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Selhorst-Koekkoek, Mirjam; Rusman, Ellen – International Journal of Mobile and Blended Learning, 2023
The development of multidisciplinary education requires people to communicate, learn, and design beyond the boundaries of their own domains. In this research, an education design framework is developed to facilitate and support university teachers in multidisciplinary educational design. In addition, it serves as an aid to potentially transform…
Descriptors: Intellectual Disciplines, Interdisciplinary Approach, Problem Solving, Instructional Design
Gleason, Benjamin; Jaramillo Cherrez, Nadia – TechTrends: Linking Research and Practice to Improve Learning, 2021
This study discusses a design-thinking approach for a virtual exchange intended to introduce pre-service teachers to global collaboration and empowered learning through the use of educational technology. Principles of design-thinking (i.e., empathy, ideation, and testing) were aligned with broader educational goals of culturally responsive…
Descriptors: Design, Exchange Programs, Computer Simulation, Preservice Teachers
Lin, Chi-Syan; Ma, Jung-Tsan; Kuo, Karen Yi-Chwen; Chou, Chien-Tzu Candace – Journal on School Educational Technology, 2015
The goal of the study is to explore the opportunities and challenges associated with Project-Based Learning strategy in a global context on the aspects of both fostering learning community of practices and nurturing the 21st century skills. For collecting empirical data, the study implements and administers an online international project-based…
Descriptors: Student Projects, Teaching Methods, High School Students, Communities of Practice
Sin, Cristina – Educational Studies, 2015
This study argues that student-centred methods in the teaching of physics can be beneficial for students' enculturation into the discipline and into a physicist's profession. Interviews conducted with academics and students from six master degrees in physics in three different European countries suggest that student-driven classroom activities,…
Descriptors: Student Centered Curriculum, Scientists, Interpersonal Competence, Physics
El Yacoubi, Nouzha – Africa Education Review, 2013
In the past, common people were expected to have skills in reading, writing and arithmetic to succeed to have a job. Philosophy and/or Science were required for reaching a high position and belonging to the national elite. In this new millennium, information, knowledge, science and technology constitute a real power, and an educated person is…
Descriptors: Mathematics Education, Educational Change, Information Technology, Foreign Countries
Parker Siburt, Claire J.; Bissell, Ahrash N.; Macphail, Richard A. – Journal of Chemical Education, 2011
In a collaborative effort between the our university's department of chemistry and the academic resource center, we designed a model for general chemistry recitation based on a problem manipulation method in which students actively assess the skills and knowledge used to answer a chemical problem and then manipulate the problem to create a new…
Descriptors: Chemistry, Science Instruction, Problem Solving, Metacognition
Nordstrom, Katrina; Korpelainen, Paivi – Teaching in Higher Education, 2011
Problem solving is a critical skill for engineering students and essential to development of creativity and innovativeness. Essential to such learning is an ease of communication and allowing students to address the issues at hand via the terminology, attitudes, humor and empathy, which is inherent to their frame of mind as novices, without the…
Descriptors: Learner Engagement, Video Technology, Engineering Education, Creativity
Rand Corp., Santa Monica, CA. – 1993
Studies conducted by Rand Corporation suggested that students did not need to be taught generic skills and work-related attitudes in actual workplaces. Such instruction could occur effectively at schools in traditional stand alone classrooms. To develop an instructional model for teaching generic skills, researchers used ethnographic methods to…
Descriptors: Classroom Design, Classroom Environment, Classroom Techniques, Education Work Relationship

Bruce, Alease S.; Jochums, Brenda L. – Journal of College Science Teaching, 1990
Describes how problem solving was incorporated into a clinical science curriculum by using a team teaching approach. The review of the content domain, the examination of objectives and test items, and the steps in the team development are included. The steps in development of the program are considered. (KR)
Descriptors: College Science, Content Analysis, Cooperative Planning, Course Descriptions