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Bass, Eric; De Jong, David – International Journal of Educational Leadership Preparation, 2020
Computer science education has seen a large national push to be included in the K-12 curriculum (Fluck, Webb, Cox, Angeli, Malyn-Smith, Voogt, & Zagami, 2016; Theresa Avancena & Nishihara, 2014; Veletsianos, Beth, Lin, & Russell, 2016; Yadav, Gretter, Hambrusch, & Sands, 2016). Students are leaving schools and entering an economy…
Descriptors: Computer Science Education, Graduation Requirements, Elementary Secondary Education, High School Students
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Dana Shaat – Society for Research on Educational Effectiveness, 2023
Background/Context: There were over 500,000 open computing jobs across the country in 2018, but only 35% of U.S. high schools offer computer science classes, and only 8-10% of STEM graduates study computer science (Code.org, 2018). In 2021, only 5.1% of all Bachelor's degrees conferred were in Computer and Information Sciences (IPEDS, 2018). STEM…
Descriptors: Hispanic American Students, High School Students, Computer Science Education, Faculty Development
Domeika, Lee; Miller, Lauren; O'Connor, Anna – Jobs for the Future, 2022
The Work-Based Courses Blueprint is a foundational guide for all Tennessee SySTEM school sites engaged in designing and developing work-based courses for 11th and 12th grade students. Specifically, this blueprint covers pertinent work-based courses topics such as building a work-based course team, course design, and course delivery. The blueprint…
Descriptors: High School Students, Grade 11, Grade 12, STEM Education
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Veletsianos, George; Beth, Bradley; Lin, Calvin; Russell, Gregory – Journal of Educational Computing Research, 2016
"Thriving in Our Digital World" is a technology-enhanced dual enrollment course introducing high school students to computer science through project- and problem-based learning. This article describes the evolution of the course and five lessons learned during the design, development, implementation, and iteration of the course from its…
Descriptors: Computer Science, Computer Science Education, High School Students, Instructional Design
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Vakil, Sepehr; de Royston, Maxine McKinney – Race, Ethnicity and Education, 2019
Over the past decade, abroad range of policymakers, corporations, educators, and scholars in the United States have catapulted computer science (CS) education from the sidelines to the center of K-12 public education discourse. While calls for CS education are often framed in terms of national and economic competitiveness, there is a growing…
Descriptors: Trust (Psychology), Computer Science Education, Intervention, Ethics
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Novoa, Mauricio – Design and Technology Education, 2018
This article elaborates on design research in a final capstone industrial design studio unit and on the application of outcomes over eight years within a School of Engineering and its recent incarnation as School of Computing, Engineering and Mathematics. Research and curriculum innovation linked students to the new global design-driven innovation…
Descriptors: Industrial Arts, Design, Engineering Education, Computer Science Education
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Kafai, Yasmin B.; Lee, Eunkyoung; Searle, Kristin; Fields, Deborah; Kaplan, Eliot; Lui, Debora – ACM Transactions on Computing Education, 2014
In this article, we examine the use of electronic textiles (e-textiles) for introducing key computational concepts and practices while broadening perceptions about computing. The starting point of our work was the design and implementation of a curriculum module using the LilyPad Arduino in a pre-AP high school computer science class. To…
Descriptors: High School Students, Scientific Concepts, Educational Practices, Curriculum Development
Webb, Heidi Cornelia – ProQuest LLC, 2013
Advances in technology have caused high schools to update their computer science curricula; however there has been little analogous attention to technology-related education in middle schools. With respect to computer-related knowledge and skills, middle school students are at a critical phase in life, exploring individualized education options…
Descriptors: Middle School Students, Computer Science Education, Computer Literacy, Thinking Skills
Hansen, Heidi Britte – ProQuest LLC, 2010
Reform in mathematics instruction at the college level has been slow to arrive (Dossey, Halvorson, & McCrone, 2008), and many institutions of higher learning still follow the calculus model, while fewer and fewer students need calculus for their chosen areas of study (Ganter & Barker, 2003). Instead, mathematics that is applicable and transferable…
Descriptors: Mathematics Curriculum, Curriculum Development, Computer Science, Calculus
Wang, Jianjun – Grantee Submission, 2013
On September 22, 2012, NSF announced its decision to fund a three-year project, "Models for Information Assurance Education and Outreach" (MIAEO). In the first year of grant operation, MIAEO has invited 18 high school students, two K-12 teachers, and two CSUB student assistants to conduct research explorations in the fields of…
Descriptors: Information Security, Computer Science Education, Improvement Programs, Program Effectiveness
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Sherrell, Linda; Malasri, Kriangsiri; Mills, David; Thomas, Allen; Greer, James – Journal of Computers in Mathematics and Science Teaching, 2012
From 2004-2007, the University of Memphis carried out the NSF-funded Tri-P-LETS (Three P Learning Environment for Teachers and Students) project to improve local high-school computer science curricula. The project reached a total of 58 classrooms in eleven high schools emphasizing problem solving skills, programming concepts as opposed to syntax,…
Descriptors: Workshops, Inservice Teacher Education, Partnerships in Education, Secondary School Teachers
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Kolikant, Yifat Ben-David – Journal of Computers in Mathematics and Science Teaching, 2004
Computer Science formal education brings together old-timers from two computer-literate cultures. The curriculum is oriented toward the academic community, whose interest is in the abstraction, solution, and proofs of algorithmic problems, whereas many students are technology users, whose main interest is the manipulation of the products of…
Descriptors: Computer Science Education, Grade 12, Curriculum Development, Theory Practice Relationship
New York City Board of Education, Brooklyn, NY. Office of Research, Evaluation, and Assessment. – 1990
Bilingualism in the Computer Age, a project of the New York City (New York) Board of Education, completed its fourth year (the 1989-90 school year) and was evaluated. The project offered 241 limited-English-proficient Spanish-speaking students the opportunity to study career and vocational subjects while improving their English and native language…
Descriptors: Bilingual Education, Career Counseling, Computer Science Education, Curriculum Development