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Lewis, Jamie; Bartlett, Andrew; Atkinson, Paul – Minerva: A Review of Science, Learning and Policy, 2016
Bioinformatics--the so-called shotgun marriage between biology and computer science--is an interdiscipline. Despite interdisciplinarity being seen as a virtue, for having the capacity to solve complex problems and foster innovation, it has the potential to place projects and people in anomalous categories. For example, valorised…
Descriptors: Biology, Computer Science, Information Science, Interdisciplinary Approach
Buitrago Flórez, Francisco; Casallas, Rubby; Hernández, Marcela; Reyes, Alejandro; Restrepo, Silvia; Danies, Giovanna – Review of Educational Research, 2017
Computational thinking (CT) uses concepts that are essential to computing and information science to solve problems, design and evaluate complex systems, and understand human reasoning and behavior. This way of thinking has important implications in computer sciences as well as in almost every other field. Therefore, we contend that CT should be…
Descriptors: Computation, Computer Science Education, Programming, Problem Solving
Peteranetz, Markeya S.; Flanigan, Abraham E.; Shell, Duane F.; Soh, Leen-Kiat – IEEE Transactions on Education, 2017
Computational thinking and creative thinking are valuable tools both within and outside of computer science (CS). The goal of the project discussed here is to increase students' achievement in CS courses through a series of computational creativity exercises (CCEs). In this paper, the framework of CCEs is described, and the results of two separate…
Descriptors: Computer Science Education, Introductory Courses, Metacognition, Engineering Education
Crabtree, John; Zhang, Xihui – Journal of Information Technology Education: Innovations in Practice, 2015
Teaching advanced programming can be a challenge, especially when the students are pursuing different majors with diverse analytical and problem-solving capabilities. The purpose of this paper is to explore the efficacy of using a particular problem as a vehicle for imparting a broad set of programming concepts and problem-solving techniques. We…
Descriptors: Computer Science Education, Programming Languages, Information Technology, Problem Solving
Banerjee, Gargi; Murthy, Sahana; Iyer, Sridhar – Research and Practice in Technology Enhanced Learning, 2015
Multiple studies report that Computer Science (CS) instructors face problems on how to integrate visualizations in their teaching. This problem gets compounded for instructors in technology-constrained classrooms that are common in developing countries. In these classrooms, students are not able to interact with visualization directly; instead,…
Descriptors: Active Learning, Computer Science Education, Visualization, Teaching Methods
Chang, Chiung-Sui; Chen, Jui-Fa; Chen, Fei-Ling – International Association for Development of the Information Society, 2015
In an educational environment, instructors would always think of ways to provide students with motivational learning materials and efficient learning strategies. Hence, many researchers have proposed that students' problem-solving ability enhances their learning. Problem-solving ability plays an important role for users in dealing with problems…
Descriptors: Foreign Countries, College Freshmen, Computer Science Education, Problem Solving
Csernoch, Mária; Biró, Piroska – Acta Didactica Napocensia, 2016
Sprego is programming with spreadsheet functions. The present paper provides introductory Sprego examples which have so far only been available in Hungarian. Spreadsheet environments offer both a programming tool which best serves beginner and end-user programmers' interest, and an approach which lightens the burden of coding and language details.…
Descriptors: Programming, Spreadsheets, Instruction, Problem Solving
Tan, Verily; Nicholas, Celeste; Scribner, J. Adam; Francis, Dionne Cross – Technology and Engineering Teacher, 2019
With the introduction of "Next Generation Science Standards" ("NGSS"), teachers have been called to find meaningful and engaging ways to teach science content while incorporating engineering practices and, to a lesser extent, computing and computational thinking. The task becomes even more complex when they also have to…
Descriptors: Interdisciplinary Approach, Teaching Methods, Standards, Science Instruction
Özyurt, Özcan – EURASIA Journal of Mathematics, Science & Technology Education, 2015
Problem solving is an indispensable part of engineering. Improving critical thinking dispositions for solving engineering problems is one of the objectives of engineering education. In this sense, knowing critical thinking and problem solving skills of engineering students is of importance for engineering education. This study aims to determine…
Descriptors: Critical Thinking, Thinking Skills, Problem Solving, College Students
Ünal, Erhan; Çakir, Hasan – Malaysian Online Journal of Educational Technology, 2017
The purpose of this study was to design a problem based collaborative learning environment supported by dynamic web technologies and to examine students' views about this learning environment. The study was designed as a qualitative research. Some 36 students who took an Object Oriented Programming I-II course at the department of computer…
Descriptors: Student Attitudes, Problem Based Learning, Cooperative Learning, Educational Environment
Arslangilay, Aslihan Selcen – Educational Policy Analysis and Strategic Research, 2019
In the age of globalization and information and technology, changes as in all the fields of human life are being actualized in the education systems, too. It is of great importance for the teachers who are the most notable agents to transfer the changes to the next generations to be equipped with skills and knowledge so called 21st century skills…
Descriptors: 21st Century Skills, Preservice Teacher Education, Teacher Qualifications, Preservice Teachers
Bajpai, Shrish; Khare, Sushant – Comparative Professional Pedagogy, 2015
Present paper aims to give an insight in the field of Mechatronics, specifically its standard of education in India. We have investigated this field right from its origin. We have analyzed how it expanded as a proper discipline of engineering and in which direction the development in this field is going now and, at the same time, its status of…
Descriptors: Engineering Education, Foreign Countries, Interdisciplinary Approach, Science Laboratories
Rose, Simon P.; Habgood, M. P. Jacob; Jay, Tim – Electronic Journal of e-Learning, 2017
Programming tools are being used in education to teach computer science to children as young as 5 years old. This research aims to explore young children's approaches to programming in two tools with contrasting programming interfaces, ScratchJr and Lightbot, and considers the impact of programming approaches on developing computational thinking.…
Descriptors: Young Children, Computer Science Education, Programming, Educational Games
Lu, Yihan; Hsiao, I-Han – International Educational Data Mining Society, 2016
Online programming discussion forums have grown increasingly and have formed sizable repositories of problem solving-solutions. In this paper, we investigate programming learners' information seeking behaviors from online discussion forums. We design engines to collect students' information seeking processes, including query formulation,…
Descriptors: Programming, Advanced Students, Reading Processes, Computer Mediated Communication
Alexandron, Giora; Armoni, Michal; Gordon, Michal; Harel, David – ACM Transactions on Computing Education, 2014
In this article, we discuss the possible connection between the programming language and the paradigm behind it, and programmers' tendency to adopt an external or internal perspective of the system they develop. Based on a qualitative analysis, we found that when working with the visual, interobject language of live sequence charts (LSC),…
Descriptors: Programming Languages, Attitudes, Usability, Problem Solving

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