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Joyce Vogel; Dan Bouhnik – European Journal of Education, 2024
Introduction to Computer Science is traditionally the first course that all computer science and software engineering majors take. The course introduces many problem-solving techniques which can be challenging for many freshman students. In order to mitigate some of the issues of this course, we, at the Higher Education Institute, introduced a new…
Descriptors: Computer Science Education, Introductory Courses, Awards, Problem Based Learning
Sbaraglia, Marco; Lodi, Michael; Martini, Simone – Informatics in Education, 2021
Introductory programming courses (CS1) are difficult for novices. Inspired by "Problem solving followed by instruction" and "Productive Failure" approaches, we define an original "necessity-driven" learning design. Students are put in an apparently well-known situation, but this time they miss an essential ingredient…
Descriptors: Programming, Introductory Courses, Computer Science Education, Programming Languages
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
Thomas, Debra Kelly; Milenkovic, Lisa; Marousky, Annamargareth – Science and Children, 2019
Computer science (CS) and computational thinking (a problem-solving process used by computer scientists) teach students design, logical reasoning, and problem solving--skills that are valuable in life and in any career. Computational thinking (CT) concepts such as decomposition teach students how to break down and tackle a large complex problem.…
Descriptors: Computation, Thinking Skills, Computer Simulation, Computer Science Education
Larsen, Lasse Juel; Majgaard, Gunver – Designs for Learning, 2016
This article considers game design research in educational settings. Its focus is on how undergraduate students -- particularly engineering students -- learn computer game design. From observations conducted during our game design courses we have developed a model of expanded game design space. It encapsulates the entire development process from…
Descriptors: Undergraduate Students, Engineering Education, Computer Games, Design
Marshall, Linda; Pieterse, Vreda; Thompson, Lisa; Venter, Dina M. – ACM Transactions on Computing Education, 2016
Employers require software engineers to work in teams when developing software systems. It is therefore important for graduates to have experienced teamwork before they enter the job market. We describe an experiential learning exercise that we designed to teach the software engineering process in conjunction with teamwork skills. The underlying…
Descriptors: Student Participation, Teamwork, Computer Software, Programming
Straub, Jeremy – Journal of Educational Technology Systems, 2014
The development of software for spacecraft represents a particular challenge and is, in many ways, a worst case scenario from a design perspective. Spacecraft software must be "bulletproof" and operate for extended periods of time without user intervention. If the software fails, it cannot be manually serviced. Software failure may…
Descriptors: Comparative Analysis, Computer Software, Computer Science Education, Educational Technology
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
Kim, Jungkuk – IEEE Transactions on Education, 2012
This paper introduces a problem-based learning (PBL) microprocessor application course designed according to the following strategies: 1) hands-on training without having a formal laboratory, and 2) intense student-centered cooperative learning through an ill-structured problem. PBL was adopted as the core educational technique of the course to…
Descriptors: Problem Based Learning, Experiential Learning, Cooperative Learning, Courses
Riek, L. D. – IEEE Transactions on Education, 2013
This paper describes a newly designed upper-level undergraduate and graduate course, Autonomous Mobile Robots. The course employs active, cooperative, problem-based learning and is grounded in the fundamental computational problems in mobile robotics defined by Dudek and Jenkin. Students receive a broad survey of robotics through lectures, weekly…
Descriptors: Robotics, Active Learning, Cooperative Learning, Problem Based Learning
Mitri, Michel – Journal of Information Systems Education, 2015
This paper describes the use and benefits of Microsoft's Adventure Works (AW) database to teach advanced database skills in a hands-on, realistic environment. Database management and querying skills are a key element of a robust information systems curriculum, and active learning is an important way to develop these skills. To facilitate active…
Descriptors: Active Learning, Databases, Computer Software, Educational Benefits
Fantinato, Marcelo; Chaim, Marcos Lordello; Morandini, Marcelo; Peres, Sarajane Marques; Tuesta, Esteban Fernandez – Informatics in Education, 2011
Contests are usually applied in the academic environment to simulate real professional situations that require from the participants a more pro-active attitude than the one shown in conventional coursework. Although they are commonly applied in the scope of a unique course, the contest described here was an extracurricular experience applied in an…
Descriptors: Competition, Information Systems, Computer Science Education, Extracurricular Activities
Diamond, Susannah; Middleton, Andrew; Mather, Richard – Innovations in Education and Teaching International, 2011
This paper proposes a cross-faculty simulation model for authentic learning that bridges the gap between short group-based simulations within the classroom and longer individual placements in professional working contexts. Dissemination of the model is expected to widen the use of authentic learning approaches in higher education (HE). The model…
Descriptors: Foreign Countries, Educational Games, Learning Experience, Simulation
Tappert, Charles C.; Stix, Allen – Computers in the Schools, 2010
At Pace University we have been using real-world student projects in capstone computing courses for about 10 years. While the courses were conducted in a traditional classroom environment during the early years, the current course has been essentially online for the last five years in order to reach a greater number of geographically scattered…
Descriptors: Student Projects, Distance Education, Educational Trends, Online Courses
Laverty, David M.; Milliken, Jonny; Milford, Matthew; Cregan, Michael – European Journal of Engineering Education, 2012
This paper presents a new laboratory-based module for embedded systems teaching, which addresses the current lack of consideration for the link between hardware development, software implementation, course content and student evaluation in a laboratory environment. The course introduces second year undergraduate students to the interface between…
Descriptors: Foreign Countries, Engineering Education, Student Evaluation, Computer Assisted Instruction
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