| [1] |
Linlin Wu, Yonghua Zhou, Zhongbei Li, Liu Deng, Younian Liu, Limiao Chen, Jianhan Huang.
Digital Education Promoting Applied Chemistry Comprehensive Experiments: A Case Study of Catalytic Oxidation of Hydrogen Chloride and Reaction Kinetics
[J]. University Chemistry, 2025, 40(9): 273-278.
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| [2] |
Wenrui Yao, Ce Sun, Bailing Chen, Yuanyuan Miao, Daxin Liang, Haiyan Tan, Dingyuan Zheng, Yanhua Zhang.
Practical Exploration of AI Empowerment in Graduate Safety Education
[J]. University Chemistry, 2025, 40(9): 126-131.
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| [3] |
Xia Yin, Peng Yang, Feng Xu, Yan Zhao, Shuangyan Huan, Jingzhe Zhao, Gonglan Ye, Yingpeng Wu.
Exploration and Practice of Ideological and Political Education in Inorganic Chemistry Experiment Course
[J]. University Chemistry, 2025, 40(7): 119-126.
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| [4] |
Hujun Qian, Rui Shi, Guanglu Wu, Xuanbo Zhu.
A Preliminary Study on the Development of a Virtual Simulation Platform for Polymer Physics Teaching and Its Teaching Practice
[J]. University Chemistry, 2025, 40(4): 147-153.
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| [5] |
Yulian Hu, Xin Zhou, Xiaojun Han.
A Virtual Simulation Experiment on the Design and Property Analysis of CO2 Reduction Photocatalyst
[J]. University Chemistry, 2025, 40(3): 30-35.
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| [6] |
Xiaoming Zhang, Chuanbo Li, Yuping Yang, Bin Zou, Dongxiang Li.
A New Model for Comprehensive Design Experiment Teaching in Emerging Engineering Majors: Integrating Virtuality and Reality through a Dual-Channel Approach in the Context of Lithium-Ion Battery Design and Fabrication
[J]. University Chemistry, 2025, 40(1): 125-132.
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| [7] |
Tianlong Zhang, Jiajun Zhou, Hongsheng Tang, Xiaohui Ning, Yan Li, Hua Li.
Virtual Simulation Experiment for Laser-Induced Breakdown Spectroscopy (LIBS) Analysis
[J]. University Chemistry, 2024, 39(6): 295-302.
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| [8] |
Cuiping Yang, Huiping Ding, Jinpeng Hou, Kai Li, Weiliang Tian.
Reform and Exploration of "Comprehensive and Precise Process" Assessment in Chemical Engineering Principle Experimental Course
[J]. University Chemistry, 2024, 39(3): 178-190.
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| [9] |
Pingping Zhu, Yongjun Xie, Yuanping Yi, Yu Huang, Qiang Zhou, Shiyan Xiao, Haiyang Yang, Pingsheng He.
Excavation and Extraction of Ideological and Political Elements for the Virtual Simulation Experiments at Molecular Level: Taking the Project "the Simulation and Computation of Conformation, Morphology and Dimensions of Polymer Chains" as an Example
[J]. University Chemistry, 2024, 39(2): 83-88.
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| [10] |
Yongsheng Niu, Hongchun Li, Jie Wang, Weina Li, Liangyu Gong, Qinxing Sun.
Design and Practice of ldeological and Political Education in the Virtual Simulation Comprehensive Internship Course of Materials Science
[J]. University Chemistry, 2024, 39(12): 65-72.
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| [11] |
Jing Du, Xi Yu, Xiaofei Ma, Wentao Zhao.
Artificial Intelligence & Chemistry Course Construction
[J]. University Chemistry, 2024, 39(11): 65-71.
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| [12] |
Hui Xiong, Yan Wang, Rongxian Bai, Yongqi Wu, Chengmei Liu, Yuefa Gong, Jian Zhang.
Development of a Compound Talent Training System Based on Virtual Technology: a Case Study of Chemical Unit and Process Simulation Practices
[J]. University Chemistry, 2024, 39(10): 314-317.
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| [13] |
Zhihong Shi, Gang Bian, Hongyi Zhang, Boran Zhang.
Green Optimization of Liquid Chromatographic Separation Conditions Based on Virtual Simulation Software
[J]. University Chemistry, 2023, 38(8): 136-144.
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| [14] |
Tianyao Xie, Shiying Huang, Ailing Deng, Hua Xiao.
Development of Virtual Simulation Software "Electronic Book" for Online-Merge-Offline Experimental Teaching: Taking Capillary Electrophoresis Experiment as an Example
[J]. University Chemistry, 2023, 38(8): 209-215.
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| [15] |
Yan Li, Linqing Song.
Historical Experience and Future Focus of Textbook Construction by Chemical Industry Press
[J]. University Chemistry, 2023, 38(6): 21-26.
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