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Josh Tenenberg; Donald Chinn – Computer Science Education, 2025
Background and context: We address the question of what computer science students take the discipline to be. How students conceive the discipline can influence whether a student pursues computer science, what particular area within computer science they focus on and whether they persist in the discipline. In this paper, we examine the epistemic…
Descriptors: Computer Science Education, Epistemology, Student Attitudes, Intellectual Disciplines
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Titterton, Nathaniel; Lewis, Colleen M.; Clancy, Michael J. – Computer Science Education, 2010
Lab-centric instruction emphasizes supervised, hands-on activities by substituting lab for lecture time. It combines a multitude of pedagogical techniques into the format of an extended, structured closed lab. We discuss the range of benefits for students, including increased staff interaction, frequent and varied self-assessments, integrated…
Descriptors: Learning Activities, Computer Assisted Instruction, Mathematics Instruction, Lecture Method
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Shaffer, Clifford A.; Edwards, Stephen H. – Computer Science Education, 1999
Presents an empirical study of listerv usage in an undergraduate computer science course to understand how email lists contribute to the learning experience and to improve the value of listservs in courses. Provides evidence that the listerv was an important information source and was an effective tool for peer-to-peer learning. (Contains 7…
Descriptors: Computer Assisted Instruction, Computer Science Education, Higher Education, Information Sources
Rossa, Dean – Computer Science Education, 1991
Presents eight points to emphasize when teaching the concept of place value. Contends that converting numbers from one base to another helps students understand the concept of place value and the importance of context in establishing meaning. Provides a BASIC computer program to make conversions. (MDH)
Descriptors: Computer Assisted Instruction, Computer Science Education, Concept Formation, Context Effect
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Jadud, Matthew C. – Computer Science Education, 2005
Syntactically correct code does not fall from the sky; the process that leads to a student's first executable program is not well understood. At the University of Kent we have begun to explore the "compilation behaviours" of novice programmers, or the behaviours that students exhibit while authoring code; in our initial study, we have…
Descriptors: Introductory Courses, Programming, Student Behavior, Educational Technology