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E-grāmata: Teaching Science Online: Practical Guidance for Effective Instruction and Lab Work

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With the increasing focus on science education, growing attention is being paid to how science is taught. Educators in science and science-related disciplines are recognizing that distance delivery opens up new opportunities for delivering information, providing interactivity, collaborative opportunities and feedback, as well as for increasing access for students.

This book presents the guidance of expert science educators from the US and from around the globe. They describe key concepts, delivery modes and emerging technologies, and offer models of practice. The book places particular emphasis on experimentation, lab and field work as they are fundamentally part of the education in most scientific disciplines.

Chapters include: discipline methodology and teaching strategies in the specific areas of physics, biology, chemistry and earth sciences; an overview of the important and appropriate learning technologies (ICTs) for each major science; best practices for establishing and maintaining a successful course online; insights and tips for handling practical components like laboratories and field work; coverage of breaking topics, including MOOCs, learning analytics, open educational resources and m-learning; strategies for engaging your students online.

A companion website presents videos of the contributors sharing additional guidance, virtual labs simulations and various additional resources.

Recenzijas

"Kennepohl and the other authors of this text expertly dispel the myth that science, a highly skills-based practice, cannot be taught online. Chapter authors offer teaching strategies to enrich online science experiences and provide numerous examples of collaborative endeavors, innovative implementation of current technologies, and case studies featuring successful online science courses with experiential requirements. In many cases, chapter authors created the programs and courses they write about. Novice and veteran faculty, higher education administrators, and education specialists in online learning would all benefit from reading this book."

Teachers College Record

"Dietmar Kennepohl has drawn upon an international network of innovative educators in various science disciplines in college and university settings. Each are bringing in their unique experiences and a review of research literature for developing and delivering hands-on activities in an online environment, which is equivalent to that we would see in conventional face to face classroom settings. Laying out a foundational base of knowledge in four general science areas, this collection also branches into first hand descriptions from educators, including the use of online tools to provide experiences not possible in traditional face to face classroom settings and unique ways in which online tools open doors for those with different abilities (disabilities). This book is a nice resource for anyone new to online science education, as well as for someone looking for a compiled summary of latest research findings in this area or just wanting some new ideas to try in their own online science courses."

Dr. Deana Namuth-Covert, Professor, Director of Online Education and Outreach at The Ohio State University College of Food Agricultural and Environmental Sciences

"Teaching online and at a distance has been enabled to an unimaginable degree by information technology. The rapidly changing world of these modes of teaching needs best practices. And the comprehensive yet readable book that Dietmar Kennepohl has edited brings together in one place just that the collective, hands-on experience of committed teachers across the world. The Future Starts Today is an apt phrase to describe this first class volume."

Roald Hoffmann, Nobel Laureate in Chemistry, Educator, and Writer

This book could not be more timely. While the need and demand for STEM is acute, traditional brick and mortar higher education systems are having difficulty responding to it. Online, open and flexible learning presents a viable alternative and supplement to meet demand, and the challenges related to cost, access and flexibility.

This book offers guidance and practical solutions, not least for dealing with laboratory problems. It moreover proposes the use of exciting and hyper relevant innovative pedagogies, such as learning through argumentation recommended in the UKs Open University 2015 Innovating Pedagogy report.

This practical approach offers great inspiration for teaching STEM, not least in developing economies where learning institutions may have limited or no access to physical laboratories, or indeed and in any situation where it may be possible to carry out laboratory experiments remotely, using a laboratory kit.

Practitioners in distance teaching have often been forerunners for innovative and modern methodology and pedagogy. This book will inspire readers who aspire to innovate, guided by these experienced scientists who demonstrate what works.

Gard Titlestad, Secretary General, International Council for Open and Distance Education

Foreword ix
Michael Grahame Moore
Acknowledgments xiii
Introduction
Setting the Stage 1(8)
Dietmar K. Kennepohl
PART ONE THE BASICS OF GETTING SCIENCE COURSES ONLINE
1 The Basics Of Getting Biology Courses Online
9(17)
Wendy Wright
Jennifer Mosse
Barbara C. Panther
2 Teaching Undergraduate Chemistry By Distance And Online
Lessons From the Front Line
26(20)
Peter Lye
Erica Smith
3 Developing Online Earth Science Courses
46(21)
Kevin F. Downing
4 Physics Teaching In Distance Education
67(20)
Robert Lambourne
Nicholas Braithwaite
PART TWO APPLICATIONS: CASE STUDIES AND SPECIAL TOPICS
5 Science Online
Bringing the Laboratory Home
87(14)
Mary V. Mawn
6 Practical Biology At A Distance
How Far Can We Go With Online Distance Learning?
101(15)
Mark C. Hirst
Hilary A. MacQueen
7 Assessment In Physics Distance Education
Practical Lessons at Athabasca University
116(15)
Farook Al-Shamali
Martin Connors
8 Computer-Based Laboratory Simulations For The New Digital Learning Environments
131(12)
Jessie Webb
Richard Swan
Brian F. Woodfield
9 Remote Access Laboratory Equipment For Undergraduate Science Education
143(13)
Daniel M. Branan
Paul Bennett
Nicholas Braithwaite
10 Situated Science Learning For Higher Level Learning With Mobile Devices
156(12)
Brett McCollum
11 Online Delivery Of Field- And Laboratory-Based Environmental And Earth Sciences Curriculum
168(15)
Ron Reuter
12 Enabling Remote Activity
Widening Participation in Field Study Courses
183(13)
Trevor Collins
Sarah Davies
Mark Gaved
13 Collaborative E-Learning In Pharmacy
Design, Evaluation, and Outcomes of a European Cross-Border Project
196(14)
Marion Bruhn-Suhr
Dorothee Dartsch
Jasmin Hamadeh
14 Online Professional Development For Australian Science Teachers
Developing and Deploying a Curriculum Evaluation Model
210(15)
Karen Spence
Jennifer Donovan
P. A. Danaher
PART THREE SUMMARY AND FUTURE TRENDS
The Future Starts Today
225(8)
Dietmar K. Kennepohl
Appendix A Online Versus Face-To-Face Approaches for Various Learning Activities 233(2)
Appendix B Selected Online Resources 235(6)
Editor And Contributors 241(6)
Index 247
Dietmar Kennepohl is Professor of Chemistry and Associate Vice President Academic at Athabasca University (AU) Canadas Open University. He graduated Summa Cum Laude from McMaster University with a B.Sc. (Honours) degree in chemistry and continued directly into his doctoral studies at the University of Alberta in main group synthetic chemistry. Before coming to Athabasca University he also did a post-doctoral fellowship at the University of Guelph and was an Alexander von Humboldt Fellow at the Universität Göttingen in Germany. Most of his teaching experience has been in a distributed and online setting. He holds both university and national teaching awards. Over the years, his research interests have included chemical education as well as petroleum, main group and coordination chemistry. His research in chemical education includes online chemistry courses and concentrates on the use of innovative distance delivery methods for undergraduate laboratory work. Michael G. Moore is known in academic circles for his leadership in promoting the scholarship of distance education and online learning. He published his first statement of theory about distance education in 1972, and has achieved a number of firsts in this field.While teaching the first graduate course in this subject at University of Wisconsin in the mid 70's, he was contributory to founding the national annual conference there. Appointed to The Pennsylvania State University in 1986, he founded the first American journal (American Journal of Distance Education) and established the first sequence of taught graduate courses, including the first such courses taught online. Moore has served on the editorial boards of all the main journals of distance education, and about a hundred publications include the books, Contemporary Issues in American Distance Education (Pergamon Press, 1990), Distance Education: a Systems View, co-authored with G. Kearsley (Wadsworth Publishers, Third Edition, 2011 in press), p