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Ramsey, Gordon – Physics Teacher, 2022
Many high schools, two-year colleges, and universities offer a conceptual physics course for non-science students who have to take a basic science course. The students often enter the course unmotivated and may eventually withdraw. So, how do we make the course interesting enough for these students to gain the knowledge we desire and, more…
Descriptors: Science Instruction, Physics, Active Learning, Scientific Concepts
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Palmgren, Elina; Tuominen, Kimmo; Kontro, Inkeri – Physical Review Physics Education Research, 2022
Physics instruction is often unable to support students' self-efficacy. The remote teaching brought on by the COVID-19 pandemic has also affected learning. We surveyed an introductory quantum mechanics course for three years during a transition into the spin first approach, adapting the student-centered "prime-time learning" model and…
Descriptors: Self Efficacy, Knowledge Level, Scientific Concepts, Quantum Mechanics
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Hachmi, Ali; El Hadi, Mohammed; Essaadaoui, Rachid; Mommadi, Omar; Ouariach, Abdelaziz; El Moussaouy, Abdelaziz – Physics Education, 2022
The Arduino board and its communication with several sensors are becoming more and more popular in the physical science community. They offer inspiring possibilities for learning different physical concepts. In this article, we focused on creating a very practical educational system for experimenting with diffraction of laser light and graphically…
Descriptors: Electronic Equipment, Physics, Science Instruction, Teaching Methods
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Cashman, Andrew; O'Mahony, Tom – European Journal of Engineering Education, 2022
In engineering, kinematics is widely regarded as a fundamental topic with the literature agreeing that students possess a wide range in understanding of the topic. This study aims to take a second-order approach by understanding and exploring the qualitatively different ways in which students approach solving kinematics problems. Phenomenography…
Descriptors: Physics, Scientific Concepts, Learning Experience, Concept Formation
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Ladachart, Luecha; Khamlarsai, Sirinapa; Phothong, Wilawan – LUMAT: International Journal on Math, Science and Technology Education, 2022
Attention is increasingly being paid to integrated science, technology, engineering, and mathematics (STEM) education as a way to increase the workforce for STEM-related careers as well as to promote STEM literacy among citizens. This means that all students, including those who are educationally disadvantaged, are expected to not only acquire…
Descriptors: Grade 9, Low Income Students, Disadvantaged Youth, STEM Education
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Singh, Chandralekha; Levy, Akash; Levy, Jeremy – Physics Teacher, 2022
After the passage of the U.S. National Quantum Initiative Act in December 2018, the National Science Foundation (NSF) and the Office of Science and Technology Policy (OSTP) recently assembled an interagency working group and conducted a workshop titled "Key Concepts for Future Quantum Information Science Learners" that focused on…
Descriptors: Physics, Quantum Mechanics, Science Instruction, Scientific Concepts
Noyes, Keenan Chun Hong Lee – ProQuest LLC, 2022
One of the goals of science education is to help students make sense of the world around them. To that end, it is critical that students understand the central ideas in each discipline like, in chemistry, energy and interactions. These ideas are of particular importance because they are directly related to one another and are relevant across other…
Descriptors: Energy, Science Instruction, Prediction, Chemistry
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Schmid, Kelly M.; Lee, Dennis; Weindling, Monica; Syed, Awais; Agyemang, Stephanie-Louise Yacoba; Donovan, Brian; Radick, Gregory; Smith, Michelle K. – Journal of Microbiology & Biology Education, 2022
Undergraduate genetics courses have historically focused on simple genetic models, rather than taking a more multifactorial approach where students explore how traits are influenced by a combination of genes, the environment, and gene-by-environment interactions. While a focus on simple genetic models can provide straightforward examples to…
Descriptors: Undergraduate Students, Genetics, Science Instruction, Models
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Nicholas Andrew Soltis; Karen S. McNeal – Journal for STEM Education Research, 2022
System thinking in an important area of study across STEM and non-STEM disciplines. The Earth system approach that drives the geosciences and is essential to issues of sustainability makes system thinking a critical skill in geoscience education. A key area in understanding the development of system thinking skills in the geosciences relies on the…
Descriptors: Test Construction, Test Validity, Science Tests, Scientific Concepts
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Junsheng Huang; Longfei Cai – Journal of Chemical Education, 2022
We introduced a microfluidic paper-based analytical device ([mu]PAD) to undergraduates majoring in nutrition education using a modified acid-base titration on paper microzones. After designing experiments for sample analysis using micro acid-base titration, students fabricated the devices and implement the experiment as designed. Then they…
Descriptors: Chemistry, Undergraduate Students, Nutrition Instruction, Majors (Students)
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Niu Huang; Chao Li; Shili Gan; Cancan Le; Huan Liu; Wei Liu; Liqun Ye – Journal of Chemical Education, 2022
With the benefits of low cost, energy efficiency, and environmental protection, photocatalytic hydrogen production is considered to be the most promising technology for the development of a clean and sustainable society. However, the utilization of photocatalytically generated hydrogen is not very common yet. Therefore, tertiary education urgently…
Descriptors: Undergraduate Students, College Science, Chemistry, Botany
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Barrera-Garrido, Azael – Physics Teacher, 2017
In order to measure the mass of an object in the absence of gravity, one useful tool for many decades has been the inertial balance. One of the simplest forms of inertial balance is made by two mass holders or pans joined together with two stiff metal plates, which act as springs.
Descriptors: Science Instruction, Scientific Concepts, Physics, Teaching Methods
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Cross, Rod – Physics Teacher, 2017
In a recent letter to this journal, Mungan noted that translational energy can be converted into gravitational potential energy when an object is projected vertically, but rotational energy is not usually converted in this manner. As an exception, he gave an example where "a ball initially rolling without slipping will travel higher up a…
Descriptors: Energy, Science Instruction, Physics, Motion
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Gangopadhyaya, Asim; Harrington, James – Physics Teacher, 2017
Newton's laws have engendered much discussion over several centuries. Today, the internet is awash with a plethora of information on this topic. We find many references to Newton's laws, often discussions of various types of misunderstandings and ways to explain them. Here we present an intriguing example that shows an assumption hidden in…
Descriptors: Physics, Scientific Concepts, Scientific Principles, Science Education
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Taibu, Rex – Physics Teacher, 2017
Terminological and conceptual issues surrounding the definition of scientific terms have bothered teachers and students for many years. Some terms such as "energy" are not even usually defined, although they appear in different contexts of scientific communication, and others such as "weight" have debatable definitions, and for…
Descriptors: Scientific Concepts, Definitions, Language Usage, Ambiguity (Semantics)
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