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Showing 1 to 15 of 30 results Save | Export
Nesen, Yuri; Fowler, Brian; Vegas, Emiliana – Center for Universal Education at The Brookings Institution, 2021
Computer science (CS) education helps students acquire skills such as computational thinking, problem-solving, and collaboration. Since these skills take preeminence in the rapidly changing 21st century, CS education promises to significantly enhance student preparedness for the future of work and active citizenship. Based on prior analyses and…
Descriptors: Program Implementation, Computer Science Education, Foreign Countries, Curriculum Development
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Hoffman, Daniel L.; Leong, Peter; Ka'aloa, Rochelle Pi'ilani H.; Paek, Seungoh – TechTrends: Linking Research and Practice to Improve Learning, 2022
Culturally-relevant computing has been discussed as a way to promote K-12 Computer Science education and address ongoing challenges related to diversity, equity, and inclusion. What is not well understood about the practice of culturally-relevant computing, however, is how to bring together existing cultural frameworks and Computer Science…
Descriptors: Culturally Relevant Education, Computer Science Education, Teacher Attitudes, Educational Principles
Fowler, Brian; Vegas, Emiliana – Center for Universal Education at The Brookings Institution, 2021
Computer science (CS) education helps students acquire skills such as computational thinking, problem-solving, and collaboration. Since these skills take preeminence in the rapidly changing 21st century, CS education promises to significantly enhance student preparedness for the future of work and active citizenship. CS education can also reduce…
Descriptors: Foreign Countries, Computer Science Education, National Curriculum, Elementary Secondary Education
Fowler, Brian; Vegas, Emiliana – Center for Universal Education at The Brookings Institution, 2021
Computer science (CS) education helps students acquire skills such as computational thinking, problem-solving, and collaboration. Since these skills take preeminence in the rapidly changing 21st century, CS education promises to significantly enhance student preparedness for the future of work and active citizenship. Based on prior analyses and…
Descriptors: Foreign Countries, Computer Science Education, Program Implementation, Educational Development
Fowler, Brian; Vegas, Emiliana – Center for Universal Education at The Brookings Institution, 2021
Computer science (CS) education helps students acquire skills such as computational thinking, problem-solving, and collaboration, among others. As these skills take preeminence in the rapidly changing 21st century, CS education promises to significantly enhance student preparedness for the future of work and active citizenship. Based on prior…
Descriptors: Computer Science Education, State Programs, Program Implementation, Elementary Secondary Education
West Virginia Department of Education, 2019
STEM is an acronym for the transdisciplinary integration of the four disciplines of Science, Technology, Engineering, and Mathematics. STEM education places a priority on the study of science and math with purposeful integration of technology and the engineering design process. STEM education is an opportunity for students to collaboratively solve…
Descriptors: STEM Education, Art Education, Program Evaluation, Elementary Secondary Education
Goldsmith, Lynn T.; Stanton, Jim; Reider, David – Education Development Center, Inc., 2020
This report presents results of Education Development Center's (EDC) "Building State Capacity for Leadership in K-12 Computer Science Education Summit." The Summit addressed the need for more strategic and systemic approaches to computer science (CS) education. The Summit was organized around four "pillars" -- key areas…
Descriptors: Capacity Building, Leadership, Elementary Secondary Education, Computer Science Education
Fowler, Brian; Vegas, Emiliana – Center for Universal Education at The Brookings Institution, 2021
Computer science (CS) education helps students acquire skills such as computational thinking, problem-solving, and collaboration. Since these skills take preeminence in the rapidly changing 21st century, CS education promises to significantly enhance student preparedness for the future of work and active citizenship. Based on prior analyses and…
Descriptors: Computer Science Education, Program Implementation, Program Development, Educational Technology
Danielle Marie Cadieux Boulden – ProQuest LLC, 2020
The integration of computational thinking (CT) and computer science (CS) into formal K-12 learning experiences are critical for students to be competent 21st Century problem solvers. Building student competency with these areas is dependent upon educators who have the pedagogical content expertise to integrate CT and CS within their disciplines…
Descriptors: Capacity Building, Computation, Thinking Skills, Computer Science Education
Executive Office of the President, 2016
As called for in the America COMPETES Reauthorization Act of 2010, the National Science and Technology Council's (NSTC) Committee on STEM Education (CoSTEM) released, in May of 2013, the Federal Science, Technology, Engineering, and Mathematics (STEM) Education 5- Year Strategic Plan (Strategic Plan). As required by the Act, this report includes…
Descriptors: STEM Education, Strategic Planning, Federal Legislation, Educational Research
Nunes, Miguel Baptista, Ed.; McPherson, Maggie, Ed. – International Association for Development of the Information Society, 2016
These proceedings contain the papers of the International Conference e-Learning 2016, which was organised by the International Association for Development of the Information Society, 1-3 July, 2016. This conference is part of the Multi Conference on Computer Science and Information Systems 2016, 1-4 July. The e-Learning (EL) 2016 conference aims…
Descriptors: Professional Associations, Conferences (Gatherings), Electronic Learning, Computer Science Education
Worthington City School District, OH. – 1983
This report examines the exploration and implementation of a multi-faceted approach to the use of computers in the instructional setting in the Worthington (Ohio) School District. Section I presents major steps which occurred during the 1981-82 and 1982-83 school years. These include formation of task forces, descriptions of major ways in which…
Descriptors: Business Education, Computer Programs, Computer Science, Computer Science Education
Palmer, Janet – Technological Horizons in Education, 1986
In May 1984, Ecuador contacted an American agency that provides assistance to developing countries, and requested that a consultant in computer education be sent to help establish a computer education program in one of its schools. The experiences and observations of this consultant are provided. (JN)
Descriptors: Computer Science Education, Developing Nations, Elementary Secondary Education, Higher Education
Bybee, Dennis L. – Technological Horizons in Education, 1985
Discusses how computer literacy objectives were determined for the 269 K-12 Department of Defense Dependent Schools, two years ahead of schedule. Also notes how these student objectives were implemented. (JN)
Descriptors: Computer Literacy, Computer Science Education, Educational Objectives, Elementary Secondary Education
Green, Michael W. – Technological Horizons in Education, 1985
To ensure that students under its jurisdiction would be prepared for and comfortable with a rapidly changing, high-technology society, the South Gibson School Corporation (Indiana) decided in 1982 to introduce microcomputers in its one high school and three community schools. The implementation and encouraging results of this project are…
Descriptors: Computer Oriented Programs, Computer Science Education, Curriculum Development, Elementary Secondary Education
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