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Tong, Dazhen; Liu, Jia; Sun, Yechao; Liu, Qiaoyi; Zhang, Xiangqun; Pan, Sudong; Bao, Lei – Physical Review Physics Education Research, 2023
Work and mechanical energy is a fundamental topic in introductory physics. Studies in existing literature have shown that students have difficulties in understanding work and mechanical energy, particularly the topic of work-energy theorem. To study students' knowledge integration in learning work and mechanical energy, a conceptual framework…
Descriptors: Student Evaluation, Physics, Science Instruction, Scientific Concepts
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Xie, Li; Liu, Qiaoyi; Lu, Hui; Wang, Qingyong; Han, Jing; Feng, XiuMei; Bao, Lei – Physical Review Physics Education Research, 2021
A deep understanding of mechanical waves is crucial for students to succeed in studying many advanced physics topics. Studies in existing literature have revealed that students often have widespread difficulties and misconceptions on wave propagation. This research develops and applies a conceptual framework model to examine students'…
Descriptors: Physics, Scientific Concepts, Mechanics (Physics), Comprehension
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Xu, Wangyi; Jiang, Yonggui; Yang, Lan; Bao, Lei – Physical Review Physics Education Research, 2023
Achieving knowledge integration for deep learning requires students to develop well-connected knowledge structures through the central idea of a concept. However, a number of studies on student learning in momentum have revealed persistent difficulties in understanding its fundamental concept, particularly in relating net force, time, and change…
Descriptors: Physics, Science Instruction, Teaching Methods, Learning Processes
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Bao, Lei; Fritchman, Joseph C. – Physical Review Physics Education Research, 2021
Newton's third law is one of the most important concepts learned early in introductory mechanics courses; however, ample studies have documented a wide range of students' misconceptions and fragmented understandings of this concept that are difficult to change through traditional instruction. This research develops a conceptual framework model to…
Descriptors: Science Education, Scientific Principles, Physics, Teaching Methods
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Lin, Jiabei; Xing, Yuting; Hu, Yudi; Zhang, Jian; Bao, Lei; Luo, Kaiqing; Yu, Keke; Xiao, Yang – Physical Review Physics Education Research, 2023
Students hold a variety of initial (mis)conceptions that are inconsistent with scientific knowledge and hinder their physics learning. The initial (mis)conceptions could coexist with the scientific ones, even after a conceptual change. Inhibitory control may help overcome initial (mis)conceptions. This study investigated if and how inhibitory…
Descriptors: Misconceptions, Physics, Majors (Students), Science Education
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Xu, Wangyi; Liu, Qiaoyi; Koenig, Kathleen; Fritchman, Joseph; Han, Jing; Pan, Sudong; Bao, Lei – Physical Review Physics Education Research, 2020
Momentum is a foundational concept in physics. Although it is often taught in introductory mechanics courses, there are a limited number of studies on this topic in the literature. The results from these studies have consistently shown that students have difficulties in understanding momentum, especially the connections between net force, time,…
Descriptors: Physics, Science Instruction, Scientific Concepts, Introductory Courses
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Zhuang, Haoli; Xiao, Yang; Liu, Qiaoyi; Yu, Bing; Xiong, Jianwen; Bao, Lei – International Journal of Science Education, 2021
Formal understanding of the nature of science (NOS) has been considered to be a major contributor to nurturing students' scientific literacy. In China, this view has been endorsed in the new standard for high school physics curriculum, which has guided the development of the new generation physics textbooks. Following the analytical framework…
Descriptors: Foreign Countries, Scientific Principles, Physics, Science Instruction
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Han, Jing; Koenig, Kathleen; Cui, Lili; Fritchman, Joseph; Li, Dan; Sun, Wanyi; Fu, Zhao; Bao, Lei – Physical Review Physics Education Research, 2016
In a recent study, the 30-question Force Concept Inventory (FCI) was theoretically split into two 14-question "half-length" tests (HFCIs) covering the same set of concepts and producing mean scores that can be equated to those of the original FCI. The HFCIs require less administration time and reduce test-retest issues when different…
Descriptors: Physics, Scientific Concepts, Science Instruction, College Science
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Chen, Cheng; Bao, Lei; Fritchman, Joseph C.; Ma, Hemin – Physical Review Physics Education Research, 2021
Causal reasoning is a fundamental cognitive process that supports a wide range of learning activities such as making predictions and inferences, explaining phenomena, and drawing conclusions. In physics learning, causal reasoning plays an important role in developing conceptual understanding and problem-solving skills. This study builds off the…
Descriptors: Attribution Theory, Thinking Skills, Prediction, Inferences
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Liu, Zengze; Pan, Sudong; Zhang, Xiangqun; Bao, Lei – Physical Review Physics Education Research, 2022
Student learning in simple electric circuits has been extensively studied, which has revealed a large number of persistent misunderstandings. This study applies the conceptual framework model to investigate student difficulties in the knowledge integration perspective. The results are used to guide the design of a concept test that targets the…
Descriptors: Physics, Science Instruction, Electronic Equipment, Learning Processes
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Nie, Ying; Xiao, Yang; Fritchman, Joseph C.; Liu, Qiaoyi; Han, Jing; Xiong, Jianwen; Bao, Lei – International Journal of Science Education, 2019
Knowledge integration is essential to achieve deep conceptual understanding, which requires students to develop well-connected knowledge structures through the central idea of a concept. To effectively represent and analyze knowledge integration, a conceptual framework model on force and motion is developed to map learners' knowledge structures in…
Descriptors: Physics, Middle School Students, Teaching Methods, Science Instruction
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Koenig, Kathleen; Wood, Krista E.; Bortner, Larry J.; Bao, Lei – Journal of College Science Teaching, 2019
This article showcases how a physics lab course was successfully redesigned to promote important reasoning abilities not explicitly addressed in the typical college setting. Student development of such abilities is essential for sound decision making, particularly when living in an information age. Essential features of our guiding curricular…
Descriptors: Science Laboratories, Physics, Science Instruction, Logical Thinking
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Dai, Rui; Fritchman, Joseph C.; Liu, Qiaoyi; Xiao, Yang; Yu, Haibo; Bao, Lei – Physical Review Physics Education Research, 2019
Light interference is an essential topic for understanding the wavelike nature of light, however, there are limited studies on modeling and assessing students' misconceptions and learning difficulties in this area. Based on the knowledge integration modeling approach, a conceptual framework for light interference is developed and used to model…
Descriptors: Light, Comprehension, Scientific Concepts, Physics
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Xiao, Yang; Fritchman, Joseph C.; Bao, Jacqueline Y.; Nie, Ying; Han, Jing; Xiong, Jianwen; Xiao, Hua; Bao, Lei – Physical Review Physics Education Research, 2019
In physics education research (PER), concept inventories (CIs) have become standard instruments for assessing students' learning throughout instruction. To promote widespread use of concept inventories, previous studies have developed an approach to split a full length CI into short versions of CIs. This research extends the existing method to…
Descriptors: Physics, Science Instruction, Energy, Magnets
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Bao, Lei; Koenig, Kathleen; Xiao, Yang; Fritchman, Joseph; Zhou, Shaona; Chen, Cheng – Physical Review Physics Education Research, 2022
Abilities in scientific thinking and reasoning have been emphasized as core areas of initiatives, such as the Next Generation Science Standards or the College Board Standards for College Success in Science, which focus on the skills the future will demand of today's students. Although there is rich literature on studies of how these abilities…
Descriptors: Physics, Science Instruction, Teaching Methods, Thinking Skills
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