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Wenyuan Yang; Sihang Chen; Cheng Liu – American Biology Teacher, 2024
Modeling is a core practice in science and is a meaningful way to learn the subject. This article introduces a modeling-based approach that highlights the idea that modeling is an iterative process and integrates the fundamental parts of scientists' work and key suggestions for teaching through modeling. The lesson "The Structure and Function…
Descriptors: Models, Middle School Students, Biology, Science Instruction
Achurra, Ainara; Zamalloa, Teresa; Uskola, Araitz – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2023
The purpose of this article is to describe a modeling sequence about the digestive system. "What happens in your body when you have lactose intolerance?" is the initial question that will guide the activities. Students will build a 3D plaster cast of the digestive system as part of a modeling cycle through which they are expected to…
Descriptors: Physiology, Food, Allergy, Human Body
Yuksel, Tugba; Bryan, Lynn A. – Science Insights Education Frontiers, 2023
This research investigates the Models of eighth-grade students in Turkey pertaining to magnets and magnetic interactions, while also examining the consistency of these models within themselves. Additionally, a comparative assessment is conducted by comparing the current data with data collected from eighth-grade students a decade earlier. The…
Descriptors: Foreign Countries, Models, Grade 8, Secondary School Students
Seperuelo Duarte, E.; Mota, A. T.; de Carvalho, J. R.; Xavier, R. C.; Souza, P. V. S. – Physics Education, 2021
In this paper, we present a physical modeling activity whose objective is to allow students to determine the differences between a disk and a sphere using pure scientific criteria. Thereunto, we reproduce the Sun-Earth-Moon system with low-cost materials and compare the illumination effects on the Moon considering two possible shapes for it (a…
Descriptors: Science Instruction, Teaching Methods, Comparative Analysis, Scientific Research
Cisterna, Dante; Ingram, Erin; Bhattacharya, Devarati; Roy, Ranu; Forbes, Cory – Science and Children, 2020
A set of core ideas in the life sciences revolve around genetics, variation, and inheritance. While the "Next Generation Science Standards" (NGSS; NGSS Lead States 2013) emphasize teaching and learning about these concepts across K-12 grades, it is critical for early learners to begin to develop understanding of them. By the end of fifth…
Descriptors: Science Instruction, Plants (Botany), Genetics, Elementary School Science
Natália Cândido Vendrasco; Ainoa Marzabal; Adriana Pugliese – Studies in Science Education, 2024
This literature review aims to characterise mediation practices in non-formal science education settings (zoos, aquariums, botanical gardens, science centres and museums) based on empirical studies published in the last 15 years and to evaluate their potential in providing visitors with an equitable and inclusive experience, considering their…
Descriptors: Nonformal Education, Science Education, Exhibits, Museums
Fowler, Kelsie; Windschitl, Mark; Auning, Claus – Science Teacher, 2020
Each year, an increasing number of science teachers integrate modeling into their instructional repertoires, and in the process, they see how this disciplinary practice helps students reason and revise their thinking about complex events in the natural world. The NGSS Science and Engineering Practice of developing and using models is intended to…
Descriptors: Science Instruction, Scaffolding (Teaching Technique), Science Process Skills, Models
Reynolds, Julie – Science Teacher, 2019
A lesson that focuses on the intricate co-evolution of flowers with their pollinators is one way to help students learn the delicate balance in nature and help ensure that our actions do not upset this balance. In this lesson students use the engineering design process to engineer a flower that is a perfect model for its chosen pollinator. Next,…
Descriptors: Entomology, Animals, Plants (Botany), Biology
Gruber, Daniel M.; Perez, Tynan; Layug, Bege Q.; Ohama, Margaret; Tran, Lydia; Rojas, Luis Angel Flores; Garcia, A. Xavier; Liu, Gang-yu; Miller, William J. W. – Journal of Chemical Education, 2020
We report a simple means to build a model atomic force microscope (AFM) using 3D printing of thermoplastic materials that are commercially available. The model has many of the key parts of an actual AFM including a z-axis stage, an AFM head with a cantilever assembly, and a laser source that reflects off of the back of the cantilever. Using a…
Descriptors: Laboratory Equipment, Printing, College Science, Undergraduate Study
Uchida, Satoko – Physics Teacher, 2019
Practical hands-on experience is an effective component of science education. Lessons that involve demonstrations allow learners to explore and verify information learned from other sources (for example, reading a textbook). As a demonstration for use in a science educational setting, we developed a way to make a variable focal length lens using a…
Descriptors: Science Instruction, Hands on Science, Models, Human Body
Harris, Emily; Ballard, Heidi – Science and Children, 2018
Educators and researchers often suggest that participation in "real" science may help students "think like" or "see themselves as" scientists because students participate in and contribute to the broader scientific community. However, bringing citizen science (CS) activities into the classroom does not necessarily…
Descriptors: Science Instruction, Citizen Participation, Models, Scientists
Daniel A. Mak; Sebastian Dunn; David Coombes; Carlo R. Carere; Jane R. Allison; Volker Nock; André O. Hudson; Renwick C. J. Dobson – Biochemistry and Molecular Biology Education, 2024
Enzymes are nature's catalysts, mediating chemical processes in living systems. The study of enzyme function and mechanism includes defining the maximum catalytic rate and affinity for substrate/s (among other factors), referred to as enzyme kinetics. Enzyme kinetics is a staple of biochemistry curricula and other disciplines, from molecular and…
Descriptors: Biochemistry, Kinetics, Science Instruction, Teaching Methods
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
Robertson, Carol – Science Teacher, 2018
How much do students really know about chromosomes? This article describes a partner activity and then a whole-class activity that use modeling to teach DNA replication, connect it to the shape of chromosomes during mitosis, and help students understand how daughter cells have the same DNA. Modeling is integral to science, helping students…
Descriptors: Science Instruction, Science Activities, Class Activities, Genetics
Frey, Regina F.; Brame, Cynthia J.; Fink, Angela; Lemons, Paula P. – CBE - Life Sciences Education, 2022
Problem solving plays an essential role in all scientific disciplines, and solving problems can reveal essential concepts that underlie those disciplines. Thus, problem solving serves both as a common tool and desired outcome in many science classes. Research on teaching problem solving offers principles for instruction that are guided by learning…
Descriptors: Problem Solving, Intellectual Disciplines, Teaching Methods, Science Education