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Hundhausen, C. D.; Conrad, P. T.; Carter, A. S.; Adesope, O. – Computer Science Education, 2022
Background and Context: Assessing team members' indivdiual contributions to software development projects poses a key problem for computing instructors. While instructors typically rely on subjective assessments, objective assessments could provide a more robust picture. To explore this possibility, In a 2020 paper, Buffardi presented a…
Descriptors: Computer Software, Computer Science Education, Correlation, Engineering Education
Worsley, Marcelo; Bar-El, David – Computer Science Education, 2022
Background and Context: Making is celebrated for bringing exciting tools and learning opportunities to non-traditional designers. However, people with disabilities may find themselves excluded from many making activities and makerspaces. This exclusion is present in making and computer science more broadly. Objective: We describe a university…
Descriptors: Inclusion, Students with Disabilities, College Students, Shared Resources and Services
Dugan, Robert F., Jr. – Computer Science Education, 2011
In this article, we surveyed literature related to undergraduate computer science capstone courses. The survey was organized around course and project issues. Course issues included: course models, learning theories, course goals, course topics, student evaluation, and course evaluation. Project issues included: software process models, software…
Descriptors: Learning Theories, Student Evaluation, Course Evaluation, Computer Software
Touretzky, David S. – Computer Science Education, 2013
Modern robots, like today's smartphones, are complex devices with intricate software systems. Introductory robot programming courses must evolve to reflect this reality, by teaching students to make use of the sophisticated tools their robots provide rather than reimplementing basic algorithms. This paper focuses on teaching with Tekkotsu, an open…
Descriptors: Robotics, Computer Science Education, Programming, Science Curriculum
Herman, Geoffrey L. – Computer Science Education, 2012
In order to maximize the effectiveness of our pedagogies, we must understand how our pedagogies align with prevailing theories of cognition and motivation and design our pedagogies according to this understanding. When implementing Contributing Student Pedagogies (CSPs), students are expected to make meaningful contributions to the learning of…
Descriptors: Student Motivation, Learning Motivation, Research Universities, Learner Engagement
Dahlberg, Teresa; Barnes, Tiffany; Buch, Kim; Bean, Karen – Computer Science Education, 2010
This article describes a computer science course that uses service learning as a vehicle to accomplish a range of pedagogical and BPC (broadening participation in computing) goals: (1) to attract a diverse group of students and engage them in outreach to younger students to help build a diverse computer science pipeline, (2) to develop leadership…
Descriptors: Student Attitudes, Service Learning, Science Curriculum, Outreach Programs
Tekinerdogan, Bedir – Computer Science Education, 2011
Model-driven software development (MDSD) aims to support the development and evolution of software intensive systems using the basic concepts of model, metamodel, and model transformation. In parallel with the ongoing academic research, MDSD is more and more applied in industrial practices. After being accepted both by a broad community of…
Descriptors: Foreign Countries, Computer Software, Graduate Study, Industry
Falkner, Katrina; Falkner, Nickolas J. G. – Computer Science Education, 2012
Contributing student pedagogy (CSP) builds upon social constructivist and community-based learning principles to create engaging and productive learning experiences. What makes CSP different from other, related, learning approaches is that it involves students both learning from and also explicitly valuing the contributions of other students. The…
Descriptors: Foreign Countries, Computer Science Education, Programming, College Curriculum
Cabot, Jordi; Tisi, Massimo – Computer Science Education, 2011
Model-Driven Engineering (MDE) is changing the way we build, operate, and maintain our software-intensive systems. Several projects using MDE practices are reporting significant improvements in quality and performance but, to be able to handle these projects, software engineers need a set of technical and interpersonal skills that are currently…
Descriptors: Foreign Countries, Computer Science Education, Computer Software, Engineering
Cajander, Asa; Daniels, Mats; McDermott, Roger – Computer Science Education, 2012
This paper investigates the links between the "contributing student pedagogy" and other forms of peer-mediated learning models, e.g. "open-ended group projects" and "communities of practice." We find that a fundamental concern in each of these models is the attribution of "value"; specifically, recognition…
Descriptors: Foreign Countries, Distance Education, Information Technology, Socialization
Surakka, Sami; Malmi, Lauri – Computer Science Education, 2005
This case study considered the syllabus of the first and second year studies in computer science. The aim of the study was to reveal which topics covered in the syllabi were really needed during the following years of study or in working life. The program that was assessed in the study was a Masters program in computer science and engineering at a…
Descriptors: Masters Programs, Computer Science, Engineering Education, Foreign Countries
Nuutila, Esko; Torma, Seppo; Malmi, Lauri – Computer Science Education, 2005
Problem-Based Learning (PBL) method emphasizes students' own activity in learning about problems, setting up their own learning goals and actively searching for and analyzing information. In this paper, we describe and discuss our experiences on applying PBL, especially the seven steps method widely used in medical faculties, in an introductory…
Descriptors: Problem Based Learning, Teaching Methods, Programming, Computer Science Education
Felleisen, Matthias; Findler, Robert Bruce; Flatt, Matthew; Krishnamurthi, Shriram – Computer Science Education, 2004
The TeachScheme! Project aims to reform three aspects of introductory programming courses in secondary schools. First, we use a design method that asks students to develop programs in a stepwise fashion such that each step produces a well-specified intermediate product. Second, we use an entire series of sublanguages, not just one. Each element of…
Descriptors: Programming, Programming Languages, Computer Science Education, Program Implementation
Scharff, Christelle; Brown, Harold – Computer Science Education, 2004
A novel approach to improving instruction in an introductory computing course for freshmen non-computer-science majors is to couple it with a logic course as part of a Learning Community. Research has shown that effective Learning Communities can lead to higher academic achievement, better retention rates, diminished faculty isolation, and…
Descriptors: Computer Science Education, Logical Thinking, Instructional Improvement, Instructional Effectiveness