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Exploring the potential of ChatGPT in enhancing atmospheric pressure plasma research techniques
Plasma Processes and Polymers ( IF 3.5 ) Pub Date : 2024-04-02 , DOI: 10.1002/ppap.202400028
Ruihang Bai 1 , Haiwei Zhu 1 , Jiacheng Li 1 , Dawei Liu 1, 2 , Xin Lu 3
Affiliation  

Released in March 2023, GPT‐4 has shown remarkable proficiency in various scientific areas, including atmospheric pressure plasma research. The paper discusses how GPT‐4, supported by ScholarAI and Wolfram plugins, enhances research efficiency with its vast knowledge and inferencing skills. It focuses on plasma‐water‐based nitrogen fixation experiments, demonstrating GPT‐4's abilities in explanation, analysis, prediction, planning, and verification. The study also addresses challenges like interpreting non‐textual data and keeping pace with scientific advancements. It highlights GPT‐4's role in improving nitrogen fixation process efficiency, showcasing its utility in scientific analysis and decision‐making. The paper emphasizes the evolving role of AI in research and the need for the scientific community to adapt to the rise of more advanced AI systems.

中文翻译:

探索 ChatGPT 在增强大气压等离子体研究技术方面的潜力

GPT-4 于 2023 年 3 月发布,在包括大气压等离子体研究在内的各个科学领域表现出了卓越的熟练程度。本文讨论了 GPT-4 在 ScholarAI 和 Wolfram 插件的支持下如何利用其丰富的知识和推理技能来提高研究效率。它专注于血浆水基固氮实验,展示了GPT-4的解释、分析、预测、规划和验证能力。该研究还解决了解释非文本数据和跟上科学进步等挑战。它强调了 GPT-4 在提高固氮过程效率方面的作用,展示了其在科学分析和决策中的实用性。该论文强调了人工智能在研究中不断发展的作用,以及科学界适应更先进人工智能系统崛起的必要性。
更新日期:2024-04-02
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