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Jeah May O. Badeo; Bee Ching U. Ong Kian Koc; Domarth Ace G. Duque; Russel L. Arnaldo – Science Education International, 2025
This study investigated the effect of using socioscientific issues (SSI)-based learning modules in enhancing physics knowledge. Three SSI-based learning modules were developed in this study and obtained a "Very Satisfactory" rating after the expert's evaluation, electromagnetic (EM) waves module (M = 3.82, standard deviation [SD] =…
Descriptors: Science Instruction, Physics, Teaching Methods, Specialists
Agnes Sung – Online Submission, 2024
Urban school districts have seen low scores on NWEA Map math scores (Education Recovery Scoreboard, 2024). To foster and promote urban youths' capabilities to learn mathematics, a new method to teach, enhance, and remediate understanding of fractions was developed, Fractions and Signed Numbers Workshop (FracSi). It utilizes the approach of an…
Descriptors: Fractions, Mathematics Instruction, Urban Schools, Literacy Education
Ibrahim Oluwajoba Adisa; Danielle Herro; Oluwadara Abimbade; Golnaz Arastoopour Irgens – Information and Learning Sciences, 2024
Purpose: This study is part of a participatory design research project and aims to develop and study pedagogical frameworks and tools for integrating computational thinking (CT) concepts and data science practices into elementary school classrooms. Design/methodology/approach: This paper describes a pedagogical approach that uses a data science…
Descriptors: Learner Engagement, Elementary School Students, Data Science, Computation
Tillema, Erik S. – Mathematical Thinking and Learning: An International Journal, 2020
Two-hour long developmental teaching interviews were conducted with each of 14 sixth grade students, ages 11-12. The purposes of the interviews were to investigate how students solved arrangement problems (APs), and how their solutions of these problems differed from their solution of Cartesian product problems (CPPs). The 14 students represented…
Descriptors: Mathematics Instruction, Multiplication, Mathematical Concepts, Teaching Methods
Barth-Cohen, Lauren A.; Braden, Sarah K.; Young, Tamara G.; Gailey, Sara – Physical Review Physics Education Research, 2021
Research in undergraduate physics and in K-12 science education has demonstrated challenges and successes in facilitating student engagement with reasoning practices associated with professional physicists. Here we focus on one important dimension of physics reasoning, using evidence to revise models. While this topic has been explored at the…
Descriptors: Middle School Students, Physics, Science Instruction, Thinking Skills
Cheng, Meng-Fei; Wu, Tsung-Yu; Lin, Shu-Fen – Research in Science Education, 2021
Understanding scientific models and practicing scientific modeling have been emphasized and advocated in science learning. Although teachers have been perceived as shaping their students' understanding of the nature of science, they have been recognized for their lack of understanding of scientific models. This study explores middle school science…
Descriptors: Correlation, Models, Science Instruction, Teaching Methods
Khary Fletcher – ProQuest LLC, 2022
The purpose of this study was to examine the impact of the social and cultural instructional process on independent reading. In addition, the purpose of this study was to examine the effect of the administrator-teacher relationship on educational practices in a lab site classroom. Using an action research design, data was collected through…
Descriptors: Cultural Literacy, Grade 9, English Teachers, Teacher Researchers
Biddy, Quentin; Chakarov, Alexandra Gendreau; Bush, Jeffrey; Elliott, Colin Hennessy; Jacobs, Jennifer; Recker, Mimi; Sumner, Tamara; Penuel, William – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2021
This article describes a professional development (PD) model, the CT-Integration Cycle, that supports teachers in learning to integrate computational thinking (CT) and computer science principles into their middle school science and STEM instruction. The PD model outlined here includes collaborative design (codesign; Voogt et al., 2015) of…
Descriptors: Professional Development, Teacher Workshops, Summer Programs, Teacher Collaboration
Stender, Anita; Schwichow, Martin; Zimmerman, Corinne; Härtig, Hendrik – International Journal of Science Education, 2018
Many science curricula and standards emphasise that students should learn both scientific knowledge and the skills associated with the construction of this knowledge. One way to achieve this goal is to use inquiry-learning activities that embed the use of science process skills. We investigated the influence of scientific reasoning skills (i.e.…
Descriptors: Inquiry, Science Instruction, Cognitive Ability, Teaching Methods
Altering the Trajectory of the Self-Fulfilling Prophecy: Asset-Based Pedagogy and Classroom Dynamics
López, Francesca A. – Journal of Teacher Education, 2017
Prior research has contributed to our understanding about the ways teachers communicate their expectations to students, how students perceive differential teacher behaviors, and their effect on students' own perceptions of ability and achievement. Despite more than half a century of this work, historically marginalized students continue to be…
Descriptors: Teaching Methods, Teacher Behavior, Teacher Characteristics, Correlation
Wecker, Christof; Rachel, Alexander; Heran-Dörr, Eva; Waltner, Christine; Wiesner, Hartmut; Fischer, Frank – Journal of Research in Science Teaching, 2013
In the course of inquiry activities similar to those of real scientists, learners are supposed to develop knowledge both on the level of observable phenomena and on the level of explanatory theories. However, some theories involve theoretical entities (e.g., "Weiss domains") that cannot be observed directly and therefore may be hard to…
Descriptors: Scientific Concepts, Theories, Inquiry, Science Instruction
Yoon, Susan A.; Wang, Joyce – TechTrends: Linking Research and Practice to Improve Learning, 2014
Despite the potential of augmented reality (AR) in enabling students to construct new understanding, little is known about how the processes and interactions with the multimedia lead to increased learning. This study seeks to explore the affordances of an AR tool on learning that is focused on the science concept of magnets and magnetic fields.…
Descriptors: Simulated Environment, Computer Simulation, Interaction, Multimedia Instruction
Yochum, Hank; Vinion-Dubiel, Arlene; Granger, Jill; Lindsay, Lynne; Maass, Teresa; Mayhew, Sarah – Science and Children, 2013
Engaging children in authentic investigation opens the doors for them to gain deep conceptual understanding in science. As students engage in investigation, they experience the practices employed by scientists and engineers, as highlighted in the Next Generation Science Standards (Achieve Inc. 2013). They also begin to understand the nature of…
Descriptors: Science Instruction, Magnets, Energy, Scientific Concepts
Cai, Su; Chiang, Feng-Kuang; Sun, Yuchen; Lin, Chenglong; Lee, Joey J. – Interactive Learning Environments, 2017
Educators must address several challenges inherent to the instruction of scientific disciplines such as physics -- expensive or insufficient laboratory equipment, equipment error, difficulty in simulating certain experimental conditions. Augmented reality (AR) can be a promising approach to address these challenges. In this paper, we discuss the…
Descriptors: Computer Simulation, Simulated Environment, Science Instruction, Physics
Young, Mary Hahn; Balli, Sandra J. – Gifted Child Today, 2014
This qualitative study explored student and parent perspectives on the extent to which gifted and talented programs met the educational needs of gifted students in Grades 4 to 7. Fifty-two interviews were conducted with students and parents from 10 public schools including seven neighborhood schools and three magnet schools. Participant…
Descriptors: Gifted, Talent, Talent Development, Teaching Methods
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