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Embedded Engineering Education 1st ed. 2016 [Pehme köide]

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  • Formaat: Paperback / softback, 185 pages, kõrgus x laius: 235x155 mm, kaal: 454 g, 12 Illustrations, color; 66 Illustrations, black and white; XII, 185 p. 78 illus., 12 illus. in color., 1 Paperback / softback
  • Sari: Advances in Intelligent Systems and Computing 421
  • Ilmumisaeg: 20-Jan-2016
  • Kirjastus: Springer International Publishing AG
  • ISBN-10: 3319275399
  • ISBN-13: 9783319275390
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  • Formaat: Paperback / softback, 185 pages, kõrgus x laius: 235x155 mm, kaal: 454 g, 12 Illustrations, color; 66 Illustrations, black and white; XII, 185 p. 78 illus., 12 illus. in color., 1 Paperback / softback
  • Sari: Advances in Intelligent Systems and Computing 421
  • Ilmumisaeg: 20-Jan-2016
  • Kirjastus: Springer International Publishing AG
  • ISBN-10: 3319275399
  • ISBN-13: 9783319275390
Teised raamatud teemal:

This book focuses on the outcome of the of the European research project “FP7-ICT-2011-8 / 317882: Embedded Engineering Learning Platform” E2LP. Additionally, some experiences and researches outside this project have been included. This book provides information about the achieved results of the E2LP project as well as some broader views about the embedded engineering education. It captures project results and applications, methodologies, and evaluations. It leads to the history of computer architectures, brings a touch of the future in education tools and provides a valuable resource for anyone interested in embedded engineering education concepts, experiences and material.The book contents 12 original contributions and will open a broader discussion about the necessary knowledge and appropriate learning methods for the new profile of embedded engineers. As a result, the proposed Embedded Computer Engineering Learning Platform will help to educate a sufficient number of future engineers in Europe, capable of designing complex systems and maintaining a leadership in the area of embedded systems, thereby ensuring that our strongholds in automotive, avionics, industrial automation, mobile communications, telecoms and medical systems are able to develop. 

Challenges in Embedded Engineering Education
1(28)
Ivan Kastelan
Nikola Teslic
Miodrag Temerinac
Unified Learning Platform for Embedded Engineering
29(16)
Ivan Kastelan
Nikola Teslic
Miodrag Temerinac
Exercises for Embedded Engineering Learning Platform
45(16)
Branka Medved Rogina
Karolj Skala
Peter Skoda
Ivan Sovic
Ivan Michieli
Implementation of Advanced Historical Computer Architectures
61(20)
Zorislav Sojat
Karolj Skala
Branka Medved Rogina
Peter Skoda
Ivan Sovic
Methods for User Involvement in the Design of Augmented Reality Systems for Engineering Education
81(12)
Margarita Anastassova
Sabrina Paneels
Florent Souvestre
Augmented Reality Interface for E2LP: Assistance in Electronic Laboratories Through Augmented Reality
93(16)
Enara Artetxe Gonzalez
Florent Souvestre
Jorge R. Lopez Benito
E2LP Remote Laboratory: e-Learning Service for Embedded Systems Education
109(10)
Rafal Kloda
Jan Piwinski
Advanced Projects and Applications for Embedded Systems Engineering on E2LP Platform
119(14)
Dario Grgic
Sebastian Bottcher
Marc Pfeifer
Johannes Scherle
Benjamin Volker
Jan Burchard
Sebastian Sester
Leonhard M. Reindl
E2LP Remote Laboratory: Introduction Course and Evaluation at Warsaw University of Technology
133(6)
Rafal Kloda
Jan Piwinski
Roman Szewczyk
Exploring Aspects of Self-regulated Learning Among Engineering Students Learning Digital System Design in the FPGA Environment---Methodology and Findings
139(22)
Moshe Barak
Ivan Kastelan
Zvi Azia
Is It Possible to Increase Motivation for Study Among Sophomore Electrical and Computer Engineering Students?
161(10)
Aharon Gero
Interrupts Become Features: Using On-Sensor Intelligence for Recognition Tasks
171
Kristof Van Laerhoven
Philipp M. Scholl