Multilingual Performance of a Multimodal Artificial Intelligence System on Multisubject Physics Concept Inventories
arXiv:2501.06143 · doi:10.1103/98hg-rkrf
Abstract
We investigate the multilingual and multimodal performance of a large language model-based artificial intelligence (AI) system, GPT-4o, using a diverse set of physics concept inventories spanning multiple languages and subject categories. The inventories, sourced from the PhysPort website, cover classical physics topics such as mechanics, electromagnetism, optics, and thermodynamics, as well as relativity, quantum mechanics, astronomy, mathematics, and laboratory skills. Unlike previous text-only studies, we uploaded the inventories as images to reflect what a student would see on paper, thereby assessing the system's multimodal functionality. Our results indicate variation in performance across subjects, with laboratory skills standing out as the weakest. We also observe differences across languages, with English and European languages showing the strongest performance. Notably, the relative difficulty of an inventory item is largely independent of the language of the survey. When comparing AI results to existing literature on student performance, we find that the AI system outperforms average post-instruction undergraduate students in all subject categories except laboratory skills. Furthermore, the AI performs worse on items requiring visual interpretation of images than on those that are purely text-based. While our exploratory findings show GPT-4o's potential usefulness in physics education, they highlight the critical need for instructors to foster students' ability to critically evaluate AI outputs, adapt curricula thoughtfully in response to AI advancements, and address equity concerns associated with AI integration.
References in corpus (19)
- Could an Artificial-Intelligence agent pass an introductory physics course?
- Using conceptual metaphor and functional grammar to explore how language used in physics affects student learning
- Physics task development of prospective physics teachers using ChatGPT
- Enhancing STEM Learning with ChatGPT and Bing Chat as Objects to Think With: A Case Study
- How understanding large language models can inform the use of ChatGPT in physics education
- Exploring Generative AI assisted feedback writing for students' written responses to a physics conceptual question with prompt engineering and few-shot learning
- How do physics students evaluate artificial intelligence responses on comprehension questions? A study on the perceived scientific accuracy and linguistic quality
- The Impact of AI in Physics Education: A Comprehensive Review from GCSE to University Levels
- Performance of ChatGPT on the Test of Understanding Graphs in Kinematics
- Validation and Administration of a Conceptual Survey on the Formalism and Postulates of Quantum Mechanics
- ChatGPT as a tool for honing teachers' Socratic dialogue skills
- Using Large Language Models to Assign Partial Credit to Students' Explanations of Problem-Solving Process: Grade at Human Level Accuracy with Grading Confidence Index and Personalized Student-facing Feedback
- Development and Validation of a conceptual survey instrument to evaluate introductory physics students' understanding of thermodynamics
- Assessing Confidence in AI-Assisted Grading of Physics Exams through Psychometrics: An Exploratory Study
- Evaluating vision-capable chatbots in interpreting kinematics graphs: a comparative study of free and subscription-based models
- Cheat sites and artificial intelligence usage in online introductory physics courses: what is the extent and what effect does it have on assessments?
- Can ChatGPT pass a physics degree? Making a case for reformation of assessment of undergraduate degrees
- Using artificial-intelligence tools to make LaTeX content accessible to blind readers
- Using AI Large Language Models for Grading in Education: A Hands-On Test for Physics
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- When AI Evaluates Its Own Work: Validating Learner-Initiated, AI-Generated Physics Practice Problems