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Xin Xia; Lillian R. Bentley; Xitao Fan; Robert H. Tai – International Journal of Science and Mathematics Education, 2025
This meta-analysis explores the impact of informal science education experiences (such as after-school programs, enrichment activities, etc.) on students' attitudes towards, and interest in, STEM disciplines (Science, Technology, Engineering, and Mathematics). The research addresses two primary questions: (1) What is the overall effect size of…
Descriptors: Elementary Secondary Education, STEM Education, Science Education, Informal Education
Cline, Troy; Odenwald, Sten; Davis, Hilarie; Stephenson, Bryan; Mirel, Paul; Boyer, Kyle; Sasser, Lani – Journal of Computers in Mathematics and Science Teaching, 2020
The NASA Goddard STEAM Innovation Laboratory is a Makerspace approach to bringing NASA's universe of knowledge into educational spaces around the country and to increase scientific literacy and interest in STEAM careers. Through a series of stations specializing in virtual reality, electronics, mobile sensors and 3-D fabrication, we have succeeded…
Descriptors: Art Education, STEM Education, Science Programs, Program Effectiveness
Okulu, Hasan Zuhtu; Oguz Unver, Ayse; Arabacioglu, Sertac – Journal of Education in Science, Environment and Health, 2019
The idea behind the MUBEM & SAC: STEM based science and nature camp was a transformation of scientific knowledge into artifacts using the engineering design process and scientific inquiry. The goals of the camp were developing an integrative science perspective in accordance with the nature of STEM education, supporting career choices of…
Descriptors: STEM Education, Summer Science Programs, Outdoor Education, Middle School Students
Yang, Dazhi; Xu, Dianxiang; Yeh, Jyh-haw; Fan, Yibo – Journal of STEM Education: Innovations and Research, 2019
Undergraduate research opportunities have expanded from elite universities in the United States to universities and institutions of all ranks and sizes. Research studies have shown positive outcomes in regards to the research experience for undergraduates (REU), such as enhanced research skills and competencies. However, with the widespread…
Descriptors: Undergraduate Students, Student Research, Computer Security, Information Security
Finkel, Liza – Journal of Science Education and Technology, 2017
Despite decades of efforts to increase the participation of women and people from underrepresented minority groups (URM) in science and math majors and careers, and despite the increasing diversification of the US population as a whole (Planty et al. in National Center for Education Statistics, Institute of Education Sciences, U.S. Department of…
Descriptors: High School Students, STEM Education, Educational Opportunities, Majors (Students)
Laursen, Sandra L.; Thiry, Heather; Archie, Tim; Crane, Rebecca – Afterschool Matters, 2013
The out-of-school time (OST) domain offers a promising resource for enriching young people's experience of science, technology, and engineering. Belief is widespread that OST programs are ideal locations in which to learn science and that youth participation may increase access to science for underrepresented groups, such as girls or minorities,…
Descriptors: Youth, After School Programs, Program Design, Science Programs
Deck, Anita; Grubbs, Michael E. – Technology and Engineering Teacher, 2016
It is becoming increasingly important to consider the waste humans produce and options for reducing the impact it has on the environment. Allowing students the opportunities to research potential solutions and present their ideas results in an educated citizenry that considers consequences of technological advances. Throughout the course of a…
Descriptors: Environmental Education, STEM Education, Engineering Education, Design
Dailey, Debbie – Parenting for High Potential, 2014
The enthusiasm for science displayed by students in early elementary grades is unparalleled. If not nurtured in elementary school, the spark for learning science diminishes. Unfortunately, the amount of time spent on science in Grades 1-4 has steadily declined since the passage of the No Child Left Behind Act of 2001. In 2012, the National…
Descriptors: Elementary School Science, Elementary School Students, STEM Education, Science Interests
Riedinger, Kelly; Taylor, Amy – Afterschool Matters, 2016
Out-of-school time (OST) programs like the Coastal Ecology science camp can positively influence science identities, particularly for youth from groups historically underserved and underrepresented in science, technology, engineering, and math (STEM). OST STEM programming gives youth opportunities to learn science outside the formal classroom in…
Descriptors: STEM Education, Science Education, After School Programs, Science Interests
Howarth, Sue; Scott, Linda; Carter, Liz – School Science Review, 2013
This issue of Clubbers' Guide contains an article written by Liz Carter, Senior Science Technician at the Warwick School, Redhill, Surrey (UK), describing some of the wide variety of science, technology, engineering and mathematics (STEM) based activities that her school puts on during an eight-day summer school in the holidays for prospective…
Descriptors: Foreign Countries, STEM Education, Science Activities, Summer Science Programs
Theis, Becky; Galindo, Ed; Shockey, Tod – European Journal of Science and Mathematics Education, 2014
The National Aeronautical and Space Administration (NASA) sponsored professional development of educators in the NASA Summer of Innovation (SOI) program. The Idaho, Montana, and Utah (IMU-SOI) program worked with educators and students from thirteen Native American communities. The summer sessions were focused on problem based learning and…
Descriptors: Kindergarten, Professional Development, Summer Science Programs, American Indian Students
Ayar, Mehmet C. – Educational Sciences: Theory and Practice, 2015
The purpose of this study is to present students' experiences, interest in engineering, and personal narratives while participating in a robotics summer camp in a metropolitan city in Turkey. In this study, I used qualitative data collection methods such as interviews, field notes, and observations. I used the four principles of Engle and Conant…
Descriptors: Foreign Countries, Engineering Education, Design, Vocational Interests
Supalo, Cary A.; Wohlers, H. David; Humphrey, Jennifer R. – Journal of Science Education for Students with Disabilities, 2011
Students with blindness or low vision are often discouraged from full participation in laboratory science classes due to the inadequacy of current methodological approaches and the lack of sophisticated adaptive technologies. Consequently, these students rarely go on to pursue advanced studies and employment in the sciences. In response to his own…
Descriptors: Blindness, Visual Impairments, Chemistry, Science Education
CSI: Creating Student (and Teacher) Investigators--Using Popular Culture in Professional Development
Yanowitz, Karen L.; McKay, Tanja; Ross, C. Ann; Vanderpool, Staria S. – Journal of Technology and Teacher Education, 2010
The goal of this article is to present a description of a professional development program designed to immerse middle and high school teachers in an inquiry-based learning environment using a forensic science context and the consequent impact participating in this program had on teachers' pedagogy. Teachers participated in a year-long program…
Descriptors: Secondary School Teachers, Popular Culture, Television, Crime