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Paolo Casari; Sabrina Maniero; Andrea Rosani; Federica Picasso; Anna Serbati – IEEE Transactions on Education, 2025
Contribution: An innovative teaching experience carried out at the University of Trento using team-based learning (TBL) in a large computer networks class. The impact of TBL on the students' learning and satisfaction was investigated. Background: Active learning pedagogies, including TBL, play an important role in enhancing higher-order cognitive…
Descriptors: Cooperative Learning, Teamwork, Computer Networks, Student Attitudes
Love Börjeson; Chris Haffenden; Martin Malmsten; Fredrik Klingwall; Emma Rende; Robin Kurtz; Faton Rekathati; Hillevi Hägglöf; Justyna Sikora – College & Research Libraries, 2024
This article provides an account of the making of KBLab, the data lab at the National Library of Sweden (KB). The first part discusses the work involved in establishing a lab as both a physical and a digital site for researchers to use digital collections at previously unimaginable scales. The second part explains how the lab has deployed the…
Descriptors: Foreign Countries, Government Libraries, Artificial Intelligence, Computer Networks
Jordi Guitart; Juan José Costa – Interactive Learning Environments, 2024
The pandemic situation banned the presence of teachers and students in the classrooms disrupting the typical teaching process. Videoconferencing services have been used successfully for lectures, but they are insufficient for hands-on laboratories where the physical presence is a requirement (i.e. to access specific hardware). Enabling remote…
Descriptors: Distance Education, Laboratories, Computer Networks, Videoconferencing
Pequeno, Jaildo Tavares; Fonseca, Benjamim; Lopes, Joaquim Bernardino Oliveira – European Journal of Engineering Education, 2022
This study contributes to learning improvement in practical classes in Computer Network technology courses, using the Physical Technological Laboratory (PTL) as a tool. Multimodal narration content analysis was used, which aggregates and organises the data collected in the PTL environment. Based on the results, we infer that both the student and…
Descriptors: Science Instruction, Laboratories, Computer Networks, Teaching Methods
Caminero, Agustín C.; Ros, Salvador; Hernández, Roberto; Robles-Gómez, Antonio; Tobarra, Llanos; Tolbaños Granjo, Pedro J. – IEEE Transactions on Learning Technologies, 2016
The use of practical laboratories is a key in engineering education in order to provide our students with the resources needed to acquire practical skills. This is specially true in the case of distance education, where no physical interactions between lecturers and students take place, so virtual or remote laboratories must be used. UNED has…
Descriptors: Engineering Education, Internet, Distance Education, Laboratories
Zseby, Tanja; Vázquez, Félix Iglesias; Bernhardt, Valentin; Frkat, Davor; Annessi, Robert – IEEE Transactions on Education, 2016
This paper presents a network security laboratory to teach data analysis for detecting TCP/IP covert channels. The laboratory is mainly designed for students of electrical engineering, but is open to students of other technical disciplines with similar background. Covert channels provide a method for leaking data from protected systems, which is a…
Descriptors: Engineering Education, Telecommunications, Computer Security, Laboratories
Abdel-Maksoud, Nahed F. – International Journal of Education and Practice, 2018
Virtualization technology has been around for many years, and its use is increasingly becoming common in education, in general and in computing fields, in particular. This can be attributed partly to its potential to reduce costs, boost efficiency and overcome limited resources through its virtual applications such as servers, storage devices and…
Descriptors: Electronic Learning, Educational Environment, Educational Quality, Instructional Effectiveness
Zhamanov, Azamat; Yoo, Seong-Moo; Sakhiyeva, Zhulduz; Zhaparov, Meirambek – International Journal of Information and Communication Technology Education, 2018
Students nowadays are hard to be motivated to study lessons with traditional teaching methods. Computers, smartphones, tablets and other smart devices disturb students' attentions. Nevertheless, those smart devices can be used as auxiliary tools of modern teaching methods. In this article, the authors review two popular modern teaching methods:…
Descriptors: Program Implementation, Program Evaluation, Blended Learning, Internet
Kongcharoen, Chaknarin; Hwang, Wu-Yuin; Ghinea, Gheorghita – Educational Technology & Society, 2017
More studies are concentrating on using virtualization-based labs to facilitate computer or network learning concepts. Some benefits are lower hardware costs and greater flexibility in reconfiguring computer and network environments. However, few studies have investigated effective mechanisms for using virtualization fully for collaboration.…
Descriptors: Experimental Groups, Control Groups, Comparative Analysis, Academic Achievement
Hwang, Wu-Yuin; Kongcharoen, Chaknarin; Ghinea, Gheorghita – International Review of Research in Open and Distance Learning, 2014
Recently, various computer networking courses have included additional laboratory classes in order to enhance students' learning achievement. However, these classes need to establish a suitable laboratory where each student can connect network devices to configure and test functions within different network topologies. In this case, the Linux…
Descriptors: Cooperative Learning, Synchronous Communication, Computer Mediated Communication, Virtual Classrooms
Lampi, Evans – ProQuest LLC, 2013
The effectiveness of using virtual labs to train students in computer networking skills, when real equipment is limited or unavailable, is uncertain. The purpose of this study was to determine the effectiveness of using virtual labs to train students in the acquisition of computer network configuration and troubleshooting skills. The study was…
Descriptors: Foreign Countries, Simulated Environment, Computer Simulation, Teaching Methods
Ttofis, C.; Theocharides, T.; Michael, M. K. – IEEE Transactions on Education, 2012
Manycore systems have emerged as being one of the dominant architectural trends in next-generation computer systems. These highly parallel systems are expected to be interconnected via packet-based networks-on-chip (NoC). The complexity of such systems poses novel and exciting challenges in academia, as teaching their design requires the students…
Descriptors: Computer System Design, Computer Networks, Computer Science Education, Teaching Methods
Ruiz-Martinez, A.; Pereniguez-Garcia, F.; Marin-Lopez, R.; Ruiz-Martinez, P. M.; Skarmeta-Gomez, A. F. – IEEE Transactions on Learning Technologies, 2013
In the teaching of computer networks the main problem that arises is the high price and limited number of network devices the students can work with in the laboratories. Nowadays, with virtualization we can overcome this limitation. In this paper, we present a methodology that allows students to learn advanced computer network concepts through…
Descriptors: Computer Networks, Concept Teaching, Science Process Skills, Teaching Methods
Chen, M.-H.; Huang, M.-C.; Ting, Y.-C.; Chen, H.-H.; Li, T.-L. – IEEE Transactions on Education, 2010
In this article, a course on high-frequency wireless communications systems is presented. With the 145-MHz baseband subsystem available from a prerequisite course, the present course emphasizes the design and implementation of the 2.45-GHz front-end subsystem as well as system integration issues. In this curriculum, the 2.45-GHz front-end…
Descriptors: Prerequisites, Laboratories, Telecommunications, Computer Networks
Armitage, Grenville; Harrop, Warren – Australasian Journal of Educational Technology, 2005
Many educational institutions suffer from a lack of funding to keep telecommunications laboratory classes up to date and flexible. This paper describes our Remote Unix Lab Environment (RULE), a solution for exposing students to the latest Internet based telecommunications software tools in a Unix like environment. RULE leverages existing PC…
Descriptors: Colleges, Laboratories, Telecommunications, Internet
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