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Sarah Barksdale – ProQuest LLC, 2023
Integrating computational thinking (CT) and/or computer science (CS) into K-12 curricula has the potential to provide learners with early exposure to the possibilities of creation, engagement, and contributions within a technology-driven society. However, in order to weave CT and CS into their existing curricula and classrooms, K-12 teachers need…
Descriptors: Elementary School Teachers, Secondary School Teachers, Curriculum Implementation, Computation
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Zhanxia Yang; Marina Bers – Computer Science Education, 2024
Background and Context: Historically, women have been underrepresented in computer science. To address this gender gap, researchers advocate for high-quality computer science programs for early childhood. Objectives: This study examines gender differences in coding performance before and after implementing a 24-lesson visual programming curriculum…
Descriptors: Gender Differences, Grade 1, Elementary School Students, Programming
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Dalal, Amy Csizmar; Oliver, Emily – Journal of Higher Education Outreach and Engagement, 2022
We present a case study of a multi-year, academic civic engagement (ACE) collaboration in a computer science capstone course. ACE projects in computer science provide an avenue for students to apply software development concepts to real-world projects with actual clients, and can offer meaningful engagement with ethical issues. The typical…
Descriptors: Case Studies, Computer Science Education, Capstone Experiences, Outcomes of Education
Zinth, Jennifer – Education Commission of the States, 2016
Allowing high school students to fulfill a math or science high school graduation requirement via a computer science credit may encourage more student to pursue computer science coursework. This Education Trends report is an update to the original report released in April 2015 and explores state policies that allow or require districts to apply…
Descriptors: High School Graduates, Graduation Requirements, Computer Science Education, Educational Trends
Education Commission of the States, 2018
Business leaders in Minnesota cannot find the science, technology, engineering and mathematics (STEM) talent they need to stay competitive. Students' lagging performance in K-12 is a critical reason why. The good news is that the nation's most effective STEM education programs can help turn the tide. Minnesota students have made some gains in math…
Descriptors: STEM Education, Elementary Secondary Education, Demand Occupations, Mathematics Achievement