2,342 research outputs found
Instruction based on computer simulations
Excerpts available at Google Books. For integral text, see publisher's website : http://www.routledge.com/books/details/9780415804615/"Introduction : In the scientific debate on what is the best approach to teaching and learning, a recurring question concerns who should lead the learning process, the teacher or the learner (see e.g., Tobias & Duffy, 2009) ? Poistions takens vary from a preference for direct, expository, teacher-led instruction (Kirschner, Sweller, & Clark, 2006) to fully open student-centered approaches that can be called pure discovery methods (e.g., Papert, 1980), with intermediate positions represented by more or less guided discovery methods (e.g., Mayer, 2004). This discussion also is a recurring theme in this chapter." (http://books.google.fr/books?id=cCD_thHjuxEC&pg=PA446&lpg=PA446&dq=Instruction+based+on+computer+simulations+de+jong&source=bl&ots=tOJ7FdkZow&sig=s8W6OnyU3H7iRLm7wqISfu6CAYE&hl=fr&ei=AZGATviHDMuV0QXewI3KCQ&sa=X&oi=book_result&ct=result&resnum=3&ved=0CDoQ6AEwAg#v=onepage&q=Instruction%20based%20on%20computer%20simulations%20de%20jong&f=false
Factors shaping the evolution of electronic documentation systems
The main goal is to prepare the space station technical and managerial structure for likely changes in the creation, capture, transfer, and utilization of knowledge. By anticipating advances, the design of Space Station Project (SSP) information systems can be tailored to facilitate a progression of increasingly sophisticated strategies as the space station evolves. Future generations of advanced information systems will use increases in power to deliver environmentally meaningful, contextually targeted, interconnected data (knowledge). The concept of a Knowledge Base Management System is emerging when the problem is focused on how information systems can perform such a conversion of raw data. Such a system would include traditional management functions for large space databases. Added artificial intelligence features might encompass co-existing knowledge representation schemes; effective control structures for deductive, plausible, and inductive reasoning; means for knowledge acquisition, refinement, and validation; explanation facilities; and dynamic human intervention. The major areas covered include: alternative knowledge representation approaches; advanced user interface capabilities; computer-supported cooperative work; the evolution of information system hardware; standardization, compatibility, and connectivity; and organizational impacts of information intensive environments
The guiding process in discovery hypertext learning environments for the Internet
Hypertext is the dominant method to navigate the Internet, providing user freedom
and control over navigational behaviour. There has been an increase in converting
existing educational material into Internet web pages but weaknesses have been
identified in current WWW learning systems. There is a lack of conceptual support
for learning from hypertext, navigational disorientation and cognitive overload. This
implies the need for an established pedagogical approach to developing the web as a
teaching and learning medium.
Guided Discovery Learning is proposed as an educational pedagogy suitable for
supporting WWW learning. The hypothesis is that a guided discovery environment
will produce greater gains in learning and satisfaction, than a non-adaptive hypertext
environment. A second hypothesis is that combining concept maps with this specific
educational paradigm will provide cognitive support. The third hypothesis is that
student learning styles will not influence learning outcome or user satisfaction. Thus,
providing evidence that the guided discovery learning paradigm can be used for many
types of learning styles.
This was investigated by the building of a guided discovery system and a framework
devised for assessing teaching styles. The system provided varying discovery steps,
guided advice, individualistic system instruction and navigational control. An 84
subject experiment compared a Guided discovery condition, a Map-only condition
and an Unguided condition. Subjects were subdivided according to learning styles,
with measures for learning outcome and user satisfaction. The results indicate that
providing guidance will result in a significant increase in level of learning. Guided
discovery condition subjects, regardless of learning styles, experienced levels of
satisfaction comparable to those in the other conditions. The concept mapping tool
did not appear to affect learning outcome or user satisfaction.
The conclusion was that using a particular approach to guidance would result in a
more supportive environment for learning. This research contributes to the need for a
better understanding of the pedagogic design that should be incorporated into WWW
learning environments, with a recommendation for a guided discovery approach to
alleviate major hypertext and WWW issues for distance learning
Intelligent design techniques towards implicit and explicit learning: a systematic review
Artificial intelligence techniques are advancing in areas like health, cooking, education, and agriculture,
aiming to educate users and enhance their knowledge. This survey reviews design tools and
their features, introducing a classification of implicit and explicit features from user interactions. An
analysis of 35 studies reveals the application of these techniques, detailing knowledge storage, interaction
types, algorithms, and evaluation methods. Key findings include the potential of techniques for
both implicit and explicit learning, a lack of detailed information in some implementations, and a
highlighted need for tools that educate novice software engineers about privacy through design IoT
applications
E-Learning
Technology development, mainly for telecommunications and computer systems, was a key factor for the interactivity and, thus, for the expansion of e-learning. This book is divided into two parts, presenting some proposals to deal with e-learning challenges, opening up a way of learning about and discussing new methodologies to increase the interaction level of classes and implementing technical tools for helping students to make better use of e-learning resources. In the first part, the reader may find chapters mentioning the required infrastructure for e-learning models and processes, organizational practices, suggestions, implementation of methods for assessing results, and case studies focused on pedagogical aspects that can be applied generically in different environments. The second part is related to tools that can be adopted by users such as graphical tools for engineering, mobile phone networks, and techniques to build robots, among others. Moreover, part two includes some chapters dedicated specifically to e-learning areas like engineering and architecture
Invention Pedagogy â The Finnish Approach to Maker Education
This collection, edited and written by the leading scholars and experts of innovation and maker education in Finland, introduces invention pedagogy, a research-based Finnish approach for teaching and learning through multidisciplinary, creative design and making processes in formal school settings.
The book outlines the background of, and need for, invention pedagogy, providing various perspectives for designing and orchestrating the invention process while discusses what can be learnt and how learning happens through inventing. In addition, the book introduces the transformative, school-level innovator agency needed for developing whole schools as innovative communities. Featuring informative case study examples, the volume explores the theoretical, pedagogical, and methodological implications for the research and practice of invention pedagogy in order to further the field and bring new perspectives, providing a new vision for schools for decades to come.
Intermixing the results of cutting-edge research and best practice within STEAM-education and invention pedagogy, this book will be essential reading for researchers, students, and scholars of design and technology education, STEM education, teacher education, and learning sciences more broadly
Design of teacher assistance tools in an exploratory learning environment for algebraic generalisation
The MiGen project is designing and developing an intelligent exploratory environment to support 11-14 year-old students in their learning of algebraic generalisation. Deployed within the classroom, the system also provides tools to assist teachers in monitoring students' activities and progress. This paper describes the architectural design of these Teacher Assistance tools and gives a detailed description of one such tool, focussing in particular on the research challenges faced, and the technologies and approaches chosen to implement the necessary functionalities given the context of the project
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