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R. N. Kavitha; Jacqueline Kareem – Science Education International, 2025
Science, technology, engineering, and mathematics (STEM) education has become a focal point of global discussions in the field of education. It emphasizes an interdisciplinary approach to learning. Subjective well-being of adolescents is characterized as joy to learn, close connectedness in schools, perception of the purpose of education, and the…
Descriptors: Learner Engagement, STEM Education, Student Attitudes, Secondary School Students
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Suthida Chamrat; Pongsathorn Suyamoon – Journal of Technology and Science Education, 2024
The objective of this research was to examine the impact of STEM activity based on DIY, Tinker and Maker frameworks on developing teacher interns' competency in science instructional design and implementations. These activities involve the integration of science, technology, engineering, and mathematics principles, fostering self-regulated…
Descriptors: STEM Education, Hands on Science, Experiential Learning, Preservice Teachers
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Uppin, Helene; Timoštšuk, Inge – Cultural Studies of Science Education, 2022
Natural history museums are great places for learning new concepts and enhancing social skills and motivation. However, it is often difficult for teachers to make full use of the museum as a learning environment. Some teachers seem to be more successful than others in crossing the boundaries--they enjoy and value field trips and advocate for them…
Descriptors: Foreign Countries, Museums, Elementary School Teachers, Field Trips
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Laura Super; Shuting Huo; Linda S. Siegel – International Journal for Research in Learning Disabilities, 2024
This research evaluated the implementation of a climate science curriculum intervention for students in Grades 4 and 5, including those who were typically achieving and those with difficulties in mathematics, reading, or both. Pre- and posttests of measurement and climate change science concepts were administered at the beginning and end of each…
Descriptors: Science Instruction, Academic Achievement, Students with Disabilities, Learning Disabilities
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Ronda J. Jenson; Michele S. Lee – Connected Science Learning, 2024
The talents that neurodiverse individuals bring to STEM fields are being increasingly recognized, thus it is important to ensure neurodiverse youth have opportunities to experience an array of STEM fields as viable career options. Based on the results of a systematic review, this article provides recommendations for how informal STEM learning…
Descriptors: Informal Education, STEM Education, Learner Engagement, Neurodevelopmental Disorders
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Lin, Kuen-Yi; Williams, P. John – International Journal of Technology and Design Education, 2017
This paper discusses the implementation of a two-stage hands-on technology learning activity, based on Dewey's learning experience theory that is designed to enhance preservice teachers' primary and secondary experiences in developing their competency to solve hands-on problems that apply science and mathematics concepts. The major conclusions…
Descriptors: Scientific Concepts, Mathematical Concepts, Preservice Teachers, Learning Activities
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Krzic, Maja; Wilson, Julie; Hazlett, Paul; Diochon, Amanda – Natural Sciences Education, 2019
This study explored practices that Canadian soil scientists use to educate postsecondary students, K-12 students, and the general public. The most commonly used type of educational activities described by survey respondents, regardless of the settings and the type of target audience, were field-based hands-on activities. The other two commonly…
Descriptors: Soil Science, Elementary Secondary Education, Postsecondary Education, Foreign Countries
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Isik, Hakan; Alpaslan, Muhammet Mustafa – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2018
Lab activities have been innovated and progressed to fulfill the purpose that students need to experience physics concepts through hands-on and minds-on interactions. However, student-centered and conceptual activities in physics labs are challenged with time and material constraints that degrades the merits of the learning environment. This study…
Descriptors: Thermodynamics, Laboratory Experiments, Scientific Concepts, Hands on Science
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Moye, Johnny; Dugger, William E., Jr.; Starkweather, Kendall N. – Technology and Engineering Teacher, 2016
The purpose of the "Learn Better by Doing" study is to determine the extent to which U.S. public school students are doing hands-on activities in their classrooms. The study asks elementary and secondary (middle and high school) science, technology, engineering, and mathematics (STEM) teachers to respond to 13 statements concerning…
Descriptors: Active Learning, Experiential Learning, Public Schools, Hands on Science
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Enderson, Mary C. – Teaching Children Mathematics, 2015
This article presents a science, technology, engineering, and mathematics (STEM) activity, building an air cannon, in a mathematics classroom. It describes an investigation grounded in STEM concepts that elementary and middle school teachers carried out to think about ways of implementing STEM activities into their instruction. This particular…
Descriptors: STEM Education, Mathematics Instruction, Experiential Learning, Elementary School Mathematics
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Alexander, Amanda; Ho, Tuan – Art Education, 2015
Since the summer of 2006, the University of Texas at Arlington (UTA), in the Dallas/Ft. Worth metroplex, has invited secondary students to participate in their summer SEED program on campus. The program was developed by the Dean of the School of Architecture and the Chair of the Art + Art History Department. SEED (Strategies, Events, Episodes +…
Descriptors: Secondary School Students, Video Games, Experiential Learning, Summer Programs
Crain, Rhiannon Lorraine – ProQuest LLC, 2009
Interactive science centers are unique players in the science education community, but their positioning as both authorities on science and providers of "free choice" learning presents learning researchers with a problematic contradiction rooted in the complexities of trying to be both "scientific" and "education" organizations. Using insight from…
Descriptors: Exhibits, Science Teaching Centers, Science Education, Learning Activities
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Sianez, David M.; Fugere, Madeleine A.; Lennon, Carter A. – Research in Science & Technological Education, 2010
Technology and engineering education students responded to a survey regarding hands-on and hands-off activities. First, the students listed hands-on and hands-off activities and what characterized the two types of activities. Activities such as building or assembling something as well as working manually with tools were viewed as hands-on. Passive…
Descriptors: Engineering Education, Student Attitudes, Factor Analysis, Engineering
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Hassoun, Lama; Hable, Whitney; Payne-Ferreira, Tracie L. – American Biology Teacher, 2008
Hands-on biological exploration has been shown to have a great impact on learning. When students "do" something, they remember more details than when they sit through a lecture describing the same activity. In this article, the authors present an exercise that has the potential to get all levels of students into the lab for practical experience…
Descriptors: Animals, Learning Activities, Biology, Hands on Science
Singh, Marlene – 1983
A series of charts lists weekly activities for conducting a hands-on science laboratory in grades K-6. Arranged by grade level, the charts complement chapters in the "Gateways to Science" textbook series (McGraw-Hill, 1979). For each week, a concept to be explored is tagged to a 45-minute activity. This document was selected by the…
Descriptors: Elementary Education, Experiential Learning, Hands on Science, Learning Activities
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