| [1] |
Ling Li, Yue Weng, Zuhui Xiang, Fengwan Guo.
A Preliminary Exploration of AI-Enabled Teaching Reform in General Education Courses: A Case Study of “Chemistry and Human Civilization”
[J]. University Chemistry, 2025, 40(9): 43-52.
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| [2] |
Wenwen Ma, Liyan Liu, Chengyang Yin, Hongdan Zhang, Lian Kong, Na Wei, Zhan Yu, Zhen Zhao.
Exploration of the Online and Offline Mixed Teaching Mode of Specialized English for Chemistry Majors Based on the BOPPPS Model
[J]. University Chemistry, 2025, 40(9): 287-294.
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| [3] |
Liping Cheng, Lin Lin, Xiuzhen Xiao.
“AI-Empowered” Teaching Reform and Exploration in Higher Education: A Case Study of Inorganic Chemistry Course
[J]. University Chemistry, 2025, 40(9): 264-272.
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| [4] |
Junyu Peng, Feng Wang, Hongmei Yuan, Xiaoli Sun.
Exploration of the “Sheep-Flock Effect” Teaching Model Based on Dual Preview: Taking Instrumental Analysis Experiment Courses in Local Universities as an Example
[J]. University Chemistry, 2025, 40(9): 310-317.
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| [5] |
Di Xu, Li Dai, Wenzhi Yao, Li Wang, Fang Zhang, Xin Gao.
Exploration and Application of Smart Teaching in Organic Chemistry
[J]. University Chemistry, 2025, 40(9): 189-195.
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| [6] |
Zijun Huang, Feng Wu, Shaofeng Pi, Saijin Huang, Zhengjun Fang.
Knowledge Graph-based Development of AI Curriculum for Inorganic Chemistry Experiments and Exploration of New Teaching Paradigm
[J]. University Chemistry, 2025, 40(9): 228-237.
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| [7] |
Wenna Wu, Tao Zhang, Tao He, Kai Feng, Yanyang Han, Shanshan Liu, Huajie Liu, Qingzhong Li, Xin Yang.
Research and Application of AI Teaching Assistants in the Blended Teaching of Principles of General Chemistry: A Case Study of “Atomic Structure”
[J]. University Chemistry, 2025, 40(9): 245-252.
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| [8] |
Sha Pan, Bairu Yu, Jun Li, Ling Wu, Dan Li, Tianji Ma, Zhong Cao.
Study on the Bilingual Teaching Reform of Analytical Chemistry Driven by New Development Trends
[J]. University Chemistry, 2025, 40(8): 338-344.
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| [9] |
Wanchun Zhu, Bing Zhou, Tengfeng Xie, Jingqi Guan, Xu Zhao.
Reflection and Experience on the Teaching of Comprehensive Design Experiments in Physical Chemistry
[J]. University Chemistry, 2025, 40(8): 33-37.
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| [10] |
Linghua Chen.
Teaching Reform of Analytical Chemistry in Food Science Major Using a Dual Linkage “Three-Phase Learning” Model
[J]. University Chemistry, 2025, 40(8): 78-91.
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| [11] |
Xuexia He, Zhibin Lei, Pei Chen, Qi Li, Weiyu Deng, Peng Hu.
Precipitation of Charge Transfer Co-Crystals Guided by the “Solubility Product Rule”: A Case on the Teaching Reform of Inorganic Chemistry in Materials Science Majors
[J]. University Chemistry, 2025, 40(8): 1-10.
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| [12] |
Jinrong Bao, Jinglin Zhang, Wenxian Li, Xiaowei Zhu.
Preparation and Characterization of Rare Earth Benzoate Complexes: A Case Study of Comprehensive Chemistry Experiments in Talent Development for Applied Chemistry Majors
[J]. University Chemistry, 2025, 40(8): 218-224.
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| [13] |
Xipu He, Wengui Duan, Guishan Lin.
Reform and Practice of Organic Chemistry Teaching for Non-Chemistry Major under the Four New Construction: Taking the Organic Chemistry Course Reform of Biological Science Major at Guangxi University as an Example
[J]. University Chemistry, 2025, 40(7): 42-47.
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| [14] |
Jinghui Zhang, Wei Shen, Sheng Tang, Ru Jia, Wei Zhong.
Exploration and Reflection on Interdisciplinary Teaching of Analytical Chemistry in the New Era of International Competition
[J]. University Chemistry, 2025, 40(7): 1-9.
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| [15] |
Haifeng Ma, Xiaocong Tian, Fengbin Wang, Zhonghua Xi, QingWang.
Design of College Chemistry Experiment Based on Product Quality Control: Taking “Optimization of Ferrous Fumarate Synthesis Process” as an Example
[J]. University Chemistry, 2025, 40(7): 321-327.
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