Visualising Powerful Knowledge to Develop the Expert Student


Book Description

This book puts the structure and function of knowledge firmly in the driving seat of university curriculum development and teaching practice. Through the application of concept mapping, the structure of knowledge can be visualised to offer an explicit perspective on key issues such as curriculum design, student learning and assessment feedback. Structural visualisation allows a greater scrutiny of the qualitative characteristics of knowledge so that we can analyse students’ patterns of learning and match them to expert practice. Based on nearly two decades of research and direct observations of university teaching by the author, this book aims to offer a scholarly account of teacher development. It focusses on elements that will be of immediate utility to academics who want to develop their teaching to a level of adaptive experts, offering them greater autonomy in their role and a powerful understanding of teaching to escape the repressive routines of the traditional classroom. Rather than providing a comprehensive review of educational research, this book provides a route through selected theories that can be explored in practice by university teachers on their own or in groups. The book will help academics to identify the nature of powerful knowledge within their disciplines and consider ways that this may be used by students to become active and engaged learners through the manipulation and transformation of knowledge, and so become expert students.




Visualising Powerful Knowledge to Develop the Expert Student


Book Description

This book puts the structure and function of knowledge firmly in the driving seat of university curriculum development and teaching practice. Through the application of concept mapping, the structure of knowledge can be visualised to offer an explicit perspective on key issues such as curriculum design, student learning and assessment feedback. Structural visualisation allows a greater scrutiny of the qualitative characteristics of knowledge so that we can analyse students' patterns of learning and match them to expert practice. Based on nearly two decades of research and direct observations of university teaching by the author, this book aims to offer a scholarly account of teacher development. It focusses on elements that will be of immediate utility to academics who want to develop their teaching to a level of adaptive experts, offering them greater autonomy in their role and a powerful understanding of teaching to escape the repressive routines of the traditional classroom. Rather than providing a comprehensive review of educational research, this book provides a route through selected theories that can be explored in practice by university teachers on their own or in groups. The book will help academics to identify the nature of powerful knowledge within their disciplines and consider ways that this may be used by students to become active and engaged learners through the manipulation and transformation of knowledge, and so become expert students.




Organise Ideas: Thinking by Hand, Extending the Mind


Book Description

The central purpose of this book is to help teachers organise ideas through the use of graphic organisers. Over 35 such word-diagrams are: organised into a system to help select the right tool for the job; described for rapid understanding of their strengths; and explained for step-by-step construction. Over 50 teachers each have a double-page spread in which they reveal how they use them in their teaching — across the full age range and span of subjects. A further section of the book demonstrates how to use these word-diagrams most effectively by partnering them with other teaching strategies, such as retrieval practice, writing, speaking and listening, teacher explanations, advance organisers, scaffolding, remote learning and more. The pages are illustrated to the same quality and quantity in Oliver’s previous book, Dual Coding with Teachers, its natural companion. A must-have textbook for every teacher that transcends contemporary ideological allegiances and fads.




Fiorella & Mayer's Generative Learning in Action


Book Description

Generative Learning in Action helps to answer the question: which activities can students carry out to create meaningful learning? It does this by considering how we, as teachers, can implement the eight strategies for generative learning set out in the work of Fiorella and Mayer in their seminal 2015 work Learning as a Generative Activity: Eight Learning Strategies that Promote Learning. At a time when a great deal of attention has been paid to the teaching and learning from the perspective of effective instruction, Generative Learning looks at the flip side of coin and considers what is happening in the minds of the learner. This book takes a teachers-eye view of a range of theories of learning and keeps their application to the classroom firmly in mind through the use of case studies and reference to day to day practice. Generative Learning in Action also discusses the key considerations and potential limitations of each of the strategies, as well as how you could implement these in your own practice and more widely across a school. The authors bring a wealth of experience to this topic. Zoe Enser was a classroom English teacher for over 20 years as well as head of department and school leader in charge of improving teaching and learning. She is now lead specialist advisor for Kent with The Education People. Mark Enser has been a geography teacher for the best part of two decades as well as a head of department and research lead. He is the author of Making Every Geography Lesson Count and Teach Like Nobody's Watching as well as a TES columnist.




Active Learning in College Science


Book Description

This book explores evidence-based practice in college science teaching. It is grounded in disciplinary education research by practicing scientists who have chosen to take Wieman’s (2014) challenge seriously, and to investigate claims about the efficacy of alternative strategies in college science teaching. In editing this book, we have chosen to showcase outstanding cases of exemplary practice supported by solid evidence, and to include practitioners who offer models of teaching and learning that meet the high standards of the scientific disciplines. Our intention is to let these distinguished scientists speak for themselves and to offer authentic guidance to those who seek models of excellence. Our primary audience consists of the thousands of dedicated faculty and graduate students who teach undergraduate science at community and technical colleges, 4-year liberal arts institutions, comprehensive regional campuses, and flagship research universities. In keeping with Wieman’s challenge, our primary focus has been on identifying classroom practices that encourage and support meaningful learning and conceptual understanding in the natural sciences. The content is structured as follows: after an Introduction based on Constructivist Learning Theory (Section I), the practices we explore are Eliciting Ideas and Encouraging Reflection (Section II); Using Clickers to Engage Students (Section III); Supporting Peer Interaction through Small Group Activities (Section IV); Restructuring Curriculum and Instruction (Section V); Rethinking the Physical Environment (Section VI); Enhancing Understanding with Technology (Section VII), and Assessing Understanding (Section VIII). The book’s final section (IX) is devoted to Professional Issues facing college and university faculty who choose to adopt active learning in their courses. The common feature underlying all of the strategies described in this book is their emphasis on actively engaging students who seek to make sense of natural objects and events. Many of the strategies we highlight emerge from a constructivist view of learning that has gained widespread acceptance in recent years. In this view, learners make sense of the world by forging connections between new ideas and those that are part of their existing knowledge base. For most students, that knowledge base is riddled with a host of naïve notions, misconceptions and alternative conceptions they have acquired throughout their lives. To a considerable extent, the job of the teacher is to coax out these ideas; to help students understand how their ideas differ from the scientifically accepted view; to assist as students restructure and reconcile their newly acquired knowledge; and to provide opportunities for students to evaluate what they have learned and apply it in novel circumstances. Clearly, this prescription demands far more than most college and university scientists have been prepared for.




Dominant Discourses in Higher Education


Book Description

This book examines the dominant discourses in higher education. From the moment teachers enter higher education, they are met with dominant discourses that are often adopted uncritically, including concepts such as teaching excellence, student voice, and student engagement. Teachers are also met with simplistic binaries such as teaching vs. research, quantitative vs. qualitative research, and constructivists vs. positivists. Kinchin and Gravett suggest that this may present a distorted view, contributing to the disconnect between the aims and observable practice of higher education. Rather than celebrating difference, dominant discourses tend to seek similarities in an attempt to simplify and manage the environment. In this book, the authors share their belief that teaching and learning should be a thoughtful endeavour. Thinking with a breadth of theories, the authors explore the overlaps between different perspectives in order to offer a richer and more inclusive interrogation of the dominant discourses that pervade higher education. Offering methodological approaches to explore these perspectives, the authors bring together academics working in different parts of the university and examine the concept of a 'rich cartography', considering how this can offer meaning within higher education research and practice.




Mindstorms


Book Description

In this revolutionary book, a renowned computer scientist explains the importance of teaching children the basics of computing and how it can prepare them to succeed in the ever-evolving tech world. Computers have completely changed the way we teach children. We have Mindstorms to thank for that. In this book, pioneering computer scientist Seymour Papert uses the invention of LOGO, the first child-friendly programming language, to make the case for the value of teaching children with computers. Papert argues that children are more than capable of mastering computers, and that teaching computational processes like de-bugging in the classroom can change the way we learn everything else. He also shows that schools saturated with technology can actually improve socialization and interaction among students and between students and teachers. Technology changes every day, but the basic ways that computers can help us learn remain. For thousands of teachers and parents who have sought creative ways to help children learn with computers, Mindstorms is their bible.




How to Mend a University


Book Description

Many contemporary commentators present a damning account of the current state of higher education, to the extent that our universities may be considered to be broken. This book offers an alternative perspective to the dominant neoliberal discourse and provides the conceptual tools to help construct a trajectory of repair for our universities. These ideas are presented within this book as five moves to transform our current pathological situation and develop towards a more healthy and sustainable ecological learning environment. In this book, Ian Kinchin draws upon a wide range of sources from the philosophy of education, biological and clinical sciences as well as educational research and academic development. This alternative ecology of ideas presents a challenge to university leaders and asks if we care enough about the future of our universities to encourage an evolution of practice that deals sustainably with the wicked problems our universities face in the coming century. It describes a move towards an ecological university. The book includes a foreword written by Martyn Kingsbury, Professor of Higher Education and Director of the Centre for Higher Education Research and Scholarship, Imperial College London, UK.




Formative action: From instrument to design


Book Description

Formative practices can motivate students, enhance their self-regulation, and help find a better balance between education and assessment. However, the successful implementation of formative practices and feedback in lessons begins with a well thought out educational design. In this book, the authors outline the implementation principles to which formative action must adhere to be of practical and substantive significance. They also explain how educators can use feedback more effectively and efficiently, and the essential role of instilling a shared sense of quality. This book is for teachers, educators, leaders, and curriculum developers from primary to higher education who want to successfully integrate formative practices into their daily teaching methods.




Concept Map-Based Formative Assessment of Students’ Structural Knowledge


Book Description

The modern knowledge-based economic model demands highly qualified specialists who are capable of solving complex problems and seeing relationships between phenomena, events, and objects. This book highlights the development of the structural knowledge of university students as a necessary precondition for preparing labour market experts, as it facilitates significant cognitive processes, effective problem solving and expert-level performance. The volume considers structural knowledge as an object that should be regularly assessed and further developed in the formative assessment process by using concept mapping as an assessment instrument. It describes concept mapping, the theoretical foundations of structural knowledge, and its formative assessment, and provides a set of practical scenarios validated in instructional practice. It is intended primarily for the administrative and educational staff of higher education institutions who wish to improve the quality of education with the aim of bringing students’ structural knowledge closer to experts’ knowledge, and thus ensuring better preparation of students for their professional activities.