| [1] |
JU Lele1, XIAO Ting1, ZHENG Yuan1, CHEN Shuiqiao1, LI Yanya2, WANG Yewu1.
Exploration and practice of integrating“GAI” into college physics experiment teaching
[J]. College Physics, 2026, 45(5): 89-.
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| [2] |
LI Tingshun1b, LV Jiajun1c, WANG Zihan1b, LEI Jie1a, ZHANG Meina1a, XU Fangzhou1a.
self-assembled Wheatstone bridge guided by ideological and political education
[J]. College Physics, 2026, 45(5): 67-.
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| [3] |
ZHANG Xin1, CHEN Xiaorui2, YAN Chao1, WANG Hengtong1, GAO Jianzhi1.
Visualization of nanoscale electric fields: a case study of singlemolecule manipulation using a teachingfocused STM system
[J]. College Physics, 2026, 45(4): 21-.
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| [4] |
PAN Qianhe1, TANG Changshuo2, QIU Zhixin1, NING Xiangyu2, XU Weijing3.
Construction and practice of AI assistant agents for #br#
college physics experiment teaching#br#
[J]. College Physics, 2026, 45(3): 85-.
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| [5] |
LI Jiayu1, KONG Yihe1, SU Xinyang1, YANG He2.
Mach-Zehnder interferometric temperature sensor based on a Novel Vernier effect
[J]. College Physics, 2026, 45(2): 94-.
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| [6] |
YUE Guantong, SUN Shijia, Li Qiang, Chen Dong, CAO Derang.
AC Hall effect measurement using a lock-in amplifier
[J]. College Physics, 2026, 45(1): 6-.
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| [7] |
GUO Shuqing, ZHAO Gaiqing.
Exploration of practical Paths for college physics experiment teaching in the context of digital transformation:a qualitative study based on typical cases
[J]. College Physics, 2026, 45(1): 58-.
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| [8] |
JIANG Wenyin1, LIU Chenyu2, WANG Yuxing1, WANG Wei1.
Exploring the practical application of using artificial intelligence large models to assist students in learning university physics experimental courses
[J]. College Physics, 2025, 44(7): 36-.
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| [9] |
LI Dongkun, YAN Canhui, ZHAO Erli, LI Xiutai, WANG Ziyan, LIN Weihua.
Design and exploration of teaching experiments on optical diffraction of quasi-periodic structures#br#
[J]. College Physics, 2025, 44(6): 90-.
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| [10] |
CHEN Zewen1, TIAN Haixing1, YANG Qian2, NAN Chenhui1, MAO Shengchun1, LU Gang2, WANG He1.
Experimental study on the correction of output performance for solar cells
[J]. College Physics, 2025, 44(5): 15-.
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| [11] |
CHENG Lixian, LI Mingyang, WANG Jia, YANG Zijiang.
Digitalization empowers the teaching of physics experiments: #br#
the application exploration of Tracker software#br#
[J]. College Physics, 2025, 44(5): 92-.
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| [12] |
YAN Zixiang, WU Yue, XIE Guijin, GAO Jian, YANG Hujiang, XIAO Jinghua.
A digitaltwin system for chaotic torsion pendulum based on reservoir computing
[J]. College Physics, 2025, 44(4): 6-.
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| [13] |
Kexin LI, Zhenghan JIAO, Shiqi DAN, Honglin ZHANG, Pingchuan XU, Zhijiao ZHANG, Yongqiang LI.
Design of an experimental scheme for measuring the linear thermal expansion coefficient of metals via single-slit diffraction using Phyphox
[J]. College Physics, 2025, 44(11): 6-.
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| [14] |
FENG Shunzhen, LIU Zizhen, QU Shuanghui, DONG Yanhui, JI Denghui, LI Jinhua.
Research on the exploration and implementation strategy of ideological and political elements in university physics experiment course
[J]. College Physics, 2025, 44(11): 86-.
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| [15] |
HUANG Zhencheng, FENG Raohui, TANG Jian, SHEN Han, LUO Xin, CHEN Yu, LIAO Deju, FANG Yizhong, CUI Xintu, PANG Xiaoning, LI Mengyu.
Exploration on the curriculum reform of “Open Physics Experiments” for cultivating outstanding students
[J]. College Physics, 2025, 44(10): 44-.
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