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icon for Quantum breaks Bitcoin by ___?

Quantum breaks Bitcoin by ___?

icon for Quantum breaks Bitcoin by ___?

Quantum breaks Bitcoin by ___?

BAGO
Polymarket

$668 Vol.

Polymarket

December 31, 2026

$407 Vol.

8%

December 31, 2027

$261 Vol.

15%

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.
Volume
$668
Binuksan ang Market
Apr 8, 2026, 12:58 PM ET
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.
Volume
$668
Binuksan ang Market
Apr 8, 2026, 12:58 PM ET
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.

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Mga Madalas na Tanong

Ang "Quantum breaks Bitcoin by ___?" ay isang prediction market sa Polymarket na may 2 posibleng outcomes kung saan bumibili at nagbebenta ang mga trader ng shares batay sa kanilang pinaniniwalaan na mangyayari. Ang kasalukuyang nangunguna ay "December 31, 2027" sa 14%, sinusundan ng "December 31, 2026" sa 8%. Ang mga presyo ay sumasalamin sa real-time crowd-sourced probabilities. Halimbawa, ang isang share na naka-presyo sa 14¢ ay nagpapahiwatig na kolektibong itinatakda ng market ang 14% na tsansa sa outcome na iyon. Patuloy na nagbabago ang mga odds na ito habang tumutugon ang mga trader sa mga bagong development at impormasyon. Ang mga shares sa tamang outcome ay mare-redeem sa $1 bawat isa sa market resolution.

Ang "Quantum breaks Bitcoin by ___?" ay isang bagong likhang market sa Polymarket, inilunsad noong Apr 8, 2026. Bilang isang maagang market, ito ang iyong pagkakataon na maging kabilang sa mga unang trader na magtakda ng odds at mag-establish ng mga paunang price signal ng market. Maaari mo ring i-bookmark ang pahinang ito para subaybayan ang volume at trading activity habang lumalaki ang market sa paglipas ng panahon.

Para mag-trade sa "Quantum breaks Bitcoin by ___?," i-browse ang 2 available na outcomes na nakalista sa pahinang ito. Ang bawat outcome ay may kasalukuyang presyo na kumakatawan sa implied probability ng market. Para kumuha ng posisyon, piliin ang outcome na pinaniniwalaan mong pinaka-malamang, piliin ang "Yes" para mag-trade pabor dito o "No" para mag-trade laban dito, ilagay ang iyong halaga, at i-click ang "Trade." Kung tama ang iyong napiling outcome kapag na-resolve ang market, nagbabayad ang iyong "Yes" shares ng $1 bawat isa. Kung mali, nagbabayad ang mga ito ng $0. Maaari ka ring magbenta ng iyong shares anumang oras bago ang resolution kung gusto mong i-lock in ang kita o bawasan ang pagkalugi.

Ang kasalukuyang frontrunner para sa "Quantum breaks Bitcoin by ___?" ay "December 31, 2027" sa 14%, ibig sabihin itinatakda ng market ang 14% na tsansa sa outcome na iyon. Ang sumunod na pinaka-malapit na outcome ay "December 31, 2026" sa 8%. Nag-a-update ang mga odds na ito sa real-time habang bumibili at nagbebenta ang mga trader ng shares, kaya sinasalamin nila ang pinakabagong kolektibong view kung ano ang pinaka-malamang na mangyari. Bumalik nang madalas o i-bookmark ang pahinang ito para sundan kung paano nagbabago ang odds habang lumilitaw ang bagong impormasyon.

Ang mga resolution rules para sa "Quantum breaks Bitcoin by ___?" ay tiyak na nagde-define kung ano ang kailangang mangyari para sa bawat outcome na maideklara bilang panalo — kasama ang mga opisyal na data source na ginagamit para matukoy ang resulta. Maaari mong i-review ang kumpletong resolution criteria sa "Rules" section sa pahinang ito sa itaas ng mga komento. Inirerekomenda namin na basahin nang mabuti ang mga patakaran bago mag-trade, dahil tinutukoy nila ang mga tiyak na kondisyon, edge cases, at mga source na namamahala kung paano nise-settle ang market na ito.