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Xiaojun Luo; Ismail Adelopo – Journal of International Education in Business, 2025
Purpose: This study aims to develops an interdisciplinary business and computer science pedagogy for teaching and learning computer programming in business schools at higher education institutions and explores its associated benefits, challenges and improvement. Design/methodology/approach: Based on a body of theories, an interdisciplinary…
Descriptors: Teaching Methods, Educational Opportunities, Difficulty Level, Business Administration Education
Chen, Huan; Wang, Ye; Li, You; Lee, Yugyung; Petri, Alexis; Cha, Teryn – Education and Information Technologies, 2023
Artificial intelligence (AI) has been widely adopted in higher education. However, the current research on AI in higher education is limited lacking both breadth and depth. The present study fills the research gap by exploring faculty members' perception on teaching AI and data science related courses facilitated by an open experiential AI…
Descriptors: College Faculty, Computer Science Education, Control Groups, Data Science
Brayan Díaz; Collin Lynch; Cesar Delgado; Kevin Han – International Journal of STEM Education, 2025
Background: This paper describes research into two pedagogical approaches to foster transdisciplinarity in a graduate engineering course that involves education and computer science. Leveraging the Communities of Practice framework, we examine how students majoring in computer science can integrate new knowledge from education and computer science…
Descriptors: Graduate Study, Engineering Education, Computer Science, Interdisciplinary Approach
Moallem, Mahnaz; Loksa, Dastyni C.; Vandiver, Marcia; Li, Qing; Cai, Qijie; Billman, Rachel; Christenson, Lea Ann; Kara, Melike; Engbert, Christine – International Association for Development of the Information Society, 2022
The paper shares the results of the process of forming a cross-disciplinary collaborative team and using a user-centered design framework to co-create a self-directed, self-paced, personalized, flexible learning environment as an alternative approach to preparing PK-8 preservice teachers to teach computational thinking. It is part of a larger…
Descriptors: Computation, Thinking Skills, Computer Science Education, Instructional Design
Humble, Niklas – Education and Information Technologies, 2023
Due to increased need of professionals on the future labour market with competence in programming, many countries have integrated programming in kindergarten to grade 12 (K-12) education. In 2017, programming was integrated in Swedish primary and secondary school curriculum and the courses of Mathematics and Technology. Research has highlighted…
Descriptors: Secondary School Students, Mathematics Instruction, Programming, Teaching Methods
Bozan, Karoly; Stoner, Claire; Maden, Burcu – Information Systems Education Journal, 2023
User Experience Design (UXD) is an often-neglected area of the information systems (IS) curriculum. UXD classes specifically designed for IS students are still uncommon in IS programs and this study aims to add to the body of knowledge to prepare a more well-rounded future generation of IS professionals. With this goal in mind, this study…
Descriptors: Information Systems, Interdisciplinary Approach, Constructivism (Learning), Teaching Methods
Özdemir, Selçuk – International Electronic Journal of Elementary Education, 2019
The history of innovation is constructed by solo thinkers and collaborative makers. The word innovation here comprises changes on technology, art and science. This article aims to reflect the way successful inventors, artists and scientists followed to do whatever they succeeded so that the coming generations can learn from predecessors' positive…
Descriptors: Entrepreneurship, Cooperation, Innovation, Thinking Skills
Champion, Dionne N.; Tucker-Raymond, Eli; Millner, Amon; Gravel, Brian; Wright, Christopher G.; Likely, Rasheda; Allen-Handy, Ayana; Dandridge, Tikyna M. – Information and Learning Sciences, 2020
Purpose: The purpose of this paper is to explore the designed cultural ecology of a hip-hop and computational science, technology, engineering, and mathematics (STEM) camp and the ways in which that ecology contributed to culturally sustaining learning experiences for middle school youth. In using the principles of hip-hop as a CSP for design, the…
Descriptors: STEM Education, Culturally Relevant Education, Dance Education, Interdisciplinary Approach
Finch, Lila; Moreno, Celeste; Shapiro, R. Benjamin – Cognition and Instruction, 2021
Creating learning environments that integrate arts, sciences, and computing in education can improve learning in these disciplines. In particular, transdisciplinary integrations of these disciplines can lead to expansive alterations or dissolutions of epistemological, ideological, and methodological boundaries. We wish to support teachers in the…
Descriptors: Interdisciplinary Approach, Learning Processes, Thinking Skills, Epistemology
Mavroudi, Anna; Fragou, Olga; Goumopoulos, Christos – Designs for Learning, 2019
Ubiquitous Computing, Mobile Computing and the Internet of Things (collectively referred to as UMI herein) involve recent advances in technology areas such as low-cost and miniaturized processing and sensing technologies, high-bandwidth wireless networking and so on. UMI technologies can also support the recent attempts to reform computing…
Descriptors: Computer Science Education, Telecommunications, Handheld Devices, Internet
von Wangenheim, Christiane Gresse; Alves, Nathalia Cruz; Rodrigues, Pedro Eurico; Hauck, Jean Carlo – International Journal of Computer Science Education in Schools, 2017
In order to be well-educated citizens in the 21st century, children need to learn computing in school. However, implementing computing education in schools faces several practical problems, such as a lack of computing teachers and time in an already overloaded curriculum. A solution may be a multidisciplinary approach, integrating computing…
Descriptors: Computer Science Education, Computation, Thinking Skills, Interdisciplinary Approach
Borstler, Jurgen; Hilburn, Thomas B. – ACM Transactions on Computing Education, 2016
Team projects are a way to expose students to conflicting project objectives, and "[t]here should be a strong real-world element...to ensure that the experience is realistic" [ACM/IEEE-CS 2015b]. Team projects provide an opportunity for students to put their education into practice and prepare them for their professional careers. The aim…
Descriptors: Teamwork, Computer Science Education, Instructional Design, Psychological Patterns
von Wangenheim, Christiane Gresse; Alves, Nathalia Cruz; Rodrigues, Pedro Eurico; Hauck, Jean Carlo – Online Submission, 2017
In order to be well-educated citizens in the 21st century, children need to learn computing in school. However, implementing computing education in schools faces several practical problems, such as lack of computing teachers and time in an already overloaded curriculum. A solution can be a multidisciplinary approach, integrating computing…
Descriptors: Computer Science Education, Interdisciplinary Approach, Social Studies, Programming
Craig D. Howard; Cary Staples; Sébastien Dubreil; Lisa C. Yamagata-Lynch – International Journal of Designs for Learning, 2016
In this design case, we present an instructional design project that resulted in a French language learning game development system. What we describe here is not the game itself, but rather the pedagogical intervention that created what the design team termed a mobile "application farm," which in turn produced the game. The term…
Descriptors: Instructional Design, Computer Software, Teaching Methods, Computer Games
From Rhetoric to Real World: Fostering Higher Order Thinking through Transdisciplinary Collaboration
Wagner, Teri; Baum, Liesl; Newbill, Phyllis – Innovations in Education and Teaching International, 2014
Ill-structured problems abound that require sophisticated problem-solving skills, knowledge across multiple domains and the abilities to think critically and communicate effectively. Despite the abundance of rhetoric supporting the need to build these skills in our students, the acquisition of domain-specific knowledge is still the primary focus…
Descriptors: College Students, Critical Thinking, Problem Solving, Mastery Learning
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