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Showing all 15 results Save | Export
Arawjo, Ian Anders – ProQuest LLC, 2023
I situate computer programming as a cultural practice. I develop this perspective in two ways: exploring how programming practices can support intercultural learning, and examining how programming tools themselves embed cultural assumptions and values. For the former, I study how relationships across difference are formed over computing activities…
Descriptors: Computer Science Education, Programming, Cultural Influences, Elementary Secondary Education
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Oleson, Alannah; Wortzman, Brett; Ko, Amy J. – ACM Transactions on Computing Education, 2021
Design is a distinct discipline with its own practices, tools, professions, and areas of scholarship. However, practitioners from other fields often leverage aspects of design in their own work, leading to subfields like engineering design and architecture design that are neither wholly design nor wholly the intersecting discipline. Similarly,…
Descriptors: Elementary Secondary Education, Computer Science Education, Design, Role
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Demirbilek, Muhammet – International Society for Technology, Education, and Science, 2022
Robots are useful tools for teaching mathematics and physics and engineering subjects in K-12 setting; they can be utilized in classrooms for explaining difficult and complex concepts because they capture the imagination of students. Rapid developments robotics technology in recent decade, institutions and researchers have employed robots to…
Descriptors: Information Technology, Design, STEM Education, Teaching Methods
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Ouyang, Fan; Dai, Xinyu; Chen, Si – International Journal of STEM Education, 2022
Background: Instructor scaffolding is proved to be an effective means to improve collaborative learning quality, but empirical research indicates discrepancies about the effect of instructor scaffoldings on collaborative programming. Few studies have used multimodal learning analytics (MMLA) to comprehensively analyze the collaborative programming…
Descriptors: Learning Analytics, Scaffolding (Teaching Technique), Small Group Instruction, Computer Science Education
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Stephanie M. Robillard; Victor R. Lee; Jody Clarke-Midura; Jessica Shumway – Journal of Research on Technology in Education, 2025
This article uses interaction analysis to examine an episode moment-by-moment of how a group of educators recognized and acknowledged that a specific design decision could be harmful for a historically marginalized population of students enrolled in the district. However, once a key change was made to be more culturally responsive and considerate,…
Descriptors: Design, Computer Science, Culturally Relevant Education, Cooperation
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Tomlinson, Joel; Johnson, Etahe; Chesser, Cole; Moore, Jonathan – Technology and Engineering Teacher, 2020
The automated water filtration design challenge integrates computer programming and basic electronics concepts through the SIMILAR systems engineering design process. The SIMILAR systems design process is to state the problem, investigate alternatives, model the system, integrate the system, launch the system, assess performance, and reevaluate…
Descriptors: Automation, Water, Water Quality, Design
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Denner, Jill; Campe, Shannon; Werner, Linda – ACM Transactions on Computing Education, 2019
It is widely believed that there are educational benefits to making computer games, but there is no systematic review of research on this topic. This article describes a meta-synthesis of research on children designing and programming computer games that investigates the extent to which there is evidence of benefits for computer science learning…
Descriptors: Computer Games, Design, Programming, Children
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Sung, Euisuk – Technology and Engineering Teacher, 2019
Computational thinking has been popularized in the last decade, particularly with the emphasis on coding education in K-12 schools. The core idea of computational thinking has a close relationship with technology and engineering education (TEE). TEE has emphasized the use of computing skills to solve problems, and integrative STEM education…
Descriptors: Skill Development, Computation, STEM Education, Engineering
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Repenning, Alexander; Webb, David C.; Koh, Kyu Han; Nickerson, Hilarie; Miller, Susan B.; Brand, Catharine; Her Many Horses, Ian; Basawapatna, Ashok; Gluck, Fred; Grover, Ryan; Gutierrez, Kris; Repenning, Nadia – ACM Transactions on Computing Education, 2015
An educated citizenry that participates in and contributes to science technology engineering and mathematics innovation in the 21st century will require broad literacy and skills in computer science (CS). School systems will need to give increased attention to opportunities for students to engage in computational thinking and ways to promote a…
Descriptors: Games, Design, Computer Science Education, Computer Simulation
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Borge, Marcela; Toprani, Dhvani; Yan, Shulong; Xia, Yu – Computer Science Education, 2020
Background and Context: in this paper, we argue that integrating Human-Computer Interaction (HCI) into K-12 computing education can present learners with opportunities to develop human-centered design skills as well as higher-order thinking skills. Objective: to address the issues related to the development of HCI forms of expertise, we introduce…
Descriptors: Elementary Secondary Education, Design, Skill Development, Thinking Skills
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Demetrios G. Sampson, Editor; Dirk Ifenthaler, Editor; Pedro IsaĆ­as, Editor – International Association for Development of the Information Society, 2025
These proceedings contain the papers of the 22nd International Conference on Cognition and Exploratory Learning in the Digital Age (CELDA 2025), held in Porto, Portugal, from 1 to 3 November 2025 and organized by the International Association for Development of the Information Society (IADIS). [Individual papers are indexed in ERIC.]
Descriptors: Technology Uses in Education, Educational Technology, Artificial Intelligence, Concept Mapping
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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
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Przybylla, Mareen; Romeike, Ralf – Informatics in Education, 2014
Physical computing covers the design and realization of interactive objects and installations and allows students to develop concrete, tangible products of the real world, which arise from the learners' imagination. This can be used in computer science education to provide students with interesting and motivating access to the different topic…
Descriptors: Computer Science Education, Learning Activities, Course Descriptions, Design
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Yilmaz, M.; Ozcelik, S.; Yilmazer, N.; Nekovei, R. – IEEE Transactions on Education, 2013
This paper presents an innovative two-course, laboratory-based, and design-oriented robotics educational model. The robotics curriculum exposed senior-level undergraduate students to major robotics concepts, and enhanced the student learning experience in hybrid learning environments by incorporating the IEEE Region-5 annual robotics competition…
Descriptors: Robotics, College Curriculum, College Seniors, Elective Courses
International Association for Development of the Information Society, 2012
The IADIS CELDA 2012 Conference intention was to address the main issues concerned with evolving learning processes and supporting pedagogies and applications in the digital age. There had been advances in both cognitive psychology and computing that have affected the educational arena. The convergence of these two disciplines is increasing at a…
Descriptors: Academic Achievement, Academic Persistence, Academic Support Services, Access to Computers