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Tom Liam Lynch – English Education, 2019
In this conceptual essay, the author argues that computational methods and computer science more broadly should be embedded into English education programs. Positing that computational methods can deepen and expand the way literature is already taught in many English education programs and secondary English classrooms, the author first makes a…
Descriptors: Computer Science Education, Literature, English Instruction, Computation
Mecca, Giansalvatore; Santoro, Donatello; Sileno, Nazzareno; Veltri, Enzo – International Journal of Educational Technology in Higher Education, 2021
Computational thinking is the capacity of undertaking a problem-solving process in various disciplines (including STEM, i.e. science, technology, engineering and mathematics) using distinctive techniques that are typical of computer science. It is nowadays considered a fundamental skill for students and citizens, that has the potential to affect…
Descriptors: Mental Computation, Thinking Skills, Coding, Programming
Lockwood, James; Mooney, Aidan – International Journal of Computer Science Education in Schools, 2018
Computational Thinking has been described as an essential skill which everyone should learn and can therefore include in their skill set. Seymour Papert (Papert, 1980) is credited as concretising Computational Thinking in 1980 but Jeanette Wing (Wing, 2006) popularised the term in 2006 and brought it to the international community's attention.…
Descriptors: Computation, Thinking Skills, Logical Thinking, Secondary Education
Lockwood, James; Mooney, Aidan – Online Submission, 2018
Computational Thinking has been described as an essential skill which everyone should learn and can therefore include in their skill set. Seymour Papert (Papert, 1980) is credited as concretising Computational Thinking in 1980 but Jeanette Wing (Wing, 2006) popularised the term in 2006 and brought it to the international community's attention.…
Descriptors: Computation, Thinking Skills, Logical Thinking, Secondary Education
Fuwa, Minori; Kayama, Mizue; Kunimune, Hisayoshi; Hashimoto, Masami; Asano, David K. – International Association for Development of the Information Society, 2015
We have explored educational methods for algorithmic thinking for novices and implemented a block programming editor and a simple learning management system. In this paper, we propose a program/algorithm complexity metric specified for novice learners. This metric is based on the variable usage in arithmetic and relational formulas in learner's…
Descriptors: Integrated Learning Systems, Educational Technology, Technology Uses in Education, Mathematics
Theodoropoulos, Anastasios; Antoniou, Angeliki; Lepouras, George – Education and Information Technologies, 2016
The students of a Greek junior high school collaborated to prepare the teaching material of a theoretical Computer Science (CS) course and then shared their understanding with other students. This study investigates two alternative teaching methods (collaborative learning and peer tutoring) and compares the learning results to the traditional…
Descriptors: Foreign Countries, Secondary Education, Peer Teaching, Junior High School Students
Shelley, Mack, Ed.; Akcay, Hakan, Ed.; Ozturk, Omer Tayfur, Ed. – International Society for Technology, Education, and Science, 2022
"Proceedings of International Conference on Research in Education and Science" includes full papers presented at the International Conference on Research in Education and Science (ICRES) which took place on March 24-27, 2022 in Antalya, Turkey. The aim of the conference is to offer opportunities to share ideas, to discuss theoretical and…
Descriptors: Educational Technology, Technology Uses in Education, Computer Peripherals, Equipment
Štuikys, Vytautas; Burbaite, Renata; Damaševicius, Robertas – Informatics in Education, 2013
The paper's contribution is a methodology that integrates two educational technologies (GLO and LEGO robot) to teach Computer Science (CS) topics at the school level. We present the methodology as a framework of 5 components (pedagogical activities, technology driven processes, tools, knowledge transfer actors, and pedagogical outcomes) and…
Descriptors: Educational Technology, Robotics, Computer Science Education, Teaching Methods
Záhorec, Ján; Hašková, Alena; Munk, Michal – Informatics in Education, 2012
The paper presents the results of an international research on a comparative assessment of the current status of computer science education at the secondary level (ISCED 3A) in Slovakia, the Czech Republic, and Belgium. Evaluation was carried out based on 14 specific factors gauging the students' point of view. The authors present qualitative…
Descriptors: Computer Science Education, Qualitative Research, Information Science, Course Content
Bakoev, Valentin P. – Informatics in Education, 2010
The topic "Recurrence relations" and its place in teaching students of Informatics is discussed in this paper. We represent many arguments about the importance, the necessity and the benefit of studying this subject by Informatics students. They are based on investigation of some fundamental books and textbooks on Discrete Mathematics,…
Descriptors: Information Science, Teaching Methods, Textbooks, Problem Solving
Yarmish, Rina – MATYC Journal, 1981
The teaching of numeral representations other than decimals is seen as a necessary and important step in the education of pupils in computing. Basic arithmetic procedures for binary, octal, and hexidecimal bases are discussed. (MP)
Descriptors: Computer Science, Computer Science Education, Computers, Digital Computers

Johnson, Mildred Fitzgerald – Business Education Forum, 1980
Discusses philosophy, facts, and opinions regarding the definition of computer literacy; presents suggested computer literacy course content; and recommends delivery systems or methodologies that can be used for instructional purposes. (Author)
Descriptors: Computer Science, Course Content, Data Processing, Definitions
Classroom Computer Learning, 1985
Presents a collection of teaching activities suitable for students in the upper grades. These activities focus on practical programming projects, use of word processors for learning a foreign language, an Atari program for making a starburst, and a program (with deliberate errors) to determine the thickness of folded paper. (JN)
Descriptors: Computer Science Education, Intermediate Grades, Learning Activities, Programing
Classroom Computer Learning, 1985
Describes computer-oriented teaching activities for the upper grades. They focus on the use of databases in history classes, checking taxes, examining aspects of the joystick button on Atari microcomputers, printing control using Logo, and a Logo program that draws whirling squares. All activities can be adapted for lower grades. (JN)
Descriptors: Computer Science Education, Databases, Intermediate Grades, Learning Activities
Hannah, Larry; Matus, Charles – Classroom Computer Learning, 1984
Suggests providing opportunities for students to discuss real-life computer-related issues in the classroom. Several sample scenarios are included. Students not only examine their values but also develop reasoning and decision-making skills using these or other dilemma stories. (JN)
Descriptors: Computer Science Education, Decision Making, Ethics, Secondary Education