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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
Haroldson, Rachelle – Science Teacher, 2019
Teaching the periodic table is a central part of chemistry. This might involve memorizing the symbols of the elements, learning about the properties of the families, or understanding its general organization. This year, The International Year of the Periodic Table, marks its 150th anniversary, and represents a good opportunity to highlight its…
Descriptors: Science Instruction, Chemistry, Puzzles, Teaching Methods
Pleasants, Jacob – Science Teacher, 2017
Helping students understand the Nature of Science (NOS) is a long-standing goal of science education. One method is to provide students examples of science history in the form of short stories. This article modifies that approach, using historical case studies to address both the history of science and the history of technology, as well as the…
Descriptors: Scientific Principles, Literary Genres, Science History, Teaching Methods
Inouye, Martha; Houseal, Ana; Gunshenan, Clare – Science Teacher, 2020
Recent research on science teaching and learning defines science as both a body of knowledge and a process (NRC 2007); it is the integration of science content, practices, and core ideas (NRC 2012). It would follow that science learning should parallel what science is and how it is done; students should not be just consumers of scientific…
Descriptors: Science Instruction, Teaching Methods, Science Process Skills, Hands on Science
Koumara, Anna; Plakitsi, Katerina; Lederman, Norman – Science Teacher, 2022
How do scientists make inferences for something they cannot directly observe? The Black Box approach seems ideal to help students understand how scientists work. Black Boxes are sealed units; their interior is not accessible. The effort to determine their possible content (internal structure) demands successive modifications in hypothesis,…
Descriptors: Teaching Methods, Science Instruction, Electronic Equipment, Scientific Principles
Peel, Amanda; Rockett, Jordan; Friedrichsen, Patricia; Zangori, Laura; Elmy, Clayton; Wagner, Brandon – Science Teacher, 2020
Vaping (the use of an e-cigarette) is a common practice among teenagers; 26.7% of high school students report vaping in the last 30 days (Johnston, Miech, O'Malley, Bachman, Schulenberg, and Patrick 2019), making this issue highly relevant. In order to make an informed decision about the use of e-cigarettes, students need to understand the impacts…
Descriptors: Electronic Equipment, Science Instruction, Teaching Methods, High School Students
Ament, Caitlin Marie; Graham, Theodore J. – Science Teacher, 2017
This article presents a unit of study in which students examine skeletons and draw conclusions from the evidence they find in a simulated mass grave. The activity involves the foundation of forensic anthropology--interpreting the structure of skeletal remains to determine sex, age, height, and possible cause of death. Working through a series of…
Descriptors: Science Instruction, Teaching Methods, Anthropology, Evidence
Hancock, James Brian, II; Lee, May – Science Teacher, 2018
Many teachers are confused about how to implement the phenomena-based teaching recommended by the "Next Generation Science Standards" (NGSS Lead States 2013). This article describes one possible approach--purposely repurposing existing activities. This process involves having teachers: (1) Choose a phenomenon that informs the development…
Descriptors: Concept Teaching, Scientific Concepts, Scientific Principles, Teaching Methods
Rinehart, Ronald – Science Teacher, 2020
Helping students understand that the scientific community's claims change through time, sometimes radically, allows them to develop a well-grounded sense of the "nature of science." Learning to reason about how scientific claims come to be accepted, and later refuted, is important for understanding the tentative nature of scientific…
Descriptors: Science Instruction, Geology, Scientific Concepts, Science Process Skills
Campbell, Todd; Neilson, Drew – Science Teacher, 2016
In this article Campbell and Neilson discuss several design strategies developed or adopted that were found particularly helpful when sequencing a unit that focused on learning about motion and acceleration. Students were expected to predict, observe, and explain why a ball traveled down one ramp faster than the other. Before engaging students,…
Descriptors: Models, Motion, Kinetics, Scientific Principles
Hewitt, Paul G. – Science Teacher, 2016
Examples of equilibrium are evident everywhere and the equilibrium rule provides a reasoned way to view all things, whether in static (balancing rocks, steel beams in building construction) or dynamic (airplanes, bowling balls) equilibrium. Interestingly, the equilibrium rule applies not just to objects at rest but whenever any object or system of…
Descriptors: Physics, Motion, Kinetics, Scientific Concepts
Murphy, Beth; Hedwall, Melissa; Dirks, Andrew; Stretch, Elizabeth – Science Teacher, 2017
Reading provides a unique window into the history and nature of science and the norms of scientific communication and supports students in developing critical-reading skills in engaging ways. Effective use of reading promotes a spirit of inquiry and an understanding of science concepts while also addressing expectations of the Common Core State…
Descriptors: Units of Study, Molecular Structure, Science Education History, Content Area Reading
Lotter, Christine; Taylor, Laurie – Science Teacher, 2016
In the 2 day lesson presented in this article, students explain how ionic substances interact in solutions by developing and revising their own explanatory models. The lesson engaged students in three-dimensional learning through creating and revising their own models to explain the interaction of ionic substances and polar molecules in a closed…
Descriptors: Molecular Structure, Science Activities, Science Instruction, Scientific Methodology
Pietsch, Renée B.; Hanlon, Regina; Bohland, Cynthia; Schmale, David G., III – Science Teacher, 2016
This article describes an interdisciplinary unit in which students explore biological "ice nucleation"--by particles that cause water to freeze at temperatures above -38°C--through the lens of the microbial ice nucleator "Pseudomonas syringae." Such This activity, which aligns with the "Next Generation Science…
Descriptors: Science Instruction, Interdisciplinary Approach, Experimental Groups, Units of Study
Guilford, Jacquelyn; Bustamante, Annette; Mackura, Kelly; Hirsch, Susan; Lyon, Edward; Estrada, Kelly – Science Teacher, 2017
Learning science is language intensive. Students might have to interpret the meaning of models, support claims with evidence, communicate arguments, and discuss phenomena and scientific principles. For English Language Learners (ELLs), engaging in scientific and engineering practices includes additional challenges. This article describes a series…
Descriptors: Scientific Literacy, Science Achievement, English Language Learners, Scientific Principles