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Inclusive learning for quantum computing: supporting the aims of quantum literacy using the puzzle game Quantum Odyssey

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arxiv 2106.07077 v1 pith:5PYQXQUM submitted 2021-06-13 physics.ed-ph quant-ph

Inclusive learning for quantum computing: supporting the aims of quantum literacy using the puzzle game Quantum Odyssey

classification physics.ed-ph quant-ph
keywords quantumcomputingodysseyvisualplayaimsalgorithmsbackground
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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With a vast domain of applications and now having quantum computing hardware available for commercial use, an education challenge arises in getting people of various background to become quantum literate. Quantum Odyssey is a new piece of computer software that promises to be a medium where people can learn quantum computing without any previous requirements. It aims to achieve this through visual cues and puzzle play, without requiring the user to possess a background in computer coding or even linear algebra, which are traditionally a must to work on quantum algorithms. In this paper we report our findings on an UKRI Citizen Science grant that involves using Quantum Odyssey to teach how to construct quantum computing algorithms. Sessions involved 30 minutes of play, with 10 groups of 5 students, ranging between 11 to 18 years old, in two schools in the UK. Results show the Quantum Odyssey visual methods are efficient in portraying counterintuitive quantum computational logic in a visual and interactive form. This enabled untrained participants to quickly grasp difficult concepts in an intuitive way and solve problems that are traditionally given today in Masters level courses in a mathematical form. The results also show an increased interest in quantum physics after play, a higher openness and curiosity to learn the mathematics behind computing on quantum systems. Participants developed a visual, rather than mathematical intuition, that enabled them to understand and correctly answer entry level technical quantum information science.

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Cited by 2 Pith papers

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  2. Resource Letter QIE-1: Research in quantum information education

    physics.ed-ph 2026-06 unverdicted novelty 2.0

    A survey compiling scholarship on QISE education research, materials, assessments, and ethical tools from high school to graduate level.