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Gordon, Neil – Teaching Science, 2016
Cognitive Acceleration through Science Education (CASE) on the Sunshine Coast is growing rapidly. It has expanded from one inaugural Year 8 class in 2012 to the current state of play with the involvement of over 3,000 CASE students from eleven Sunshine Coast State High Schools. It is being taught by more than seventy CASE teachers with…
Descriptors: Science Course Improvement Projects, Secondary School Science, Science Achievement, Science Activities
Parker, Carolyn; Kruchten, Catherine; Moshfeghian, Audrey – Afterschool Matters, 2017
The STEM Achievement in Baltimore Elementary Schools (SABES) program is a community partnership initiative that includes both in-school and afterschool STEM education for grades 3-5. It was designed to broaden participation and achievement in STEM education by bringing science and engineering to the lives of low-income urban elementary school…
Descriptors: Student Projects, Urban Schools, STEM Education, Science Course Improvement Projects
Lynch, Sharon J.; Peters-Burton, Erin; Ford, Michael – Educational Leadership, 2015
In response to a report from the President's Council of Advisors on Science and Technology, President Obama issued a challenge to the U.S. education system to create more than 1,000 new STEM-focused schools, including 200 high schools. Inclusive STEM-focused high schools--which focus their efforts on females, minorities, and students who are…
Descriptors: STEM Education, Educational Opportunities, Equal Education, Educational Change
Colclough, Chris – Education in Science, 2012
St Michael's RC School aims to develop in its students an understanding of the importance of scientific knowledge through the delivery of a more diverse but appropriate scientific curriculum: a curriculum that is enriched and accessible to all students, regardless of ability; a curriculum that will encourage them to continue the study of both…
Descriptors: Partnerships in Education, Foreign Countries, Science Achievement, Science Course Improvement Projects
Loney, Emily – Hunt Institute, 2014
Innovation and ingenuity have long been hallmarks of the U.S.' economy. Our competitive strength is built on the legacy of great innovators--from Alexander Graham Bell and Lewis Latimer to the Wright brothers and Steve Jobs. The U.S. has prized its status as a leader in developing creative thinkers and entrepreneurs, but by many estimates, it is…
Descriptors: Science Education, Science Achievement, Science Course Improvement Projects, Context Effect
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
Foy, Pierre, Ed.; Arora, Alka, Ed.; Stanco, Gabrielle M., Ed. – International Association for the Evaluation of Educational Achievement, 2013
TIMSS measures trends in mathematics and science achievement at the fourth and eighth grades in participating countries around the world, while also monitoring curricular implementation and identifying promising instructional practices. Conducted on a regular 4-year cycle, TIMSS has
assessed mathematics and science in 1995, 1999, 2003, 2007, and…
Descriptors: Academic Achievement, Guides, Databases, International Studies
Keeley, Page – Science and Children, 2011
This column focuses on promoting learning through assessment. In 1999, a group of researchers from Indiana University and Purdue University decided to investigate data about students' ideas in science by inviting National Science Teachers Association members to participate in a research study about children's conceptions of animals. Published in…
Descriptors: Formative Evaluation, Animals, Teacher Researchers, Classroom Research
Merrill, Chris; Daugherty, Jenny – Journal of Technology Education, 2010
The issue of attracting more young people to choose careers in science, technology, engineering, and mathematics (STEM) has become critical for the United States. Recent studies by businesses, associations, and education have all agreed that the United States' performance in the STEM disciplines have placed the nation in grave risk of…
Descriptors: Technology Education, STEM Education, Partnerships in Education, Educational Opportunities
Hrabowski, Freeman A., III; Maton, Kenneth I. – Academe, 2009
In the late 1980s, the University of Maryland Baltimore County launched a major initiative to find out why more students were not succeeding in science, technology, engineering, and mathematics--known collectively as the STEM disciplines--despite the university's long-standing commitment to those fields. A review of student data revealed that the…
Descriptors: African American Students, Focus Groups, Minority Groups, Organizational Culture
Taylor, Orlando L.; McGowan, Jill; Alston, Sharon T. – Journal of Negro Education, 2008
Four historically Black colleges and universities (HBCUs), Howard University, Jackson State University, Talladega College, and Xavier University of Louisiana, participated in a project titled, Learning Communities for STEM Academic Achievement (LCSAA), whose goal was to increase the participation of African American students in the fields of…
Descriptors: African American Students, Black Colleges, African American Education, Program Implementation
Staver, John R. – UNESCO International Bureau of Education, 2007
Education in science serves three purposes. First, it prepares students to study science at higher levels of education. Second, it prepares students to enter the workforce, pursue occupations, and take up careers. Third, it prepares them to become more scientifically literate citizens. The relative priority and alignment of these three purposes…
Descriptors: Scientific Literacy, Educational Practices, Science Instruction, Teaching Methods