High schoolers excel at Oxford quantum course using pictorial mathematics

Fuente: arXiv
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Main Authors: Coecke, Bob, Kissinger, Aleks, Gogioso, Stefano, Dündar-Coecke, Selma, Puca, Caterina, Yeh, Lia, Waseem, Muhammad Hamza, Pothos, Emmanuel M., Pfaendler, Sieglinde, Wang-Mascianica, Vincent, Cervoni, Thomas, Tomassini, Ferdi, Anandraj, Vincent, Sigrist, Peter, Khan, Ilyas
Format: Preprint
Published: 2025
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author Coecke, Bob
Kissinger, Aleks
Gogioso, Stefano
Dündar-Coecke, Selma
Puca, Caterina
Yeh, Lia
Waseem, Muhammad Hamza
Pothos, Emmanuel M.
Pfaendler, Sieglinde
Wang-Mascianica, Vincent
Cervoni, Thomas
Tomassini, Ferdi
Anandraj, Vincent
Sigrist, Peter
Khan, Ilyas
author_facet Coecke, Bob
Kissinger, Aleks
Gogioso, Stefano
Dündar-Coecke, Selma
Puca, Caterina
Yeh, Lia
Waseem, Muhammad Hamza
Pothos, Emmanuel M.
Pfaendler, Sieglinde
Wang-Mascianica, Vincent
Cervoni, Thomas
Tomassini, Ferdi
Anandraj, Vincent
Sigrist, Peter
Khan, Ilyas
contents We are at the dawn of the second quantum revolution, where our ability to create and control individual quantum systems is poised to drive transformative advancements in basic science, computation, and everyday life. However, quantum theory has long been conceived as notoriously hard to learn, creating a significant barrier to workforce development, informed decision-making by stakeholders and policymakers, and broader public understanding. This paper is concerned with Quantum Picturalism, a novel visual mathematical language for quantum physics. Originally developed over two decades ago to explore the foundational structure of quantum theory, this rigorous diagrammatic framework has since been adopted in both academia and industry as a powerful tool for quantum computing research and software development. Here, we demonstrate its potential as a transformative educational methodology. We report the findings from a pilot study involving 54 UK high school students, randomly selected from a pool of 734 volunteers across the UK. Despite the absence of advanced mathematical prerequisites, these students demonstrated a strong conceptual grasp of key quantum principles and operations. On an assessment comprising university graduate-level exam questions, participants achieved an 82% pass rate, with 48% obtaining a distinction-level grade. These results pave the way for making quantum more inclusive, lowering traditional cognitive and demographic barriers to quantum learning. This approach has the potential to broaden participation in the field and provide a promising new entry point for stakeholders, future experts, and the general public.
format Preprint
id arxiv_https___arxiv_org_abs_2512_00141
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle High schoolers excel at Oxford quantum course using pictorial mathematics
Coecke, Bob
Kissinger, Aleks
Gogioso, Stefano
Dündar-Coecke, Selma
Puca, Caterina
Yeh, Lia
Waseem, Muhammad Hamza
Pothos, Emmanuel M.
Pfaendler, Sieglinde
Wang-Mascianica, Vincent
Cervoni, Thomas
Tomassini, Ferdi
Anandraj, Vincent
Sigrist, Peter
Khan, Ilyas
Physics Education
Logic in Computer Science
Category Theory
Quantum Physics
We are at the dawn of the second quantum revolution, where our ability to create and control individual quantum systems is poised to drive transformative advancements in basic science, computation, and everyday life. However, quantum theory has long been conceived as notoriously hard to learn, creating a significant barrier to workforce development, informed decision-making by stakeholders and policymakers, and broader public understanding. This paper is concerned with Quantum Picturalism, a novel visual mathematical language for quantum physics. Originally developed over two decades ago to explore the foundational structure of quantum theory, this rigorous diagrammatic framework has since been adopted in both academia and industry as a powerful tool for quantum computing research and software development. Here, we demonstrate its potential as a transformative educational methodology. We report the findings from a pilot study involving 54 UK high school students, randomly selected from a pool of 734 volunteers across the UK. Despite the absence of advanced mathematical prerequisites, these students demonstrated a strong conceptual grasp of key quantum principles and operations. On an assessment comprising university graduate-level exam questions, participants achieved an 82% pass rate, with 48% obtaining a distinction-level grade. These results pave the way for making quantum more inclusive, lowering traditional cognitive and demographic barriers to quantum learning. This approach has the potential to broaden participation in the field and provide a promising new entry point for stakeholders, future experts, and the general public.
title High schoolers excel at Oxford quantum course using pictorial mathematics
topic Physics Education
Logic in Computer Science
Category Theory
Quantum Physics
url https://arxiv.org/abs/2512.00141