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Qing Li; Mahnaz Moallem; Jeremy Boettinger; Qijie Cai; Michael Levi – Educational Technology Research and Development, 2025
Aiming to promote equity in computing, this study proposes an educational model that offers an alternative approach to inspire K-12 students to become interested in CS and develop their computational thinking (CT) skills. It also examines the experience of marginalized students during the COVID pandemic in a learning environment grounded in the…
Descriptors: Equal Education, Student Experience, COVID-19, Pandemics
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Adeli Ynostroza-Ochoa; Sylvia Celedón-Pattichis; Marios S. Pattichis; Irán Tovar; Melissa Ibarra – International Journal of Multicultural Education, 2025
Although there have been efforts to broaden the participation of underrepresented students in Science, Technology, Engineering, and Mathematics (STEM), few studies have focused on how Latine bilingual students in rural contexts can access computer programming. The purpose of this case study is to examine how translanguaging facilitates…
Descriptors: Computer Science Education, Code Switching (Language), Second Language Learning, Native Language
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Samuel Boguslawski; Rowan Deer; Mark G. Dawson – Information and Learning Sciences, 2025
Purpose: Programming education is being rapidly transformed by generative AI tools and educators must determine how best to support students in this context. This study aims to explore the experiences of programming educators and students to inform future education provision. Design/methodology/approach: Twelve students and six members of faculty…
Descriptors: Programming, Computer Science Education, Personal Autonomy, Learning Motivation
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Adiv Gal – Elementary School Journal, 2025
This study explores the impact of a hackathon as a pedagogical tool to promote twenty-first-century skills among fifth-grade students in a rural elementary school in northern Israel. The research question focuses on the extent to which a hackathon can develop these skills from the students' own perspective. Utilizing a case-study approach, the…
Descriptors: Programming, Computer Science Education, Computer Uses in Education, Skill Development
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Qingxia Li; Ololade Adetula; Ebony O. McGee; Benjamin M. Zwickl – ACM Transactions on Computing Education, 2025
In order to rectify the historical marginalization of Black workers in computing fields, many academic and industrial initiatives have been established to increase the diversity and inclusion in the tech industry. In this study, we explored how one particular post-secondary education program at one historically black institution known as the…
Descriptors: Computer Science Education, African American Students, Foreign Students, Black Colleges
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Djelil, Fahima; Albouy-Kissi, Adelaide; Albouy-Kissi, Benjamin; Sanchez, Eric; Lavest, Jean-Marc – Journal of Interactive Learning Research, 2016
Object-Oriented paradigm is a common paradigm for introductory programming courses. However, many teachers find that transitioning to teaching this paradigm is a difficult task. To overcome this complexity, many experienced teachers use microworlds to give beginner students an intuitive and rapid understanding of fundamental abstract concepts of…
Descriptors: Programming, Models, Introductory Courses, Programming Languages
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Hsu, Yu-Chang; Ching, Yu-Hui; Callahan, Janet; Bullock, Doug – TechTrends: Linking Research and Practice to Improve Learning, 2021
STEM major students often enter colleges with a need to strengthen their foundational mathematics, such as trigonometry. We designed an innovative undergraduate course that aims to strengthen students' trigonometry knowledge application through programming mobile apps. We explored how students applied trigonometry concepts in developing their…
Descriptors: Undergraduate Students, STEM Education, Majors (Students), Mathematics Skills
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Thrall, Elizabeth S.; Lee, Seung Eun; Schrier, Joshua; Zhao, Yijun – Journal of Chemical Education, 2021
Techniques from the branch of artificial intelligence known as machine learning (ML) have been applied to a wide range of problems in chemistry. Nonetheless, there are very few examples of pedagogical activities to introduce ML to chemistry students in the chemistry education literature. Here we report a computational activity that introduces…
Descriptors: Undergraduate Students, Artificial Intelligence, Man Machine Systems, Science Education
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Kritzer, Karen L.; Green, Laurie – American Annals of the Deaf, 2021
While focusing on numeracy is essential in preschool classrooms with deaf and hard of hearing (DHH) children, it is also important that concepts of numeracy be taught in a way that incorporates executive functions, introduces computational thinking, and prepares students for life in a 21st-century world. Technology-enhanced teaching resources…
Descriptors: Programming, Numeracy, Mathematical Concepts, Deafness
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Eickholt, Jesse; Johnson, Matthew R.; Seeling, Patrick – IEEE Transactions on Education, 2021
Contribution: Practical active learning stations (PALSs)-equipped classrooms function similar to prototypical active learning classrooms (ALCs). They support student collaboration and active learning pedagogies but at a fraction of the cost. Background: Active learning pedagogies and active learning technology are revitalizing STEM education and…
Descriptors: Active Learning, Classroom Environment, Computer Uses in Education, Classroom Design
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Kammer, Jenna; Hays, Lauren – Education Libraries, 2021
This overview demonstrates the need for school librarians to consider supplementing coding instruction with ethical discussions. School librarians are increasingly incorporating coding into library instruction through play, tutorials, collaboration in content areas, and design thinking projects. To enhance students' ethical decision making and…
Descriptors: School Libraries, Ethical Instruction, Programming, Computer Science Education
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Unal, Alper; Topu, Fatma Burcu – Education and Information Technologies, 2021
In this study, based on quasi-experimental research, was investigated the effects of teaching Python programming language via Blockly tool, which had hybrid interface, on students' computer programming anxiety, cognitive load level, and achievement. Participants were 90 high school students, 44 of them in experimental group (hybrid interface) and…
Descriptors: Instructional Effectiveness, Computer Science Education, Computer Interfaces, Programming Languages
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Socratous, Chrysanthos; Ioannou, Andri – Educational Technology Research and Development, 2021
The study aims to compare the effect of a structured versus an unstructured educational robotics (ER) curriculum on (a) the frequency and type of programming errors made by students in block-based programming, (b) their ability to debug a programme, and (c) their engagement in the learning process. The authors' hypothesis is that, in programming…
Descriptors: Robotics, Educational Technology, Programming Languages, Computer Science Education
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Dominguez, Cesar; Garcia-Izquierdo, Francisco J.; Jaime, Arturo; Perez, Beatriz; Rubio, Angel Luis; Zapata, Maria A. – IEEE Transactions on Learning Technologies, 2021
The study of the relationships between self-regulated learning and formative assessment is an active line of research in the educational community. A recent review of the literature highlights that the study of these connections has been mainly unidirectional, focusing on how formative assessment helps students to self-regulate their learning,…
Descriptors: Learning Analytics, Time Factors (Learning), Self Evaluation (Individuals), Formative Evaluation
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Litts, Breanne K.; Searle, Kristin A.; Brayboy, Bryan M. J.; Kafai, Yasmin B. – British Journal of Educational Technology, 2021
Given the increased need for broadening participation in computing, there must be a focus not just on providing culturally relevant content but also on building accessible and inclusive computational tools. Most efforts to design culturally responsive computational tools redesign surface features, often through making nominal changes to add…
Descriptors: American Indians, Youth, Culturally Relevant Education, Computer Science Education
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