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Estrada, Mica; Burnett, Myra; Campbell, Andrew G.; Campbell, Patricia B.; Denetclaw, Wilfred F.; Gutiérrez, Carlos G.; Hurtado, Sylvia; John, Gilbert H.; Matsui, John; McGee, Richard; Okpodu, Camellia Moses; Robinson, T. Joan; Summers, Michael F.; Werner-Washburne, Maggie; Zavala, MariaElena – CBE - Life Sciences Education, 2016
Members of the Joint Working Group on Improving Underrepresented Minorities (URMs) Persistence in Science, Technology, Engineering, and Mathematics (STEM)--convened by the National Institute of General Medical Sciences and the Howard Hughes Medical Institute--review current data and propose deliberation about why the academic "pathways"…
Descriptors: Minority Group Students, STEM Education, Disproportionate Representation, Academic Persistence
Bevan, Bronwyn; Petrich, Mike; Wilkinson, Karen – Educational Leadership, 2015
Are makerspaces--where children can create gas-powered Roman chariots, singing greeting cards, or playdough circuit boards--just the site for a slightly wacky explosion of inventiveness? Or can these maker activities be channeled to support deep STEM learning? Bronwyn Bevan, director of the Exploratorium Institute for Research and Learning in San…
Descriptors: Science Activities, Class Activities, Teaching Methods, Hands on Science
Borges, Sidnei; Mello-Carpes, Pâmela Billig – Advances in Physiology Education, 2015
Physiology teaching-learning methods have passed through several changes over the years. The traditional model of education appears to be linked to the teacher, who resists the use of tools and methods designed to provide something different to the student, depriving the student of new things or even the motivation to realize the applicability of…
Descriptors: Undergraduate Students, Student Interests, Physiology, Change Strategies
Robelen, Erik W. – Education Week, 2013
When science, technology, engineering and mathematics (STEM) education is discussed in the K-12 sphere, it often seems like shorthand for mathematics and science, with perhaps a nod to technology and even less, if any, real attention to engineering. But recent developments signal that the "e" in STEM may be gaining a firmer foothold at…
Descriptors: Elementary Secondary Education, Grade 8, STEM Education, Engineering Education
Betteley, Pat; Harr, Natalie; Lee, Richard E., Jr. – Performance Improvement, 2013
For six seasons, Richard Lee has included a K-12 teacher on his Antarctic research team to coordinate outreach to U.S. classrooms. These teachers have communicated with thousands of students and their teachers and planned authentic outreach activities to improve student performance. Program success depends on funding by the National Science…
Descriptors: Educational Improvement, Elementary Secondary Education, Student Improvement, Outreach Programs
Feliciano, Josephine S.; Mandapat, Louie Carl R.; Khan, Concepcion L. – Online Submission, 2013
This paper presents the open learning initiatives of the Science Education Institute of the Department of Science and Technology to overcome certain barriers, such as enabling access, cost of replication, timely feedback, monitoring and continuous improvement of learning modules. Using an open-education model, like MIT's (Massachusetts Institute…
Descriptors: Foreign Countries, Learning Modules, Science Course Improvement Projects, Open Source Technology
Keller, Thomas E.; Pearson, Greg – Technology and Engineering Teacher, 2012
In this article, the authors introduce engineering and technology teachers to the process that led to the National Research Council's framework for K-12 science education and some of its content and delve into the dimensions of the framework that should be of most interest to engineering and technology teachers. The framework articulates a vision…
Descriptors: Science Education, Elementary Secondary Education, Instructional Development, Science Course Improvement Projects
Saldana, Matt; Rodden, Leslie – Leadership, 2012
In this article, the authors discuss how educators can engage students in real world learning using their academic knowledge and technical skills. They describe how school districts have discovered that the world of robotics can help students use technical skills to solve simulated problems found in the real world, while understanding the…
Descriptors: Teaching Methods, Technology Education, World Problems, Problem Based Learning
Fiero, Alan – Science Scope, 2012
"Science for all" is not just a theme that befits the democratic society. It also exemplifies the best methodology for teaching science to children at the middle school level. For many years, teachers have grappled with trying to determine what type of grouping would most benefit their students. This article presents a strategy that highlights why…
Descriptors: Heterogeneous Grouping, Middle Schools, Science Course Improvement Projects, Science Curriculum
Woodin, Terry; Feser, Jason; Herrera, Jose – CBE - Life Sciences Education, 2012
The Vision and Change effort to explore and implement needed changes in undergraduate biology education has been ongoing since 2006. It is now time to take stock of changes that have occurred at the faculty and single-course levels, and to consider how to accomplish the larger-scale changes needed at departmental and institutional levels. This…
Descriptors: Biology, Change Strategies, Educational Change, Organizational Change
Pardede, E.; Lyons, J. – IEEE Transactions on Education, 2012
Entrepreneurship is a novel course in the curriculum for students in the Information Technology (IT) degree program at La Trobe University, Bundoora, Australia. In comparison to other IT-related courses, the Entrepreneurship course seeks to develop business management knowledge and skills; its learning design is thus different to that of other…
Descriptors: Student Evaluation, Information Technology, Program Effectiveness, Foreign Countries
Willard, Ted; Pratt, Harold; Workosky, Cindy – Science Scope, 2012
This is an exciting time to be in science education. New science standards are being developed by a group of science educators from across the country, working with 26 states in a process managed by Achieve, Inc., a non-profit education reform organization. The development of the "Next Generation Science Standards" (NGSS) promises to be the most…
Descriptors: Science Education, Feedback (Response), Educational Change, Academic Standards
Rosen, Linda – Principal, 2012
STEM--science, technology, engineering, and mathematics--has become a fixture of the education debate, and much effort already has been put toward improving student performance. Yet troubling statistics persist: On the latest round of testing for the National Assessment of Educational Progress (NAEP), only 40 percent of fourth graders nationwide…
Descriptors: Partnerships in Education, STEM Education, School Business Relationship, Science Course Improvement Projects
Cook, Michelle; Deaton, Cynthia – Science and Children, 2012
In recent years, a number of National Research Council reports have emphasized the need to improve science education and enhance science literacy for all students. In addition, the newly released "A Framework for K-12 Science Education" advocates engaging students in scientific practices and disciplinary core ideas. Children are not learning…
Descriptors: Teaching Methods, Science Education, Case Studies, Group Activities
Teo, Tang Wee – Journal of Curriculum Studies, 2012
"Potemkin schools" is used as the phrase to capture what a US science, technology, engineering, and mathematics (STEM) public speciality high school becomes as a result of its institutional branding. By way of an examination of the efforts of one teacher drawn into school branding through his "inquiry-based reform" of an Advanced Chemistry course,…
Descriptors: Curriculum Development, Educational Change, Science Instruction, Science Curriculum