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Showing 1 to 15 of 16 results Save | Export
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Karen Woo; Garry Falloon – Computer Science Education, 2025
Background and context: Coding and computational thinking are often taught through integrated curricula, despite a paucity of classroom-based research on their effectiveness. Objective: To investigate evidence of learning resulting from cross-curricular coding tasks in middle-school classrooms, and the school environment factors that impact upon…
Descriptors: Coding, Computer Science Education, Curriculum Development, Thinking Skills
Carol Tate – ProQuest LLC, 2022
The "Computer Science for All" (CS for All) movement launched in 2016, following a decade of increasing support for broadening access to computer science education in K-12. In the years since, it has grown into a broad-based effort to equip all students with the skills they need to thrive in a digital society. CS for All follows a long…
Descriptors: Computer Science, Elementary Secondary Education, Access to Education, Curriculum Development
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Anne-Kathrin Peters; Rafael Capilla; Vlad Constantin Coroama; Rogardt Heldal; Patricia Lago; Ola Leifler; Ana Moreira; João Paulo Fernandes; Birgit Penzenstadler; Jari Porras; Colin C. Venters – ACM Transactions on Computing Education, 2024
Research shows that the global society as organized today, with our current technological and economic system, is impossible to sustain. We are living in an era in which human activities in highly industrialized countries are responsible for overshooting several planetary boundaries, with poorer communities contributing the least to the problems…
Descriptors: Computer Science Education, Sustainability, Educational Research, Educational Practices
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Sreynet Un – Journal of Educational Technology and Online Learning, 2025
Since its emergence, technology has progressed beyond knowledge. Therefore, competencies are needed to navigate it safely, responsibly, and ethically. A well-designed curriculum forms the core of school strategies to enhance students' competencies and learning outcomes. This study examines the integration of digital citizenship concepts in…
Descriptors: Secondary School Students, Curriculum Development, Educational Strategies, Outcomes of Education
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Adler, Rachel F.; Beck, Kristan – Journal of Technology and Teacher Education, 2020
Computational thinking (CT) involves breaking a problem into smaller components and solving it using algorithmic thinking and abstraction. CT is no longer exclusively for computer scientists but for everyone. While CT does not necessarily require programming, learning programming to enhance CT skills at a young age can help shape the next…
Descriptors: Curriculum Development, Introductory Courses, Computer Science Education, Preservice Teachers
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Lijun Ni; Gillian Bausch; Elizabeth Thomas-Cappello; Fred Martin; Bernardo Feliciano – ACM Transactions on Computing Education, 2024
This study examined student learning outcomes from a middle school computer science (CS) curriculum developed through a researcher and practitioner partnership (RPP) project. The curriculum is based on students creating mobile apps that serve community and social good. We collected two sets of data from 294 students in three urban districts: (1)…
Descriptors: Computer Software, Middle School Students, Coding, Self Efficacy
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Robbiano, Christopher; Maciejewski, Anthony A.; Chong, Edwin K. P. – IEEE Transactions on Education, 2020
Contribution: This article presents quantitative support that the changes implemented as part of Colorado State University's (CSU's) Revolutionizing Engineering Departments (REDs) grant produce statistically significant positive change through a series of nonparametric analysis techniques. Additionally, the set of nonparametric analysis techniques…
Descriptors: Undergraduate Students, Engineering Education, Computer Science Education, Educational Change
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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Mahaney, Robert C.; Fisher, James H. – Journal of Information Technology Education: Research, 2019
Aim/Purpose: At a public, higher education program in information technology, faculty are frequently asked to evaluate their curricula concerning: course content, the matriculation experience, where and in what capacity graduates are employed, and future academic initiatives developed to keep pace with changes in technology. The problem is…
Descriptors: Computer Science Education, Information Systems, Curriculum Development, Information Technology
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Kellow, Jan-Marie – Waikato Journal of Education, 2018
The revised Technology Curriculum for years 1-13 now includes two Digital Technologies areas: 'computational thinking for Digital Technologies' and 'designing and developing digital outcomes'. By 2020, all schools are expected to address these curriculum additions. This article outlines some of the background stated purposes for introducing this…
Descriptors: Technology Education, Information Technology, Outcomes of Education, Educational Change
McCrone, Tami; White, Richard; Kettlewell, Kelly; Sims, David; Rush, Chloe – National Foundation for Educational Research, 2019
The overall aim of this two-year study is to understand effective practice and lessons learned from approaches to curriculum design and employer engagement by University Technical Colleges (UTCs). Researchers used a case-study methodology supplemented with management information and a survey of UTC students' views. Key findings include: (1)…
Descriptors: Foreign Countries, Active Learning, Student Projects, Curriculum Development
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Humpherys, Sean; Babb, Jeffry; Abdullat, Amjad – Information Systems Education Journal, 2015
Through the annual ABET assessment process, Computer Information Systems faculty in the College of Business at a regional institution were able to diagnose problems regarding students not satisfying our program's Student Outcomes. Often, the impediments to student success were not technical in nature and prompted faculty to consider non-technical…
Descriptors: Computer Science Education, Outcomes of Education, Skill Development, Business Administration Education
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Rashid, Muhammad; Tasadduq, Imran A. – IEEE Transactions on Education, 2014
The exponential growth of advancing technologies is pushing curriculum designers in computer engineering (CpE) education to compress more and more content into the typical 4-year program, without necessarily paying much attention to the cohesiveness of those contents. The result has been highly fragmented curricula consisting of various…
Descriptors: Engineering Education, Holistic Approach, Curriculum Development, Charts
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Brackenbury, L. E. M.; Plana, L. A.; Pepper, J. – IEEE Transactions on Education, 2010
The system-on-chip module described here builds on a grounding in digital hardware and system architecture. It is thus appropriate for third-year undergraduate computer science and computer engineering students, for post-graduate students, and as a training opportunity for post-graduate research students. The course incorporates significant…
Descriptors: Foreign Countries, Computer System Design, Teamwork, Learning Modules
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Furge, Laura Lowe; Stevens-Truss, Regina; Moore, D. Blaine; Langeland, James A. – Biochemistry and Molecular Biology Education, 2009
Bioinformatics education for undergraduates has been approached primarily in two ways: introduction of new courses with largely bioinformatics focus or introduction of bioinformatics experiences into existing courses. For small colleges such as Kalamazoo, creation of new courses within an already resource-stretched setting has not been an option.…
Descriptors: Curriculum Development, Interdisciplinary Approach, Chemistry, Active Learning
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