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Some of today's educational experts were asked to envision the year 2020, when technology has assumed a major role in elementary and secondary education. The informed conjecture that followed is contained in this volume; contributors offer visions of the future as well as specific steps that could turn those visions into realities. Innovative ideas for research, development, hardware, software, teacher training, technical assistance, organizational and cultural change are offered as a means to illuminate the potential role of technology in the educational systems of tomorrow. Technology in Education is a thought-provoking statement of what can and should be done to advance the application of technology to education over the next few decades. As such, it should be read by all researchers and professionals in educational technology.
All teachers--including career and technical education (CTE) teachers--play a vital role in building a thriving PLC. In this practical resource, the authors explicitly outline how to improve teaching and learning by integrating PLC best practices into CTE programs. Teams of CTE educators will learn how to clarify their purpose, discover their common denominators, and incorporate powerful collaborative processes into their daily work. Use this resource to learn the vital strategies necessary for building and improving teams: Become familiar with the common issues that prevent CTE educators from engaging in the collaborative PLC process. Learn why and how the PLC process benefits both CTE educators and students. Learn how CTE educators can create collaborative programs that are tailored toward CTE fields of study. Receive professional guidance and concrete, achievable teaching strategies for creating an effective PLC process. Access a checklist of crucial action steps for career tech teams at the end of each chapter. Contents: Introduction Chapter 1: Establishing a Collaborative Culture Chapter 2: Forming Collaborative Teams Chapter 3: Setting Up the Logistics of Teamwork Chapter 4: Identifying Essential Learnings and Developing CTE Curriculum Chapter 5: Designing Instruction and Assessments Chapter 6: Reflecting on Data Chapter 7: Responding to Student Learning Epilogue: Turning Parking Spaces Into Rest Spaces Appendix A: Glossary of Terms Appendix B: Reproducibles
Exploring the unique challenges of vocational education, this book provides simple and straightforward advice on how to teach English Language Learners in the classroom, in the laboratory or workshop, and in work-based learning settings.
This timely book shows how award-winning secondary schools and districts are successfully using technology and making systemic changes to increase student engagement, improve achievement, and re-invigorate the teaching and learning process. Through in-depth case studies, we see how experienced school and district leaders use technology in curricular, administrative, and analytical ways to meet the needs of 21st-century learners, educators, and communities. These cases reveal important details addressed by the leadership of these schools and districts that go beyond what they did with technology to include changes in school culture, curriculum and teaching, uses of assessment data, financial considerations, infrastructure, and involvement with the community.
This book examines how industry-desired employability skills—or “soft skills”—are taught and learned in high school career and technical education (CTE) engineering and engineering technology programs. Identifying, recruiting, and keeping workers with strong personal and interpersonal skills is a constant challenge for STEM employers who need to hire young workers to replace an aging technical workforce. To answer the call, teachers interviewed explained that they maintain regimented daily classroom routines that include individual and small group hands-on activities and projects. In turn, their students explain learning personal responsibility, work ethic, teamwork, leadership, conflict management, and social skills in the classroom. Narratives from the workforce and classroom interweave to put employability skills frameworks into action.
This book explores pedagogy appropriate for the secondary school technology education classroom. It covers the dimensions of pedagogy for technology with scholarly research, including information strongly related to practice. The book discusses the nature of technology courses in secondary schools across various jurisdictions and considers how they might be viewed with regard to different epistemological frameworks. The writing is informed by, but not limited to, research and strongly related to practice with acknowledged experts in the field of technology education contributing chapters supported by evidence from technology education research or other fields. The authors speculate on pedagogical possibilities in their areas of expertise in order to consider pedagogical possibilities and develop a view of where pedagogy for technology education should move and how teachers might respond in the way they develop their practice.
Technology promises to make learning better, cheaper, faster—but rarely has it kept that promise. The allure of educational technology is easy to understand. Classroom instruction is an expensive and time-consuming process fraught with contradictory theories and frustratingly uneven results. Educators, inspired by machines’ contributions to modern life, have been using technology to facilitate teaching for centuries. In Teaching Machines, Bill Ferster examines past attempts to automate instruction from the earliest use of the postal service for distance education to the current maelstrom surrounding Massive Open Online Courses. He tells the stories of the entrepreneurs and visionaries who, beginning in the colonial era, developed and promoted various instructional technologies. Ferster touches on a wide range of attempts to enhance the classroom experience with machines, from hornbooks, the Chautauqua movement, and correspondence courses to B. F. Skinner’s teaching machine, intelligent tutoring systems, and eLearning. The famed progressive teachers, researchers, and administrators that the book highlights often overcame substantial hurdles to implement their ideas, but not all of them succeeded in improving the quality of education. Teaching Machines provides invaluable new insight into our current debate over the efficacy of educational technology.
Definitive Readings in the History, Philosophy, Theories and Practice of Career and Technical Education brings together definitive writings on CTE by leading figures and by contemporary thinkers in the history, philosophy, practice and theories of the field. Filling a much needed void in existing literature, this book equips scholars and practitioners with knowledge, skills, and attitudes to succeed in the field of CTE.
The transferability of vocational education and training qualifications across international borders is a live issue in this heterogeneous field. Key to this goal is defining a common methodology for measuring vocational competences. This publication sets out a proposal for just that, based on the results of a pilot project known as ‘COMET’ on competence diagnostics in the field of electrical engineering. The study deploys longitudinal analysis to explore issues of competence development, the development of vocational identity, and occupational commitment. It focuses on two discrete occupational profiles in electrical engineering in an ambitious test of a model currently applied to other professions as well. The model’s success in its first phase is detailed in the second part of the volume, where the authors show that the transfer of the competence framework into an empirical model was successful. They also demonstrate that the methodology can be applied to designing and evaluating vocational education and training processes, making the material relevant to VET teachers and trainers as well as academics. With its first section comprising a full description of the theoretical framework, this book is a significant step forward in an urgent task facing administrations, labor forces and employers around the world. The achievement is in proportion to the notorious complexities of a field whose diversity makes tough demands on large-scale methods of assessment.