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量子に興味津々

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はじめての方へ:学習中にわかりやすいヒントや補足を追加表示します。レッスンの内容は同じですが、サポートが内蔵されています。

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量子アカデミー

A complete curriculum in three tiers (beginner, intermediate, advanced) with learning objectives, a three-question check after every module, and a written capstone that asks you to apply what you learned. Free, self-paced, unlimited retakes, and your understanding meter only ever goes up.

自分のレベルがわからない方へ。ヘッダーにある「読む深さ」の設定が各ティアに対応しています:「興味あり」=初級、「技術的」=中級、「専門家」=上級。現在の設定は以下でハイライト表示されます。
Beginner · 6–8 hours

Quantum Computing Foundations

Builds accurate intuition without assuming advanced mathematics: the limits of classical representation, qubits, measurement, the three core quantum effects, hardware, applications, and the difference between present reality and long-term promise. 6 modules · 18 lessons · 6 knowledge checks · 1 capstone.

誰のためのサイトか: Business leaders, investors, students, and curious professionals with no physics or coding background

できるようになること:

  • Explain why quantum computing is a specialized tool rather than a universal replacement for classical computing.
  • Describe a qubit, measurement, probability amplitudes, phase, superposition, entanglement, and interference in plain language.
  • Identify the major hardware approaches and the importance of noise and error correction.
  • Evaluate common application claims in chemistry, optimization, finance, AI, sensing, and cybersecurity.
  • Use a five-part framework to separate credible progress from hype.

評価: Module quizzes 40% · terminology and concept exercises 20% · final capstone 40%

前提知識: No prior physics, calculus, linear algebra, or coding is required.

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Intermediate · 12–16 hours

Quantum Circuits, Algorithms, and Industry

Turns conceptual literacy into circuit intuition: the mathematical language of qubits, multi-qubit states, gates, noise, canonical and variational algorithms, benchmarking, applications, and security migration. 8 modules · 24 lessons · simulator laboratories · 8 quizzes · 1 technical-business capstone.

誰のためのサイトか: Learners who understand basic quantum concepts and want circuit-level and industry fluency

できるようになること:

  • Represent one- and two-qubit states using vectors and tensor products.
  • Explain how common gates transform amplitudes and phase.
  • Build and interpret small circuits, including Bell states.
  • Compare Grover search, phase estimation, Shor, and variational approaches at a conceptual and workflow level.
  • Evaluate NISQ experiments, hardware benchmarks, and quantum advantage claims.
  • Design a credible proof-of-concept plan for an organization.

評価: Labs 30% · module quizzes 30% · capstone 40%

前提知識: Completion of the beginner course or equivalent understanding of qubits, measurement, superposition, entanglement, interference, and error correction. Basic algebra is expected; introductory Python is helpful but optional.

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Advanced · 24–32 hours

Fault-Tolerant Quantum Computing and Technical Strategy

Integrates the mathematics of quantum information with fault-tolerant architecture, resource estimation, advanced algorithms, error correction, systems engineering, benchmarking, and strategic evaluation. Supports technical diligence and planning: it does not replace a graduate textbook. 10 modules · 30 lessons · problem sets and labs · 10 quizzes · 1 advanced capstone.

誰のためのサイトか: Technical leaders, analysts, developers, researchers, and investors seeking advanced technical and strategic fluency

できるようになること:

  • Work with state vectors, operators, density matrices, channels, and measurement formalism.
  • Analyze algorithmic complexity and distinguish query, gate, sample, and end-to-end cost.
  • Explain stabilizer codes, syndrome extraction, thresholds, logical gates, and fault-tolerant overhead.
  • Perform a high-level resource estimate for a fault-tolerant workload.
  • Compare hardware architectures through control, connectivity, fidelity, scaling, and error-correction requirements.
  • Critique quantum advantage claims and construct a technically defensible roadmap.

評価: Problem sets and labs 40% · quizzes 20% · capstone 40%

前提知識: Comfort with linear algebra, complex numbers, probability, basic algorithms, and the intermediate course material. Python experience is strongly recommended.

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Quick starts: the fun way in

Not ready for a full course? These three short sets tell the same story as friendly tap-through slides. Five minutes at a time, playful 5-question quizzes, no grades, nothing to fail.

Quantum, But Friendly

ここから始める · ~25 分 · 4 セクション + 最終テスト

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Everything is made of pieces much smaller than you'd expect, and down there the rules get wonderfully weird. This course gives you the whole starter kit: atoms, superposition, qubits and entanglement: told with coins, gloves and one famous cat.

Inside a Quantum Computer

基礎の次へ · ~20 分 · 3 セクション + 最終テスト

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What that famous golden chandelier actually is, how a computer can try many answers at once and still hand you the right one, and (honestly) what quantum computers are good at and what they'll never be.

Quantum in the Real World

基礎の次へ · ~20 分 · 3 セクション + 最終テスト

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Quantum physics already built your phone, your GPS and the hospital MRI. Now a second quantum revolution is underway: companies and countries are racing, and billions are moving. Here's the landscape, explained simply (and never as investment advice).

Quick-start quizzes draw from question banks (about twice the questions actually served), balanced so every attempt still covers each topic. Academy module checks are fixed three-question sets from the course itself. Same questions every attempt, because they are the course's own checkpoints.

Quantum, But Friendly

How Small Is Small?The Spinning CoinBit vs QubitSpooky Friends 最終テスト

Inside a Quantum Computer

The Golden ChandelierHow It ThinksGood At, Bad At 最終テスト

Quantum in the Real World

Quantum You Already OwnThe Great Quantum RaceFollowing the Quantum Money 最終テスト

アカデミー

Quantum Computing FoundationsQuantum Circuits, Algorithms, and IndustryFault-Tolerant Quantum Computing and Technical Strategy 全カリキュラム

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