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Macnaugtan, Rebecca – Teaching Science, 2019
The SPECTRA program was introduced to Pennant Hills Public School as an extracurricular activity to help support the science and technology discipline, and more broadly STEM connections, for students in Stage 3. There are currently 35 students of mixed ability completing the program. Throughout their involvement in the SPECTRA program, these…
Descriptors: Public Schools, Science Programs, Extracurricular Activities, Authentic Learning
Deniz, Hasan; Kaya, Erdogan; Yesilyurt, Ezgi; Newley, Anne; Lin, Emily – Journal of Learning and Teaching in Digital Age, 2021
Science, Technology, Engineering, and Mathematics (STEM) entered the general lexicon in the United States within the last ten years. Both Presidents Obama and Trump emphasized STEM education as a priority for the United States because the number of college graduates with STEM degrees is perceived as an important factor contributing to the global…
Descriptors: STEM Education, Science Programs, Robotics, Interdisciplinary Approach
Farrell, Stephanie; Minerick, Adrienne R. – Chemical Engineering Education, 2018
Many educators hold fairness and egalitarianism as core values that they strive to uphold in their professional work and personal lives, and they hope that they evaluate and support students based strictly on student potential and achievement. However, everyone holds unconscious beliefs about social and identity groups. This implicit (unconscious)…
Descriptors: Bias, Chemical Engineering, STEM Education, Engineering Education
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
Donnelly, Julie; Diaz, Carlos; Hernandez, Florencio E. – Journal of Chemical Education, 2016
Herein, we describe an effective and tested model of a week-long summer science intensive program for high school students that aimed to elaborate on concepts covered in a high school chemistry or biology course, and to provide high school students an opportunity to learn about studying and pursuing careers in the sciences. The program was…
Descriptors: Summer Science Programs, High School Students, Chemistry, Biology
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
Smithsonian Science Education Center, 2015
Science education has undergone extraordinary change in recent years. The Smithsonian Science Education Center has been producing world-class science curriculum for decades that integrates the arts, history, culture, and science of the Smithsonian. In the growing global marketplace, American students need to excel in science, technology,…
Descriptors: Science Education, Strategic Planning, Teaching Methods, Learning Processes
Theroux, Karen – Carnegie Corporation of New York, 2013
The Science Posse program at Brandeis University aims to increase the recruitment and retention of students from disadvantaged and underrepresented backgrounds in STEM (science, technology, engineering and mathematics) disciplines. A grant from Carnegie Corporation helped support the development of the program, which has brought 50 students from…
Descriptors: STEM Education, Student Recruitment, School Holding Power, Disadvantaged
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
Kahler, Jim; Valentine, Nancy – Education Digest: Essential Readings Condensed for Quick Review, 2011
America has a gap when it comes to youth pursuing science and technology careers. In an effort to improve the knowledge and application of science, technology, engineering, and math (STEM), after-school programs can work in conjunction with formal in-school curriculum to improve science education. One organization that actively addresses this…
Descriptors: STEM Education, After School Programs, National Programs, Agricultural Education
Zaffos, Joshua – Tribal College Journal of American Indian Higher Education, 2013
Since the first tribal college was established in the late 1960s, tribal colleges and universities have offered technical-learning opportunities to students in isolated communities around the country. From the onset, many of these colleges focused on providing practical skills and vocational job training, and frequently targeted nontraditional,…
Descriptors: Job Training, Teaching Methods, American Indian Reservations, American Indian Education
Koch, Melissa; Gorges, Torie; Penuel, William R. – Afterschool Matters, 2012
"Co-design"--including youth development staff along with curriculum designers--is the key to developing an effective program that is both scalable and sustainable. This article describes Build IT, a two-year afterschool and summer curriculum designed to help middle school girls develop fluency in information technology (IT), interest in…
Descriptors: Females, Computers, Information Technology, Computer Science
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