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Anton Hesse; Scott Sheffield; Murray Jensen – HAPS Educator, 2025
This study revises and enhances a guided inquiry activity designed to introduce undergraduate and high school students to the physiological concepts of exercise fatigue during a 400-meter dash. This activity has been employed since 2016 in entry-level human physiology courses at the University of Minnesota and across 30 high schools. Using…
Descriptors: Athletics, Metabolism, High School Students, State Universities
Andrus, Michelle; Scott, Catherine – Science and Children, 2022
When exploring and introducing sound, students need to understand that there are multiple aspects that work together to create sound. In this single class lesson, students work through an inquiry-based challenge to discover how sound can be manipulated and altered through these elements. By investigating how to manipulate sound, students are able…
Descriptors: Acoustics, Science Education, Lesson Plans, Inquiry
Eileen G. Merritt; Andrea E. Weinberg; Candace Lapan; Sara E. Rimm-Kaufman – Grantee Submission, 2024
Energy concepts are taught in many schools, but children rarely have an opportunity to grapple with energy problems and work on their own solutions. This study explores the impacts of Connect Science, a service-learning (SL) program developed to enhance elementary students' energy literacy in the United States. Program impacts were explored within…
Descriptors: Science Education, Service Learning, Energy, Scientific Concepts
What Works Clearinghouse, 2021
Inquiry-based science interventions aim to improve students' science proficiency by helping them understand scientific processes. In these interventions, students conduct hands-on investigations of science concepts and everyday phenomena, construct explanations for what they observe, consider alternative explanations, and communicate and justify…
Descriptors: Intervention, Science Education, Educational Change, Inquiry
Ronald W. Rinehart; Ravit Golan Duncan; Clark A. Chinn; Trudy A. Atkins – International Journal of Designs for Learning, 2016
Current science education reforms and the new standards (Next Generation Science Standards [NGSS], 2013) advocate that K-12 students gain proficiency in the knowledge-generating practices of scientists. These practices include argumentation, modeling, and coordinating evidence with theories and models. Practice-based instruction is very different…
Descriptors: Decision Making, Science Education, Educational Change, Standards
Cavanaugh, Cathy; Dawson, Kara – Journal of Science Education and Technology, 2010
The Exploring Florida Science project goals were: (1) increasing content knowledge of secondary science teachers, specifically in topics that are important to the future of the state, and (2) providing secondary science students with digital media for use in project-based learning. A team of instructional designers, educators, scientists, web…
Descriptors: Student Projects, Achievement Tests, Active Learning, Inservice Teacher Education
Peer reviewedSmith, Deborah C.; Wesley, Ann – Science and Children, 2000
Provides a chart comparing state and national objectives. Assesses student understanding of photosynthesis and explains the process of teaching students producer-consumer relationships. (Contains 14 references.) (YDS)
Descriptors: Active Learning, Botany, Cooperation, Elementary Education
Peer reviewedPringle, Rose M. – Science Activities, 2002
Presents an activity on polar bears that integrates language arts and science. Teaches the characteristics of organisms and how distinct environments support distinct organisms. Uses both mathematics and science skills and targets students at the K-4 grade level. (YDS)
Descriptors: Active Learning, Early Childhood Education, Elementary Education, Integrated Activities
Layman, John W.; And Others – 1996
This book provides a focused, extended response to the question How does standards-based science instruction look and feel in the classroom? This question is addressed by considering two related issues: (1) "How can teachers cultivate the quality of scientific thinking and understanding defined by standards?" and (2) "How can…
Descriptors: Active Learning, Curriculum Development, Educational Change, Educational Objectives

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