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Catie Nielson; Emma Pitt; Michal Fux; Kristin de Nesnera; Nicole Betz; Jessica S. Leffers; Kimberly D. Tanner; John D. Coley – CBE - Life Sciences Education, 2025
Previous research has shown that students employ intuitive thinking when understanding scientific concepts. Three types of intuitive thinking--essentialist, teleological, and anthropic thinking--are used in biology learning and can lead to misconceptions. However, it is unknown how commonly these types of intuitive thinking, or cognitive…
Descriptors: Language Usage, College Students, Biology, Scientific Concepts
Eder Hernandez; Esmeralda Campos; Pablo Barniol; Genaro Zavala – Physical Review Physics Education Research, 2025
Electricity and magnetism are fundamentally interconnected, as represented by the symmetry in Maxwell's equations. Much of the research on Gauss's and Ampere's laws has focused on their application in calculating electric or magnetic fields. However, there remains a significant gap in the literature in exploring these laws in a broader…
Descriptors: Scientific Concepts, Energy, Magnets, Scientific Principles
Clare G. -C. Franovic; Nicholas R. Williams; Keenan Noyes; Michael W. Klymkowsky; Melanie M. Cooper – CBE - Life Sciences Education, 2023
Concerns regarding students' difficulties with the concept of energy date back to the 1970s. They become particularly apparent for systems involving adenosine triphosphate (ATP), which plays a central role in maintaining the nonequilibrium state of biological systems and in driving energetically unfavorable processes. One of the most…
Descriptors: Energy, Biology, Misconceptions, Scientific Concepts
Siong, Lai Chin; Tyug, Ong Yunn; Phang, Fatin Aliah; Pusppanathan, Jaysuman – Participatory Educational Research, 2023
Electricity is a very important concept in learning Physics. Mastering this concept can make learning Physics meaningful and relatable to real life problems. However, literature indicates that students have poor conceptual understanding of concepts about electricity. The current research aims to improve Form 5 (aged 17 years) students'…
Descriptors: Scientific Concepts, Cartoons, Misconceptions, Energy
Rodgers, Ben – Primary Science, 2022
When any object, such as a glass of water, a greenhouse or the Earth's atmosphere, stays at a steady temperature, the amount of energy entering the object is equal to the amount of energy leaving it. This is considered in equilibrium. This equilibrium changes when the amount of energy entering does not equal the amount of energy leaving.…
Descriptors: Elementary School Science, Science Instruction, Climate, Energy
Lauren C. Bauman; Trà Hu?nh; Amy D. Robertson – Physical Review Physics Education Research, 2024
Literature on student ideas about circuits largely focuses on misunderstandings and difficulties, with seminal papers framing student thinking as stable, difficult to change, and connected to incorrect ontological categorizations of current as a thing rather than a process. In this paper, we analyzed 417 student responses to a conceptual question…
Descriptors: Physics, Sequential Learning, Abstract Reasoning, Electronic Equipment
Zeynep Baskan Takaoglu – Journal of Educational Research, 2024
Energy is a concept frequently encountered both in daily life and in various disciplines. Despite such a wide range of scope, conceptualizing it might be challenging at times. This study aims to investigate high school students' views on the concept of energy through a set of various paper-and-pencil tests. For this purpose, 654 high school…
Descriptors: Scientific Concepts, Energy, Definitions, Freehand Drawing
Sakyiwaa Boateng; Sizwe J. C. Masuku – Journal of Baltic Science Education, 2025
Electricity and magnetism are fundamental areas of physics and are integral to science curricula at various educational levels. However, this area has been reported to contain several concepts that students find challenging, leading to perspectives that diverge from scientifically accepted views. This study examines the errors made by physics…
Descriptors: Physics, Science Teachers, Preservice Teachers, Teacher Education Programs
Riveros, Héctor G. – European Journal of Physics Education, 2020
Electric charges and magnetic poles are often confused in the minds of students. It is convenient to remind them that they only interact when they are in relative motion. The force F on a charged particle q moving with velocity V in a magnetic field B is given by F = qVxB. By Newton's Third Law, the force on magnet producing the field B is equal…
Descriptors: Science Instruction, Scientific Concepts, Energy, Magnets
Taskin, Tugba; Yavas, Pervin Ünlü – Research in Science Education, 2021
The purpose of this study was to investigate knowledge of high school students related to conductors at electrostatic equilibrium and electric field lines. The descriptive model was preferred in line with the purpose of the study. The sample of the study consisted of 35 11th grade students, 18 females and 16 males, who were enrolled in a…
Descriptors: High School Students, Knowledge Level, Scientific Concepts, Energy
Hachmi, A.; El Moussaouy, A.; Ouariach, A.; Essaadaoui, R.; Kerkour-El Miad, A.; Mommadi, O.; El Hadi, M. – Physics Education, 2021
In this study, which aims to help grade nine students overcome the misconceptions about electric current, we identified their misconceptions about this concept and then designed and implemented a playground activity as an analogy of electric current. Through the conceptual change texts approach, which we have enhanced with experience, we use this…
Descriptors: Playground Activities, Scientific Concepts, Energy, Physics
Karakaya, Ferhat; Yilmaz, Mehmet; Aka, Elvan Ince – Pedagogical Research, 2021
Biology, known as the science of life in its most general definition, is one of the branches of science closest to individuals due to the subjects it contains. Therefore, knowing the concepts related to biology correctly is important for the sustainability of the learning process. In this study, it was aimed to determine the conceptual perceptions…
Descriptors: Biology, Science Instruction, Misconceptions, Scientific Concepts
Carone, Delaney; Perkins, Ashley; Scott, Catherine – Science and Children, 2023
This lesson focuses specifically on teaching concepts of speed and its impact on energy, as well as providing a basic introduction to potential and kinetic energy to fourth-grade students. "Next Generation Science Standards" ("NGSS") 4-PS3-1 states that students should be able "to use evidence to construct an explanation…
Descriptors: Grade 4, Science Instruction, Energy, Scientific Concepts
Akbulut, Faruk; Altun, Yuksel – International Online Journal of Education and Teaching, 2020
Entropy is a concept with an extreme controversy which many scientists have been trying to explain. Some of the approaches employed in its definition contradict each other, which made it extremely difficult for high school and college students to understand. Boltzmann was the first person who brought a statistical explanation to entropy and…
Descriptors: Scientific Concepts, Science Education, Energy, Definitions
Kontomaris, S. V.; Malamou, A.; Balogiannis, G.; Antonopoulou, N. – Physics Education, 2020
Electromagnetic radiation can be classified into two major types depending on its ability to detach electrons from atoms: ionising and non-ionising. The aforementioned categorization is significant due to the effects of ionising radiation on human tissue (e.g. carcinogenesis). However, many students around the globe cannot distinguish these two…
Descriptors: Science Instruction, Energy, Magnets, Scientific Concepts