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Christel Sirocchi; Annika Pofantis Ostergren; Alessandro Bogliolo – ACM Transactions on Computing Education, 2024
Digital competence (DC) is a broad set of skills, attitudes, and knowledge for confident, critical, and responsible use of digital technologies in every aspect of life. DC proves essential in the contemporary digital landscape, yet its diffusion is hindered by biases, misunderstandings, and limited awareness. Teaching Informatics in the…
Descriptors: Computer Science Education, Information Science Education, Coding, Digital Literacy
Eric Schätz; Alke Martens – International Association for Development of the Information Society, 2023
Due the wideness of the term Physical Computing, there is a need for a better structure of this topic. This paper is about an approach of structuring this field by finding attributes of different physical computing devices which can be used in class. Those attributes are meant to enforce teachers as well as researchers to analyze different devices…
Descriptors: Computer Use, Handheld Devices, Telecommunications, Teaching Methods
Huang, Wendy; Looi, Chee-Kit – Computer Science Education, 2021
Background and Context: Computational thinking (CT) is considered as a valuable literacy for all students, and its inclusion in compulsory schooling could increase the numbers of underrepresented students who pursue computing-related careers. Computer Science Unplugged (CSU) had success in making computer science (CS) accessible to K-12 students…
Descriptors: Computer Science Education, Programming, Thinking Skills, Skill Development
Fowler, Brian; Vegas, Emiliana – Center for Universal Education at The Brookings Institution, 2021
Computer science (CS) education helps students acquire skills such as computational thinking, problem-solving, and collaboration. Since these skills take preeminence in the rapidly changing 21st century, CS education promises to significantly enhance student preparedness for the future of work and active citizenship. Based on prior analyses and…
Descriptors: Computer Science Education, Program Implementation, Program Development, Educational Technology
K. Jill Vogel – ProQuest LLC, 2020
Cloud computing applications have a profound presence in educational institutions, yet educators may not be utilizing the digital tools to their full potential. This study helped fill a gap in current literature regarding secondary teachers' acceptance and use of cloud computing applications in instruction. The purpose of this qualitative…
Descriptors: Computer Software, Computer Science Education, Professional Autonomy, Instructional Leadership
Vrieler, Tina; Salminen-Karlsson, Minna – ACM Transactions on Computing Education, 2022
The aim of this conceptual article is to provide a framework and a lens for educators in diversifying and making CS education more inclusive. In this article, we conceptualize the notion of computer science capital (CSC), which extends Bourdieu's sociological theory of capital and Archer et al.'s work on "science capital." The CSC…
Descriptors: Sociocultural Patterns, Computer Science Education, Teaching Methods, Inclusion
Buzzetto-Hollywood, Nicole A.; Wang, Hwei C.; Elobeid, Magdi; Elobaid, Muna E. – Interdisciplinary Journal of e-Skills and Lifelong Learning, 2018
Aim/Purpose: The digital divide and educational inequalities remain a significant societal problem in the United States, and elsewhere, impacting low income, first-generation, and minority learners. Accordingly, institutions of higher education are challenged to meet the needs of students with varying levels of technological readiness with…
Descriptors: Information Literacy, Access to Computers, Disadvantaged, Minority Group Students
Oldham, Jennifer – Education Next, 2021
Despite a growing belief among parents, administrators, and students in computer science's benefits, and millions of dollars allocated to offering it in K-12 schools, gaps in access and participation among Black, Hispanic, and white students persist. Today, computer-science-for-all leaders acknowledge they've hit a plateau and that they need more…
Descriptors: Computer Science Education, Access to Education, Kindergarten, Elementary Secondary Education
Ibrahim Bastug; Kagan Kircaburun – Journal of Pedagogical Research, 2017
In recent years, the number of students who have chosen computer science related undergraduate departments has decreased rapidly. Moreover, students who prefer computer science and programming departments appear to be unsuccessful in programming classes due to the complexity and frustrating difficulties of programming learning. One of the…
Descriptors: Student Attitudes, Programming, Computer Science Education, Middle School Students
Geeta Gambhir; Juliet Kyoshabire Kotonya – National Foundation for Educational Research, 2023
Right to Play's Plug-in-Play (PIP) project in Rwanda aims to enhance Science and Elementary Technology (SET) education through playful and interactive methods. This study, conducted by the National Foundation for Educational Research (NFER) and Three Stones International (TSI), explores the implementation of learning through play with technology…
Descriptors: Science Education, Technology Education, Teaching Methods, Elementary School Students
Jaokar, Ajit – Educational Technology, 2013
This article discusses the evolution of computing education in preparing for the next wave of computing. With the proliferation of mobile devices, most agree that we are living in a "post-PC" world. Using the Raspberry Pi computer platform, based in the UK, as an example, the author discusses computing education in a world where the…
Descriptors: Computer Uses in Education, Technological Advancement, Educational Development, Handheld Devices
Taylor, Estelle; Breed, Marnus; Hauman, Ilette; Homann, Armando – International Association for Development of the Information Society, 2013
Our aim is to determine which teaching methods students in Computer Science and Information Systems prefer. There are in total 5 different paradigms (behaviorism, cognitivism, constructivism, design-based and humanism) with 32 models between them. Each model is unique and states different learning methods. Recommendations are made on methods that…
Descriptors: Teaching Methods, Learning Processes, Computer Science Education, Information Systems
Soomro, Safeeullah, Ed. – InTech, 2010
Since many decades Education Science and Technology has an achieved tremendous recognition and has been applied to variety of disciplines, mainly Curriculum development, methodology to develop e-learning systems and education management. Many efforts have been taken to improve knowledge of students, researchers, educationists in the field of…
Descriptors: Foreign Countries, Distance Education, Instructional Design, Higher Education
Manzo, Anthony V. – 1981
This paper discusses computers and their potential role in education. The term "byte" is first explained, to emphasize the idea that the use of computers should be implemented one "byte" or step at a time. The reasons for this approach are then outlined. Potential applications in computer usage in educational administration are suggested, computer…
Descriptors: Access to Computers, Artificial Intelligence, Computer Assisted Instruction, Computer Literacy
Isman, Aytekin; Dabaj, Fahme; Altinay, Fahriye; Altinay, Zehra – Turkish Online Journal of Educational Technology - TOJET, 2003
This research study examined the differences of students' improvements for computer courses while they have get constructivist based teaching-learning process with measuring their attitudes during the period of beginning of the term and end of the term. Today's learning-teaching process becomes technology based and provides students to catch…
Descriptors: Student Development, Constructivism (Learning), Pretests Posttests, Gender Differences
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