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The isolated nature of academic disciplines restricts the potential for collaborative problem-solving and innovative approaches to teaching and learning. This fragmentation limits the effectiveness of educational outcomes and fails to prepare students for the multidimensional demands of the modern world. To address this pressing issue, Transdisciplinary Approaches to Learning Outcomes in Higher Education provides a comprehensive framework for transdisciplinary research in higher education. This book offers a systematic approach to transdisciplinary research and equips researchers, educators, and policymakers with the tools needed to break down disciplinary barriers and foster interdisciplinary collaboration. Through a series of case studies, theoretical frameworks, and practical guidelines, the book demonstrates how transdisciplinary approaches can lead to more effective teaching practices, curriculum design, and student engagement. It highlights the importance of integrating digital transformation, creativity, communication skills, and information technology tools to enhance learning outcomes in higher education.
In the modern era of research, the significance of transdisciplinary and multidisciplinary approaches in enhancing higher education learning outcomes cannot be overlooked. These approaches break down traditional academic silos, fostering a more holistic and interconnected understanding of complex problems. By integrating diverse perspectives and methodologies, they promote critical thinking, creativity, and innovation among students. Educators and institutions must embrace and implement transdisciplinary teaching and technological integration to prepare students for the demands of the future and drive meaningful advancements in education. Transdisciplinary Teaching and Technological Integrat...
As an annual event, The 3rd International Conference Community Research and Service Engagements (IC2RSE) 2019 continued the agenda to bring together researcher, academics, experts and professionals in examining selected theme by applying multidisciplinary approaches. In 2019, this event will be held in 4 December at Florida-Maryland Room, JW Marriot Hotel. The conference from any kind of stakeholders related with Education, Information Technology, Mathematics and Social Related Studies. Each contributed paper was refereed before being accepted for publication. The double-blind peer reviewed was used in the paper selection.
What is missing in most curricula - from elementary school all the way through to university education - is coursework focused on the development of problem-solving skills. Most students never learn how to think about solving problems. Besides being a lot of fun, a puzzle-based learning approach also does a remarkable job of convincing students that (a) science is useful and interesting, (b) the basic courses they take are relevant, (c) mathematics is not that scary (no need to hate it!), and (d) it is worthwhile to stay in school, get a degree, and move into the real world which is loaded with interesting problems (problems perceived as real-world puzzles).
Characterizing Pedagogical Flow presents conclusions from a multi-disciplinary, multi-national research project blending quantitative and qualitative approaches through a discourse methodology. The work produced portraits of mathematics and science education that were dramatically different for each of the countries involved: France, Japan, Norway, Spain, Switzerland, and the United States. To explain these differences, it is proposed that the interaction of curriculum and pedagogy is culturally unique and yields classroom learning experiences that are qualitatively different from country to country. This idea has profound implications for how international education research is interpreted.
Discover motivating, personalized learning strategies that all of your students will love! Build an active, responsive, and inclusive classroom where every student benefits. Through step-by-step directions, reproducible handouts, classroom-tested examples, and specific guidelines, teachers and teacher teams will discover 60 activities to help you: Quickly and easily modify and adapt design instruction for diverse learners, including students with cultural, language, learning, physical, or sensory differences Transform lectures and whole-class discussions through dynamic, student-centered learning experiences Immerse students in discussion, debate, creative thinking, questioning, teamwork, and collaborative learning Flexibly co-plan and co-teach with a variety of school professionals
Marcus Heidmann explores the role of management accounting systems (MAS) in strategic sensemaking. Based on cognitive theories, the author defines strategic sensemaking as a learning process with observation, interpretation, and communication as the relevant process steps on the individual level. He illustrates the impact of MAS on these cognitive processes by an exploratory multiple-case study design.
This new title applies inspiring ideas and teaching approaches to the different subject areas taught in primary schools. Using a practical, subject-based approach, it promotes creativity, innovativeness and enthusiasm as integral to effective teaching and enhanced standards. Each chapter introduces a subject, its key issues, vital knowledge and pedagogical implications. In addition, case studies, action points, key quotes and thought-provoking suggestions for practice encourage readers to engage with the text. Offering refreshing, innovative perspectives in an accessible format, this book will help trainees and teachers to develop skills, boost their confidence and, crucially, increase their own and their pupils′ enjoyment.
This book presents innovations in teaching and learning science, novel approaches to science curriculum, cultural and contextual factors in promoting science education and improving the standard and achievement of students in East Asian countries. The authors in this book discuss education reform and science curriculum changes and promotion of science and STEM education, parental roles and involvement in children's education, teacher preparation and professional development and research in science education in the context of international benchmarking tests to measure the knowledge of mathematics and science such as the Trends in Mathematics and Science Study (TIMSS) and achievement in scien...
Constructing Representations to Learn in Science Current research into student learning in science has shifted attention from the traditional cognitivist perspectives of conceptual change to socio-cultural and semiotic perspectives that characterize learning in terms of induction into disciplinary literacy practices. This book builds on recent interest in the role of representations in learning to argue for a pedagogical practice based on students actively generating and exploring representations. The book describes a sustained inquiry in which the authors worked with primary and secondary teachers of science, on key topics identified as problematic in the research literature. Data from clas...