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Antje Boomgaarden; Katharina Loibl; Timo Leuders – Interactive Learning Environments, 2023
PS-I learning approaches with an initial problem-solving phase (PS) followed by an instruction phase (I) can be optimised by providing adaptive (individualised) instruction that builds on students' problem-solving products. A computer-based implementation of both phases offers the possibility of adaptivity at the transition from the…
Descriptors: Computer Assisted Instruction, Technology Uses in Education, Fractions, Educational Environment
Ken-Zen Chen; Yuan-Hung Lee – Interactive Learning Environments, 2024
The purpose of this study was to explore native-language teachers' efforts in technology-rich classrooms. The advancement of classroom technology and educational policies in Taiwan prompted native-language teachers to leverage technology that improved learning and instruction in native languages. Fifteen senior teachers participated in in-depth…
Descriptors: Native Speakers, Language Teachers, Teacher Effectiveness, Technology Uses in Education
Jung, Jaewon; Shin, Yoonhee; Zumbach, Joerg – Interactive Learning Environments, 2021
This study investigated the effects of pre-training types on the cognitive load, collaborative knowledge construction and level of learning in a computer-supported collaborative learning environment. Pre-training was provided to help learners optimise their cognitive load, build accurate shared-knowledge and achieve successful deep learning. The…
Descriptors: Cognitive Processes, Difficulty Level, Knowledge Level, Cooperative Learning
Pando Cerra, Pablo; Gracia Rodríguez, Javier; Fernández Álvarez, Humberto; Busto Parra, Bernardo – Interactive Learning Environments, 2020
Interactive Web Environments and multimedia tools are very common in engineering studies. However, these resources are very limited when graphical resolution is needed during the learning process. A learning environment that combines video and self-assessment Computer-Aided Design (CAD) tools was developed to analyse this problem and to determine…
Descriptors: Multimedia Materials, Self Evaluation (Individuals), Engineering Education, Computer Assisted Design
Sadeghi, Hamid; Kardan, Ahmad A. – Interactive Learning Environments, 2016
Group formation task as a starting point for computer-supported collaborative learning plays a key role in achieving pedagogical goals. Various approaches have been reported in the literature to address this problem, but none have offered an optimal solution. In this research, an online learning environment was modeled as a weighted undirected…
Descriptors: Foreign Countries, Cooperative Learning, Group Dynamics, Online Courses
Huang, Xiaoxia – Interactive Learning Environments, 2017
Previous research has indicated the disconnect between example-based research focusing on worked examples (WEs) and that focusing on modeling examples. The purpose of this study was to examine and compare the effect of four different types of examples from the two separate lines of research, including standard WEs, erroneous WEs, expert (masterly)…
Descriptors: Teaching Methods, Problem Solving, Academic Achievement, Cognitive Processes
Zydney, Janet Mannheimer; Bathke, Arne; Hasselbring, Ted S. – Interactive Learning Environments, 2014
This study investigated the effect of different methods of guidance with anchored instruction on students' mathematical problem-solving performance. The purpose of this research was to iteratively design a learning environment to find the optimal level of guidance. Two iterations of the software were compared. The first iteration used explicit…
Descriptors: Computer Assisted Instruction, Mathematics Instruction, Instructional Effectiveness, Problem Solving
Tseng, Shian-Shyong; Weng, Jui-Feng – Interactive Learning Environments, 2010
The most important thing for learners in Programming Language subject is problem solving. During the practical programming project, various problems may occur and learners usually need consultation from the senior programmers (i.e. the experts) to assist them in solving the problems. Thus, the inquiry-based learning with learning forum is applied…
Descriptors: Programming Languages, Inquiry, Active Learning, Problem Solving
Nogry, S.; Jean-Daubias, S.; Guin, N. – Interactive Learning Environments, 2012
This article deals with evaluating an interactive learning environment (ILE) during the iterative-design process. Various aspects of the system must be assessed and a number of evaluation methods are available. In designing the ILE Ambre-add, several techniques were combined to test and refine the system. In particular, we point out the merits of…
Descriptors: Foreign Countries, Educational Technology, Elementary School Students, Mathematics Instruction
Tseng, Kuo-Hung; Chang, Chi-Cheng; Lou, Shi-Jer – Interactive Learning Environments, 2012
This study aims to explore how high school students collaboratively solve problems in a web problem-based learning (WPBL) system in an 8-week digital logic course using discourse analysis. Employing in-depth interviews, this study also investigated the students' attitudes toward the WPBL system. The number of teaching assistants' responses had a…
Descriptors: Foreign Countries, Web Based Instruction, Computer Assisted Instruction, Internet
Schellens, T.; Van Keer, H.; De Wever, B.; Valcke, M. – Interactive Learning Environments, 2009
The present study focuses on the use of thinking types as a possible way to structure university students' discourse in asynchronous discussion groups and consequently promote their learning. More specifically, the aim of the study is to determine how requiring students to label their contributions by means of De Bono's (1991) thinking hats…
Descriptors: Discussion Groups, Identification, Critical Thinking, Thinking Skills

Swan, Karen; Black, John B. – Interactive Learning Environments, 1993
Discussion of computer programming and knowledge-based instruction focuses on three studies of elementary and secondary school students which show that five particular problem-solving strategies can be developed in students explicitly taught the strategies and given practice applying them to solve LOGO programming problems. (Contains 53…
Descriptors: Analogy, Computer Assisted Instruction, Educational Environment, Elementary Secondary Education

Singley, Mark K. – Interactive Learning Environments, 1990
Describes an experimental test conducted with high school students to determine the effect of posting explicit goal structures on problem-solving performance in an intelligent tutoring system for calculus. Related rates word problems are discussed, and student performance in terms of speed and accuracy is analyzed. (Contains 29 references.) (LRW)
Descriptors: Academic Achievement, Analysis of Variance, Calculus, Computer Assisted Instruction
Kecojevic, Vladislav; Bise, Christopher; Haight, Joel – Interactive Learning Environments, 2005
The use of professional software is an integral part of a student's education in the mining engineering curriculum at The Pennsylvania State University. Even though mining engineering represents a limited market across U.S. educational institutions, the goal still exists for using this type of software to enrich the learning environment with…
Descriptors: Computer Software, Engineering Education, Computer Assisted Instruction, Undergraduate Students

Resnick, Mitchel – Interactive Learning Environments, 1990
Discusses concurrent, or parallel, programming languages; explains the design of the MultiLogo programming language; and describes a study of fourth and fifth graders that used MultiLogo to control robotic devices built out of Lego bricks. Three categories of MultiLogo programming bugs are described, and implications for changes in design and…
Descriptors: Computer Assisted Instruction, Error Patterns, Futures (of Society), Grade 4
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