Completed from United Kingdom
Wow! This course was exactly what I needed to jump‑start my journey into quantum computing. The enthusiastic teaching style kept me engaged, and the practical labs—especially the one where we simulated Shor's algorithm—were mind‑blowing. I now understand how to translate mathematical theory into code using Qiskit, and I've already started experimenting with quantum error correction on my own. The course materials were top‑notch, with clear diagrams and up‑to‑date research links. I'm thrilled with how much I've learned and can't recommend it enough.
The 'L'informatique Quantique' course exceeded my expectations. The curriculum was precisely aligned with my goal of understanding quantum algorithms for future research. I especially appreciated the module on quantum gates, where the step‑by‑step walkthrough of the Hadamard and CNOT gates using Qiskit notebooks gave me hands‑on experience. The lecture slides were clear, up‑to‑date, and the supplementary reading from recent Nature papers added depth. Overall, the course material was both rigorous and relevant, and I now feel confident designing simple quantum circuits for my PhD project.
I took this course because I wanted a solid intro before diving into quantum computing at work. The videos were easy to follow and the real‑world examples—like using quantum annealing for portfolio optimization—made the concepts click. I was able to finish the final lab where I built a basic quantum teleportation circuit on IBM Quantum, which I later showcased to my team. The resources were well organized, and the instructor answered questions quickly. It was a great way to boost my skill set.
The detailed approach of the 'L'informatique Quantique' course helped me achieve my learning objective of building and testing quantum circuits. Each week began with a comprehensive reading list, followed by in‑depth video lectures that broke down complex topics like entanglement entropy. The hands‑on labs were particularly valuable; I completed a project where I implemented the Quantum Approximate Optimization Algorithm (QAOA) to solve a small Max‑Cut problem, which reinforced my understanding of both theory and practice. The supplementary notebooks were cleanly written, and the instructor’s feedback on assignments was constructive. Overall, the course delivered high‑quality, relevant content and gave me confidence to pursue quantum research.