NotesFAQContact Us
Collection
Advanced
Search Tips
Showing all 8 results Save | Export
Peer reviewed Peer reviewed
Direct linkDirect link
Baird, Kate; Coy, Stephanie – Science and Children, 2020
In this article the authors describe a model that starts from the basics of the OWL (observe, wonder, learn) large-group discussion strategy then moves onto new experiences that serve as the jumping off point for student-generated questions and investigations. The OWL version of a KWL (Know-Want to Know-Learn) process becomes a path to language…
Descriptors: Science Instruction, Inquiry, Teaching Methods, Models
Peer reviewed Peer reviewed
Direct linkDirect link
Reed, Megan H.; Jenkins, Tom; Kenyon, Lisa – Science Teacher, 2019
Nitrogen- or phosphorus-based fertilizers, used in agriculture, can run off into nearby waterways during periods of heavy rain or high flow and cause harmful blooms (Paerl et al. 2016), low oxygen (Joyce 2000), and decreased biodiversity (Sebens 1994). Studies of the effects wetlands can have on water and habitat quality (Verhoeven and Meuleman…
Descriptors: Natural Resources, Biodiversity, Grade 9, Ecology
Peer reviewed Peer reviewed
Direct linkDirect link
Rybczynski, Stephen; Li, Zheng; Hickey, R. James – Science Teacher, 2014
Civilization simply would not exist without plants, yet their importance is often overlooked. As the nation's ability to respond to the botanical challenges associated with food production, climate change, invasive species, and biodiversity loss continues to decrease (Kramer, Zorn- Arnold, and Havens 2010), educators must discourage this…
Descriptors: Botany, Plants (Botany), Inquiry, Ecology
Peer reviewed Peer reviewed
Direct linkDirect link
Pellien, Tamara; Rothenburger, Lisa – Journal of Extension, 2014
The Next Generation Science Standards (NGSS) will define science education for the foreseeable future, yet many educators struggle to see the bridge between current practice and future practices. The inquiry-based methods used by Extension professionals (Kress, 2006) can serve as a guide for classroom educators. Described herein is a method of…
Descriptors: Science Instruction, Academic Standards, Inquiry, Extension Education
Johnson, Carla C., Ed.; Walton, Janet B., Ed.; Peters-Burton, Erin E., Ed. – NSTA Press, 2019
What if you could challenge your second graders to design an outdoor STEM classroom with a butterfly garden, birdbath, and sundial? With this volume in the "STEM Road Map Curriculum Series," you can! "Investigating Environmental Changes" outlines a journey that will steer your students toward authentic problem solving while…
Descriptors: STEM Education, Elementary School Students, Teaching Methods, Outdoor Education
Peer reviewed Peer reviewed
Direct linkDirect link
Davis, Sandra L. – American Biology Teacher, 2012
The progression of the taxonomic organization of life from Linnaeus's original two kingdoms to the traditional five-kingdom system to today's widely accepted three-domain system is explored in a group-learning activity. Working with a set of organisms, students organize them into each system. Discussion after each step focuses on viewing…
Descriptors: Evolution, Scientific Methodology, Classification, Science Instruction
Peer reviewed Peer reviewed
Direct linkDirect link
Trundle, Kathy Cabe; Mollohan, Katherine N; Smith, Mandy McCormick – Science and Children, 2013
A Framework for K-12 Science Education (NRC 2012) includes inheritance as a core idea within the life science framework. For example, life science core idea 3A states that by the end of second grade, children's knowledge should include the ability to recognize and investigate physical differences and similarities among the same kind of…
Descriptors: Preschool Children, Elementary School Science, Biological Sciences, Biology
Peer reviewed Peer reviewed
Direct linkDirect link
Thompson, Stephen – Journal of College Science Teaching, 2007
This set of botany demonstrations is a continuation of the inquiry-based lecture activities that provide realistic connections to the history and nature of science and employ technology in data collection. The demonstrations also provide examples of inquiry-based teaching practices in the life sciences. (Contains 5 figures.) [For Part 1, see…
Descriptors: Student Evaluation, Scientific Principles, Botany, Sciences