027" z 8%, za nim "December 31, 2026" z 1%. Ceny odzwierciedlają zbiorowe prawdopodobieństwa w czasie rzeczywistym. Na przykład udział wyceniony na 8¢ implikuje, że rynek zbiorowo przypisuje 8% szansy na ten wynik. Te kursy zmieniają się ciągle, gdy traderzy reagują na nowe informacje. Udziały w poprawnym wyniku można wymienić na $1 za sztukę po rozstrzygnięciu rynku.

"Quantum breaks Bitcoin by ___?" to nowo utworzony rynek na Polymarket, uruchomiony Apr 8, 2026. Jako wczesny rynek, to Twoja okazja, aby być jednym z pierwszych traderów, którzy ustalą kursy i określą początkowe sygnały cenowe rynku. Możesz też dodać tę stronę do zakładek, aby śledzić wolumen i aktywność handlową w miarę rozwoju rynku.

Aby handlować na "Quantum breaks Bitcoin by ___?", przeglądaj 2 dostępnych wyników na tej stronie. Każdy wynik wyświetla bieżącą cenę reprezentującą implikowane prawdopodobieństwo rynku. Aby zająć pozycję, wybierz wynik, który uważasz za najbardziej prawdopodobny, wybierz "Tak", aby handlować na jego korzyść, lub "Nie", aby handlować przeciw niemu, wpisz kwotę i kliknij "Handluj". Jeśli wybrany wynik okaże się poprawny, Twoje udziały "Tak" wypłacą $1 za sztukę. Jeśli jest niepoprawny, wypłacą $0. Możesz też sprzedać swoje udziały w dowolnym momencie przed rozstrzygnięciem.

To szeroko otwarty rynek. Obecnym liderem dla "Quantum breaks Bitcoin by ___?" jest "December 31, 2027" z zaledwie 8%, a za nim "December 31, 2026" z 1%. Brak wyniku z wyraźną większością — traderzy widzą to jako wysoce niepewne, co może stwarzać unikalne okazje handlowe. Te kursy aktualizują się w czasie rzeczywistym, więc dodaj tę stronę do zakładek, aby obserwować ewolucję prawdopodobieństw.

Zasady rozstrzygania "Quantum breaks Bitcoin by ___?" określają dokładnie, co musi się wydarzyć, aby każdy wynik został ogłoszony zwycięzcą — w tym oficjalne źródła danych używane do ustalenia wyniku. Możesz przejrzeć pełne kryteria rozstrzygania w sekcji "Zasady" na tej stronie nad komentarzami. Zalecamy dokładne zapoznanie się z zasadami przed handlem, ponieważ określają one precyzyjne warunki, przypadki graniczne i źródła regulujące rozstrzyganie tego rynku.