QSilver36 - Quantum Computing and Programming Workshop organized by QPoland - Day 4 (5.03.2026)

QSilver36 - Quantum Computing and Programming Workshop organized by QPoland - Day 4 (5.03.2026)

🎙 Fundacja Quantum AI 👥 2K 📅 March 14, 2026 ⏱ 113 min 👁 30 📄 tutorial 🧭 2026-08-16
Available in: English (current) Français

Keywords

quantum phase estimationorder findingShor's algorithmQiskitmodular exponentiation

Summary

This is the fourth session of a quantum computing workshop organized by QPoland. The instructor begins with a recap of quantum phase estimation (QPE) and then guides participants through coding exercises in Qiskit. They implement QPE for a given unitary operator, demonstrating how to construct the circuit, apply controlled-U gates, and use the inverse quantum Fourier transform. The session then introduces the order finding algorithm, which is a key component of Shor’s algorithm for factoring integers. The instructor explains the mathematical background, including Euler’s theorem and modular exponentiation, and illustrates the periodic behavior of remainders. They emphasize that the order finding algorithm leverages the quantum Fourier transform to find the period r. The session concludes with a coding assignment for participants. The video is a practical tutorial with live coding, aimed at learners with some prior knowledge of quantum computing.

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Critical Evaluation

Value of the Information & Strength of the Argument

The video provides valuable hands-on experience in implementing quantum algorithms, which is essential for understanding theoretical concepts. The instructor clearly explains the steps of QPE and order finding, and the live coding helps viewers see how to translate theory into practice. The argumentation is solid, as the instructor builds on previous lessons and connects the algorithms logically. However, the video lacks a formal structure and some explanations are rushed, which might make it challenging for beginners. The use of examples and the step-by-step approach strengthen the educational value.

Scientific Rigor, Source Quality, Title Accuracy

The scientific rigor is adequate for a workshop: the instructor correctly explains the algorithms and references standard concepts like the quantum Fourier transform and Euler’s theorem. However, no external sources are cited, and the video relies on the instructor’s expertise. The title accurately reflects the content, and the description provides a link to the workshop page. The video is a tutorial, so it does not present original research but rather educational material. The lack of formal citations is typical for such content, but the explanations are consistent with established quantum computing literature.

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Title / Content Match

The title accurately describes the content: a workshop on quantum computing and programming, specifically day 4 of the QSilver36 series.

Quality & Reliability

7/10

The content is a technical workshop with live coding, providing accurate explanations of quantum algorithms. The instructor demonstrates practical implementation and addresses errors, but the video is not peer-reviewed and lacks formal citations.

Key Moments

Cited Sources

  • QSilver36 Workshop Page — The official workshop page providing details about the event and possibly additional resources.

Concurring Sources

  • Quantum Phase Estimation — The video's explanation of QPE aligns with standard descriptions found in literature.
  • Shor's algorithm — The order finding algorithm is a core component of Shor's algorithm, as explained in the video.

Contribution & Novelties

The video offers a practical, coding-focused approach to learning quantum algorithms, which is valuable for students and practitioners. It bridges the gap between theory and implementation, showing how to use Qiskit for QPE and order finding. The instructor’s live problem-solving and explanations of common pitfalls enhance the learning experience.

Pour aller plus loin :

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Radar Profile

The radar profile shows high scores in technical level and information quantity, indicating a dense, technical tutorial. The quality and reliability scores are moderate, reflecting the lack of formal citations but the correctness of the content. The overall balance suggests a valuable educational resource for those with some background in quantum computing.

Reliability 7/10