{"type":"video","version":"1.0","html":"<iframe src=\"https://www.loom.com/embed/fe595b3e6c494f83ad84d1b037839cac\" frameborder=\"0\" width=\"2022\" height=\"1516\" webkitallowfullscreen mozallowfullscreen allowfullscreen></iframe>","height":1516,"width":2022,"provider_name":"Loom","provider_url":"https://www.loom.com","thumbnail_height":1516,"thumbnail_width":2022,"thumbnail_url":"https://cdn.loom.com/sessions/thumbnails/fe595b3e6c494f83ad84d1b037839cac-ea86eadf87eff3a2.gif","duration":2827.866667,"title":"Applied Quantum Simulation with IBM Qiskit | From Circuits to Fault-Tolerant Quantum Systems","description":"This BlendED AI+X workshop introduces quantum computing through clear intuition and real examples. After a brief welcome and speaker intro, Stefano explains how qubits differ from classical bits via superposition, interference, and entanglement, and how quantum circuits leverage these effects to scale exponentially with qubit count. He illustrates why this can lead to speedups (e.g., search/optimization intuition), surveys current quantum hardware approaches, and clarifies what “quantum supremacy” does—and does not—mean in practice. The talk then focuses on near-term, hybrid variational quantum algorithms where small quantum circuits are optimized by classical computers for tasks like chemistry and machine learning, before concluding with a high-level, non-technical overview of quantum error correction as a prerequisite for reliable, large-scale quantum advantage, followed by Q&A and PBL next steps."}