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Wichmann-Hansen, Gitte; Thomsen, Rie; Nordentoft, Helle Merete – Higher Education: The International Journal of Higher Education Research, 2015
The idea of peer and group learning is not new in higher education. It has been applied and studied extensively in courses, programmes, and other formal classroom contexts. However, there is not, as yet, a correspondingly large body of research into peer learning in supervision contexts. In this article we address the challenges experienced by…
Descriptors: Masters Programs, Guidance Programs, School Guidance, School Counseling
Miller, Matthew; Carroll, David; Jancic, Mitchell; Markworth, Kimberly – New Educator, 2015
In this article, we discuss how an interdisciplinary faculty team at a midsized public university created supports for the Teacher Performance Assessment (edTPA), a high-stakes performance assessment for preservice candidates being adopted by many states. We provide a general description of our work in contending with the challenge of developing a…
Descriptors: Performance Based Assessment, Student Teacher Evaluation, Student Teacher Attitudes, Interdisciplinary Approach
Redondo, Miguel A.; Bravo, Crescencio; Ortega, Manuel; Verdejo, M. Felisa – Computers and Education, 2007
Experimental learning environments based on simulation usually require monitoring and adaptation to the actions the users carry out. Some systems provide this functionality, but they do so in a way which is static or cannot be applied to problem solving tasks. In response to this problem, we propose a method based on the use of intermediate…
Descriptors: Intelligent Tutoring Systems, Cooperative Learning, Experiential Learning, Educational Environment
Crowe, Mary; Hill, Chris – Journal of College Science Teaching, 2006
Many studies show students benefit from working cooperatively. Rarely published in STEM literature are guidelines to help educators effectively incorporate research teams in the classroom. We explain how to create a positive learning experience by explaining group dynamics, and by using group contracts and team-building activities. We also share…
Descriptors: Learning Experience, Cooperative Learning, Group Dynamics, Guidance Programs
Reimann, Peter – International Group for the Psychology of Mathematics Education, 2005
Computer-based learning environments for science and mathematics education support predominantly individual learning; from first generation drill and practice programs to today's advanced, knowledge-based tutorial systems, one learner interacting with one computer has been the typical setting. Mathematics educators, however, increasingly…
Descriptors: Science Education, Mathematics Education, Design Requirements, Computer Assisted Instruction
Chen, Weiqin; Pedersen, Roger Heggernes; Pettersen, Oystein – Interactive Learning Environments, 2006
This paper presents the design, implementation, and evaluation of a distributed collaborative UML modelling environment, CoLeMo. CoLeMo is designed for students studying UML modelling. It can also be used as a platform for collaborative design of software. We conducted formative evaluations and a summative evaluation to improve the environment and…
Descriptors: Summative Evaluation, Formative Evaluation, Program Evaluation, Program Design
Complexities of Collaboration: Intensity of Mentors' Responses to Paired and Single Student Teachers
Baker, R. Scott; Milner, Joseph O. – Action in Teacher Education, 2006
This study examined an innovative approach to student teaching, where pairs of secondary teacher candidates worked together under the guidance of a single mentor teacher. Like studies of partnered student teachers at the elementary level, our study found that paired secondary student teacher candidates developed a more intense and effective…
Descriptors: Guidance Programs, Student Teaching, Mentors, Team Training
Song, Hae-Deok; Koszalka, Tiffany A.; Grabowski, Barbara L. – Canadian Journal of Learning and Technology, 2005
Reflective thinking is important to young adolescents as they develop their thinking skills. Various instructional methods have been recommended to support reflective thinking, yet the nature of the underlying factors in these methods is unclear. Exploratory factor analysis was used to determine the factors prompting reflective thinking. Results…
Descriptors: Instructional Design, Adolescents, Thinking Skills, Factor Analysis