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Page Keeley – NSTA Press, 2024
Here's a fresh way to help your students learn life science by determining how you can help them learn best. "Uncovering Student Ideas in Life Science, Volume 2," offers 30 new formative assessment probes--engaging questions that can reveal what students already know (or think they know) about a core science topic. Armed with that…
Descriptors: Science Education, Knowledge Level, Biological Sciences, Scientific Concepts
Silverthorn, Dee U. – Advances in Physiology Education, 2022
The Wiggers diagram showing simultaneous events of the cardiac cycle in composite graphs is one of the most intimidating figures students encounter in their study of physiology. This paper describes a discovery learning activity that walks students through the construction of the Wiggers diagram by focusing on the core concepts of blood flow down…
Descriptors: Visual Aids, Scientific Concepts, Class Activities, Science Activities
Esparza, Allison; Raven, Sara; Parks, Kaelyn – Science and Children, 2022
According to the National Survey of Science and Mathematics Education (2018), only 16% of the elementary teachers surveyed reported including hands-on activities in all or most of their lessons. Strategies that engage students in hands-on investigations help improve student achievement (Minner, Levy, and Century 2010) and provide students with a…
Descriptors: Science Instruction, Elementary School Science, Elementary School Teachers, Observation
Pugh, Kevin J. – Teachers College Press, 2020
Use this book to move science learning out of the classroom and into everyday life. Science has a profound capacity to transform how we experience the world, but it can be challenging to foster transformative experiences. When it comes to the science classroom, too often the Las Vegas slogan applies: What happens here stays here. Based on over 20…
Descriptors: Science Education, Transformative Learning, Experiential Learning, Science Instruction
Christopher Harris; Joe Krajcik; James Pellegrino – NSTA Press, 2024
Imagine handing out assessments that spark enthusiasm rather than dread. In six easy-to-follow steps, this book empowers science teachers to create tasks that guide students to use their knowledge, not just memorize facts. The NGSA design process transforms assessments into valuable classroom tools that teachers can use to chart how students'…
Descriptors: Standards, Science Education, Teaching Methods, Teaching Guides
Investigating Light and Shadow with Young Children (Ages 3-8). STEM for Our Youngest Learners Series
Van Meeteren, Beth Dykstra, Ed. – Teachers College Press, 2022
Children are intrigued by switches that power a light source and by items that reflect light and sparkle, and they take notice of personal shadows cast on the playground. Many STEM fields draw upon understanding of light and shadow, such as astronomy, biology, engineering, architecture, and more. This book shows teachers how to engage children…
Descriptors: Early Childhood Education, Light, STEM Education, Curriculum
Muller, Eric – Physics Teacher, 2019
What do you get when you cross a rubber band with a photocopier? You get a whole series of physics lessons and some great images! It's easy to get this activity up and running, be amazed, and apply it to any number of scientific concepts. It lends itself to a whole host of investigations. This easy-to-do activity can also be aligned to NGSS…
Descriptors: Physics, Science Instruction, Science Activities, Reprography
Cizmas, Emily – Science Teacher, 2021
Ecosystems, interacting systems of biotic and abiotic factors, are a fascinating topic in life science. The "Next Generation Science Standards" (NGSS Lead States 2013) recognize "Ecosystems: Interactions, Energy, and Dynamics" (HS-LS2) as one of four overarching ideas in life science that students should understand. Student…
Descriptors: Ecology, Biological Sciences, Scientific Concepts, Biodiversity
Rodriguez, Jon-Marc G.; Lazenby, Katherine; Scharlott, Leah J.; Hunter, Kevin H.; Becker, Nicole M. – Journal of Chemical Education, 2020
Metamodeling ideas move beyond using a model to solve a problem to consider the nature and purpose of a model, such as reasoning about a model's empirical basis and understanding why and how a model might change or be replaced. Given that chemistry relies heavily on the use of models to describe particulate-level phenomena, developing…
Descriptors: Science Instruction, College Science, Undergraduate Study, Inquiry
Willard, Ted – NSTA Press, 2020
A key aspect of learning in K-12 education is the idea that what students know and are able to do grows and evolves over time. Simple ideas learned in the early elementary grades gain levels of detail and complexity as students progress in their education. Connections between different topics and disciplines are made. Therefore, a key feature of…
Descriptors: Science Education, Learning Processes, Elementary School Science, Secondary School Science
Kim, Kiernan F.; White, Peta J.; Long, John M.; Saw, Jessica – Teaching Science, 2020
Volumetric titrations are an accurate and precise analytical method, which explains their use in industrial and research settings and their inclusion in senior secondary chemistry curricula around the world. Students often have difficulty understanding the intricacies of titrations because they are novices being presented with a long list of…
Descriptors: Secondary School Students, Secondary School Science, Science Instruction, Chemistry
Pergantis, Spiros A.; Saridakis, Lakovos; Lyratzakis, Alexandros; Mavroudakis, Leonidas; Montagnon, Tamsyn – Journal of Chemical Education, 2019
Teaching the concept of pH buffers is considered to be important both in the final high-school years and at the early undergraduate level. Here, we propose the use of pH-log C diagrams to investigate the properties of pH buffers. This graphical approach is extremely simple to employ because it only requires drawing a simple square that can then be…
Descriptors: Visual Aids, Chemistry, Scientific Concepts, Concept Teaching
Jensen, Marc – Montessori Life: A Publication of the American Montessori Society, 2020
As children develop an understanding of their place in the universe, their mental model of the solar system should really go beyond a list of planet names and attributes to become a dynamic concept of bodies in motion and interaction. Montessori educators can help build a Sensorial impression of the cosmos by physically modeling the nature of…
Descriptors: Montessori Schools, Montessori Method, Astronomy, Science Education
Hanuscin, Deborah; King, Karen; Cisterna, Dante – Science and Children, 2019
In this article, the authors present a 5E learning cycle for fifth grade that focuses on using a model of matter to explain the properties they observe, and how those properties can help identify whether two objects are made of the same type of matter. That model also helps explain phenomena such as why a specific material floats, no matter how…
Descriptors: Grade 5, Elementary School Science, Models, Scientific Concepts
Ürek, Handan – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2020
Germinating a seed is presumably the first experiment made by a child in his life. So, it has an important place both in child's scientific experience and understanding. Despite the significance of the experiment, the literature indicates that students possess various misconceptions related to the concepts of seed and seed germination. So, it is…
Descriptors: Science Experiments, Plants (Botany), Middle School Students, Children