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Showing 1 to 15 of 896 results Save | Export
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Zeng, Liang; Zeng, Guang – Physics Teacher, 2021
Researchers have reported the funds of knowledge (FK) pedagogical approach effective in engaging minority students in learning. However, there are a lack of studies connecting FK to introductory college physics or physical science classes. By using examples from regional Mexican-American lived experiences at an Hispanic-serving institution located…
Descriptors: College Science, Introductory Courses, Physics, College Students
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Getty, Stephen; Gosnell, Natalie; Whitten, Barbara; Taylor, Joseph – Physics Teacher, 2020
Even among the sciences, physics stands out as an unusually White- and male-dominated field. The American Institute of Physics (AIP) reports that only 19% of physics faculty are women, and less than 6% of physics faculty are African American or Hispanic. Particularly for female students, the transition from high school to a college major in…
Descriptors: Science Instruction, College Science, Physics, Undergraduate Study
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Huangqing, Liu; Yanping, Xiao – Physics Education, 2021
In the epidemic period, online teaching has become the most important teaching form. On the basis of questions-centred massive open online courses (MOOCs) teaching, the online teaching mode of college physics was studied and discussed using the Tencent classroom, WeChat/QQ and Wisdom Tree Platform. MOOCs before class, Tencent classroom during…
Descriptors: Online Courses, Educational Technology, Technology Uses in Education, College Science
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Christian, Wolfgang; Belloni, Mario; Sokolowska, Dagmara; Cox, Anne; Dancy, Melissa – Physics Education, 2020
Over the past 25 years, the Davidson College Physics Department has developed small computer programs called Physlets. These programs were written in Java and distributed as Java applets embedded in HTML pages. Physics teachers from around the world used Physlets to author interactive computer-based curricular materials for the teaching of…
Descriptors: Science Instruction, Physics, Teaching Methods, Computer Oriented Programs
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Van Dusen, Ben; Nissen, Jayson – Journal of Research in Science Teaching, 2020
We investigated the intersectional nature of race/racism and gender/sexism in broad scale inequities in physics student learning using a critical quantitative intersectionality. To provide transparency and create a nuanced picture of learning, we problematized the measurement of equity by using two competing operationalizations of equity:…
Descriptors: Science Instruction, Physics, Racial Bias, Gender Bias
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Burko, Lior M. – Physics Teacher, 2016
The case study teaching method has a long history (starting at least with Socrates) and wide current use in business schools, medical schools, law schools, and a variety of other disciplines. However, relatively little use is made of it in the physical sciences, specifically in physics or astronomy. The case study method should be considered by…
Descriptors: Case Studies, Physics, Science Instruction, College Science
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Nelson, Jim; Nelson, Jane Bray – Physics Teacher, 2015
In this paper, a discrepant event is used to initiate a learning cycle lesson to help students develop an understanding of the concept and equation for buoyant force. The data are gathered using readily available equipment and then graphically analyzed using a four-step analysis consistent with the modeling instructional approach. This laboratory…
Descriptors: Science Instruction, Physics, Scientific Principles, Scientific Concepts
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Sokolowski, Andrzej – Physics Education, 2017
Graphs in physics are central to the analysis of phenomena and to learning about a system's behavior. The ways students handle graphs are frequently researched. Students' misconceptions are highlighted, and methods of improvement suggested. While kinematics graphs are to represent a real motion, they are also algebraic entities that must satisfy…
Descriptors: Graphs, Physics, Science Instruction, Misconceptions
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van der Veen, Jatila – American Educational Research Journal, 2012
The persistent fear of physics by learners motivated the author to take action to increase all students' interest in the subject via a new curriculum for introductory college physics that applies Greene's model of Aesthetic Education to the study of contemporary physics, utilizing symmetry as the mathematical foundation of physics as well as the…
Descriptors: Student Attitudes, Aesthetic Education, Learning Modalities, Physics
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Mola, Monty – Physics Teacher, 2013
Summer is almost here (at least for those of us who teach semesters). Many of us are taking a well-deserved break to spend time with our families, conduct research, travel, and myriad other activities. Some of us, however, will be teaching summer school. For those of us lucky enough to be teaching this summer, we have one suggestion: Be bold!…
Descriptors: Science Instruction, Summer Schools, Educational Innovation, Physics
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Darrah, Marjorie; Humbert, Roxann; Finstein, Jeanne; Simon, Marllin; Hopkins, John – Journal of Science Education and Technology, 2014
Most physics professors would agree that the lab experiences students have in introductory physics are central to the learning of the concepts in the course. It is also true that these physics labs require time and money for upkeep, not to mention the hours spent setting up and taking down labs. Virtual physics lab experiences can provide an…
Descriptors: College Science, Physics, Science Laboratories, Introductory Courses
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Hayes, Kate; Wittmann, Michael C. – Physics Teacher, 2010
Helping students set up equations is one of the major goals of teaching a course in physics that contains elements of problem solving. Students must take the stories we present, interpret them, and turn them into physics; from there, they must turn that physical, idealized story into mathematics. How they do so and what problems lie along the way…
Descriptors: Physics, Equations (Mathematics), Models, Problem Solving
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Singh, Vandana – Physics Teacher, 2010
Several misconceptions abound among college students taking their first general physics course, and to some extent pre-engineering physics students, regarding the physics and applications of electric circuits. Analogies used in textbooks, such as those that liken an electric circuit to a piped closed loop of water driven by a water pump, do not…
Descriptors: Physics, Energy, Misconceptions, Science Activities
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Dake, L. S.; Ribaudo, J.; Day, L. H. – Physics Teacher, 2018
In a small physics department it can be difficult to develop and maintain an environment that engages students of all levels, and encourages and facilitates student growth in curricular and co-curricular experiences. This difficulty can be amplified when the number of physics majors is small, especially with fewer than 15-20 majors in the program.…
Descriptors: Science Instruction, Physics, Learner Engagement, Majors (Students)
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Lancor, Rachael; Schiebel, Amy – Journal of College Science Teaching, 2008
In this project, introductory college physics students (noneducation majors) were asked to teach simple machines to a class of second graders. This nontraditional activity proved to be a successful way to encourage college students to think critically about physics and how it applied to their everyday lives. The noneducation majors benefited by…
Descriptors: Majors (Students), Role Models, Physics, Cooperative Learning
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