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In building sufficient, efficient human resources, massification of higher education is a common phenomenon. It is to this end that sustainability and inclusiveness have become such critical issues in higher education and its literature. This book looks into the major question of financial sustainability for the higher education institution, revealing the university’s struggles in the face of limited public funds. Coping strategies and feasible alternatives are extensively examined. The authors also tackle the area of higher education systems and collaboration in ensuring sustainability. Here, matters such as the public-private equilibrium, sustainable alumni networks, and research and pub...
This book discusses the importance of identifying and addressing misconceptions for the successful teaching and learning of science across all levels of science education from elementary school to high school. It suggests teaching approaches based on research data to address students’ common misconceptions. Detailed descriptions of how these instructional approaches can be incorporated into teaching and learning science are also included. The science education literature extensively documents the findings of studies about students’ misconceptions or alternative conceptions about various science concepts. Furthermore, some of the studies involve systematic approaches to not only creating but also implementing instructional programs to reduce the incidence of these misconceptions among high school science students. These studies, however, are largely unavailable to classroom practitioners, partly because they are usually found in various science education journals that teachers have no time to refer to or are not readily available to them. In response, this book offers an essential and easily accessible guide.
Bringing together a wide collection of ideas, reviews, analyses and new research on particulate and structural concepts of matter, Concepts of Matter in Science Education informs practice from pre-school through graduate school learning and teaching and aims to inspire progress in science education. The expert contributors offer a range of reviews and critical analyses of related literature and in-depth analysis of specific issues, as well as new research. Among the themes covered are learning progressions for teaching a particle model of matter, the mental models of both students and teachers of the particulate nature of matter, educational technology, chemical reactions and chemical phenom...
This book offers insights into the history of mathematics education, covering both the current state of the art of research and the methodology of the field. History of mathematics education is treated in the book as a part of social history. This book grew out of the presentations delivered at the International Congress on Mathematics Education in Hamburg. Modern development and growing internationalization of mathematics education made it clear that many urgent questions benefit from a historical approach. The chapters present viewpoints from the following countries: Belgium, Brazil, Cambodia, China, Cyprus, Germany, Iceland, Italy, the Netherlands, Russia,Spain and Sweden. Each chapter represents significant directions of historical studies. The book is a valuable source for every historian of mathematics education and those interested in mathematics education and its development.
This publication reviews higher education and economic development in the State of Penang, Malaysia. It analyzes how the higher education system impacts the region's economic development.
This edited volume addresses the dynamic global contexts redefining Asia Pacific higher education, including cross-border education, capacity and national birthrate profiles, pressures created within ranking/status systems, and complex shifts in the meanings of the public good that influence public education in an increasingly privatized world.
Science education is important as it equips students with scientific knowledge that can enrich their everyday lives. It helps students to solve problems, learn to be rational as well as be critical in their thinking. However, science learning is deemed challenging as students see the subject as difficult and sometimes tedious to learn. Thus, interest in science is essential to ensure continuous learning in science. It is important to promote positive attitudes towards science among students. Positive attitudes towards science are associated with better achievement in science, increased cooperation as well as participation in class. Malaysia needs a generation who are creative and critical th...