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Tobin, R. G.; Lacy, Sara J.; Crissman, Sally – Physical Review Physics Education Research, 2023
Kinetic energy is usually the entry point for the study of energy in physics and is often perceived as unproblematic. We present evidence, however, that some learners who seem to have accepted the concept, from elementary school students to college physics majors and in-service teachers, nevertheless do not consistently attribute kinetic energy to…
Descriptors: Physics, Science Instruction, Scientific Concepts, Concept Formation
Emily M. Stump; Mark Hughes; Gina Passante; N. G. Holmes – Physical Review Physics Education Research, 2023
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] Uncertainty is an important concept in physics laboratory instruction. However, little work has examined how students reason about uncertainty beyond the introductory (intro) level. In this work we aimed to compare intro and beyond-intro…
Descriptors: Student Attitudes, Scientific Attitudes, Physics, Introductory Courses
Jihoon Kang; Jina Kim – Journal of Baltic Science Education, 2024
While existing studies have underscored the educational benefits of generating explanatory hypotheses (EHs) in response to unexpected outcomes, empirical research on the underlying mechanisms driving their effectiveness in science learning remains limited. Thus, this study aimed to empirically examine the effectiveness of generating an EH for…
Descriptors: Science Instruction, Learning Processes, Protocol Analysis, Scientific Concepts
Bruce M. May – Pythagoras, 2024
A cohort of pre-service mathematics students was exposed to a teaching strategy based on retrieval practice and test-potentiated learning. The aim of the study was to determine how high and low prior topic knowledge study participants compare in terms of their procedural fluency and conceptual understanding after exposure to the teaching strategy.…
Descriptors: Prior Learning, Mathematics Instruction, Mathematics Skills, Problem Solving
Krijtenburg-Lewerissa, Kim; Pol, Henk; Brinkman, Alexander; van Joolingen, Wouter – Physics Education, 2022
Quantum mechanics (QM) has become part of many secondary school curricula. These curricula often do not include the mathematical tools for a formal, mathematical introduction of QM. QM therefore needs to be taught at a more conceptual level, but making secondary school students understand counterintuitive QM concepts without introducing…
Descriptors: Prior Learning, Physics, Science Instruction, Intervention
Petchey, Sara; Treagust, David; Niebert, Kai – CBE - Life Sciences Education, 2023
Abstract concepts dominate university science teaching, and much of this content is taught without sufficient connection to students' prior knowledge or everyday experiences. As this can be problematic for students, the aim of this research was to determine the utility and effectiveness of a professional development module on using analogies to…
Descriptors: Instructional Improvement, Science Instruction, Teaching Methods, Figurative Language
Aditya Anupam; Ridhima Gupta; Shubhangi Gupta; Zhendong Li; Nora Hong; Azad Naeemi; Nassim Parvin – International Journal of Designs for Learning, 2020
The abstract nature of quantum mechanics makes it difficult to visualize. This is one of the reasons it is taught in the language of mathematics. Without an opportunity to directly observe or interact with quantum phenomena, students struggle to develop conceptual understandings of its theories and formulas. In this paper we present the process of…
Descriptors: Quantum Mechanics, Science Instruction, Educational Games, Teaching Methods
Snead, William R.; Joseph, Manjula; Capriotiti, Michael; Saminatahn, Swega; Parewa, Abhinav; Thao, Chinhuor; Belogortsev, Aleksandr – Online Submission, 2023
This research study sought to determine whether pre-reading assignments have an impact on a student's academic performance. Learning a new topic which oftentimes seems foreign is never easy. However, reading a short article or reviewing a slide-show presentation on the lecture topic before the lecture happens (otherwise known as a pre-reading…
Descriptors: Prereading Experience, Assignments, Comparative Analysis, Academic Achievement
Ladachart, Luecha; Radchanet, Visit; Phothong, Wilawan – Journal of Experiential Education, 2023
Background: In countries that endorse science, technology, engineering, and mathematics (STEM) education as an educational movement, design-based learning is deemed a pedagogical approach. Purpose: Because the integration of the engineering design process and scientific investigation has been an issue in science education, this study examined the…
Descriptors: STEM Education, Teaching Methods, Comparative Analysis, Scientific Concepts
Tiffany Herder; Martina A. Rau – Grantee Submission, 2022
Educational video games can engage students in authentic STEM practices, which often involve visual representations. Specifically, because most interactions within video games are mediated through visual representations, video games provide opportunities for students to experience disciplinary practices with visuals. However, prior research has…
Descriptors: Educational Games, Video Games, STEM Education, Visual Stimuli
Yinghung N. Chiang – ProQuest LLC, 2021
There is concern over international students' low academic achievement at the college level. Due to language challenges and cultural differences, international students' academic achievement is not satisfactory that resulting in a decrease in the retention rate. Note-taking strategies such as the concept-mapping method may enhance international…
Descriptors: Concept Formation, Academic Achievement, Foreign Students, Economics Education
Richter, Juliane; Lachner, Andreas; Jacob, Leonie; Bilgenroth, Friederike; Scheiter, Katharina – Journal of Computer Assisted Learning, 2022
Background: Engaging students in computer-assisted guided inquiry learning has great potential to scaffold their scientific understanding: Students are expected to improve their scientific problem-solving skills, and at the same time gain a deep conceptual understanding of the subject-matter. Additional generative activities such as creating video…
Descriptors: Self Concept, Problem Solving, Video Technology, Computer Assisted Instruction
Chan, Jenny Yun-Chen; Lee, Ji-Eun; Mason, Craig A.; Sawrey, Katharine; Ottmar, Erin – Grantee Submission, 2021
Understanding equivalence is fundamental to STEM disciplines, yet misunderstandings and misconceptions inhibit students from fully appreciating or leveraging the concept. Using the game-based algebraic notation system, From Here to There! (FH2T), students explore ideas of equivalence by dynamically transforming expressions or equations among…
Descriptors: Middle School Students, Mathematics Instruction, Prior Learning, Teaching Methods
Nagashima, Tomohiro; Bartel, Anna N.; Silla, Elena M.; Vest, Nicholas A.; Alibali, Martha W.; Aleven, Vincent – Grantee Submission, 2020
Many studies have shown that visual representations can enhance student understanding of STEM concepts. However, prior research suggests that visual representations alone are not necessarily effective across a broad range of students. To address this problem, we created a novel, scaffolded form of diagrammatic self-explanation in which students…
Descriptors: Algebra, Teaching Methods, Visual Aids, Concept Formation
Darabi, Aubteen; Arrastia-Lloyd, Meagan C.; Nelson, David W.; Liang, Xinya; Farrell, Jennifer – Advances in Health Sciences Education, 2015
In order to develop an expert-like mental model of complex systems, causal reasoning is essential. This study examines the differences between forward and backward instructional strategies in terms of efficiency, students' learning and progression of their mental models of the electronic transport chain in an undergraduate metabolism course…
Descriptors: Causal Models, Teaching Methods, Learning Processes, Undergraduate Students