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Sgro, Christopher M. – ProQuest LLC, 2023
Integrating science and engineering has become a focal point for current research in science and STEM educational fields. Infusing engineering design as an application of scientific principles is beneficial, as it demonstrates an authentic, real-world application and allows for not only student engagement and enthusiasm, but also an avenue to…
Descriptors: STEM Education, Chemistry, Scientific Principles, Instructional Design
Wilcox, Jesse; Reiter, Reade; Rose, Abby; Alberts, Alex; Murano, Katie – Science and Children, 2022
Although the "Next Generation Science Standards" (NGSS) have three dimensions, the crosscutting concepts are often the forgotten dimension. One reason teachers may not emphasize the crosscutting concepts might be because they are broad, domain-general constructs that can be difficult to conceptualize in a meaningful way. Yet, when taught…
Descriptors: Science Instruction, Scientific Principles, Teaching Methods, Inquiry
Pols, Freek – Physics Education, 2021
Although learning about Nature of Science (NOS) promotes a variety of important outcomes, teachers often lack suitable activities for younger students to effectively address NOS. In this article I elaborate on an NOS activity developed for a teacher professionalisation workshop. The activity is suited for younger students as well, where clear…
Descriptors: Scientific Principles, Science Instruction, Outcomes of Education, Teacher Workshops
Burke, Lydia E. Carol-Ann; McAvella, Alison; Wessels, Anne – Science Teacher, 2020
Researchers have demonstrated a correlation between personal value, enjoyment and interest, and sustained engagement in science (Ainley and Ainley 2011). This article presents pedagogical strategies that use drama and discussion to explore students' everyday encounters with science by engaging the body and emotion. Drama-based discussions in…
Descriptors: Drama, Scientific Principles, Teaching Methods, Science Instruction
Pierratos, Theodoros; Koumara, Anna – Primary Science, 2020
In this article, a series of activities on explicit teaching of specific aspects of the 'nature of science' are presented. The authors explore teaching the nature of science through inquiry-based activities on electric circuits. The activities concern classification of objects as conductors or insulators and took place in three classes of 4th…
Descriptors: Grade 4, Elementary School Students, Science Instruction, Learning Activities
Rollinde, Emmanuel; Decamp, Nicolas; Derniaux, Catherine – Physical Review Physics Education Research, 2021
The experiment that we present in this paper explores the teaching of Galilean motion principles observed in different reference frames, in an astronomical context. All grade 10 students in a French high school (the lycée Condorcet, Val de Marne) participated in two successive teaching-learning sessions, designed within the theoretical framework…
Descriptors: Teaching Methods, Astronomy, Science Instruction, Learning Processes
Xu, Liangliang; Zhang, Yong; Jin, Cheng – Science Insights Education Frontiers, 2022
One of the primary characteristics of the holistic module learning model is task-driven learning. In this learning model, a task is a distinct activity or collection of distinct activities designed to assist students in achieving learning objectives. The purpose of this paper is to examine the effective design and implementation of task-driven…
Descriptors: Physics, Science Instruction, Teaching Methods, Task Analysis
Babaian, Caryn; Kumar, Sudhir – American Biology Teacher, 2020
Evolutionary evidence is important scientific background for appreciating the theory of evolution. We describe a STEAM-based lesson plan that uses paleontological drawings and a modern evolutionary database to explore and understand fossil, morphological, and molecular evidence. Together, with a focus on arthropods and the Cambrian explosion,…
Descriptors: Molecular Biology, Science Instruction, Teaching Methods, Evolution
Robertson, Bill – Science and Children, 2016
Bill Robertson is the author of the NSTA Press book series, "Stop Faking It! Finally Understanding Science So You Can Teach It." In this month's issue, Robertson describes and explains the Heisenberg Uncertainty Principle. The Heisenberg Uncertainty Principle was discussed on "The Big Bang Theory," the lead character in…
Descriptors: Science Instruction, Teaching Methods, Scientific Principles, Elementary School Science
Schultheis, Elizabeth H.; Kjelvik, Melissa K. – American Biology Teacher, 2020
Authentic, "messy data" contain variability that comes from many sources, such as natural variation in nature, chance occurrences during research, and human error. It is this messiness that both deters potential users of authentic data and gives data the power to create unique learning opportunities that reveal the nature of science…
Descriptors: Data Analysis, Scientific Research, Science Instruction, Scientific Principles
Ceuppens, S.; Deprez, J.; Dehaene, W.; De Cock, M. – Physics Education, 2018
To improve the teaching and learning materials for a curriculum it is important to incorporate the findings from educational research. In light of this, we present creative exercises and experiments to elicit, confront and resolve misconceptions in geometrical optics. Since ray diagrams can be both the cause and the solution for many…
Descriptors: Misconceptions, Optics, Creative Activities, Science Experiments
Cooper, A. Kat; Oliver-Hoyo, M. T. – Chemistry Education Research and Practice, 2016
Argument construction is a valuable ability for explaining scientific phenomena and introducing argumentation skills as part of a curriculum can greatly enhance student understanding by promoting self-reflection on the topic under investigation. This article aims to use argument construction as a technique to support an activity designed to…
Descriptors: Persuasive Discourse, Rhetorical Invention, Scientific Literacy, Scientific Principles
Johnson, Brian J.; Graham, Kate J. – Journal of Chemical Education, 2015
This paper will describe a guided inquiry activity for teaching ligand field theory. Previous research suggests the guided inquiry approach is highly effective for student learning. This activity familiarizes students with the key concepts of molecular orbital theory applied to coordination complexes. Students will learn to identify factors that…
Descriptors: Inquiry, Science Instruction, Teaching Methods, Scientific Concepts
Friedman, Lawrence B.; Margolin, Jonathan; Swanlund, Andrew; Dhillon, Sonica; Liu, Feng – American Institutes for Research, 2017
Playground Physics is a technology-based application and accompanying curriculum designed by New York Hall of Science (NYSCI) to support middle school students' science engagement and learning of force, energy, and motion. The program includes professional development, the Playground Physics app, and a curriculum aligned with New York State…
Descriptors: Middle School Students, Science Instruction, Secondary School Science, Physics
Kuo, Eric; Wieman, Carl E. – Physical Review Special Topics - Physics Education Research, 2015
Broad instructional methods like "interactive engagement" have been shown to be effective, but such general characterization provides little guidance on the details of how to structure instructional materials. In this study, we seek instructional specificity by comparing two ways of using an analogy to learn a target physical principle:…
Descriptors: Teaching Methods, Science Instruction, Physics, Logical Thinking