The Impact of Improvement Science Professional Development on Teacher Agency


Book Description

The educational field is riddled with ineffective top-down reform initiatives that have failed to address disparities in student learning outcomes for disadvantaged students. Over the past century, three successive waves of educational reform have situated decision-making power at the state and federal level, far away from the classroom where teaching and learning occurs. Reform efforts are often poorly funded and under resourced, leaving teachers frustrated and disengaged. There is a need for bottom-up educational reform that leverages teacher inquiry, promotes teacher collaboration, and supports teachers in building a robust pedagogical knowledge base. Improvement science, with its focus on small, iterative, inquiry cycles, networked learning, and evidence-based decision-making, is a promising bottom-up reform strategy that addresses these needs. This study utilized a mixed method approach to understand how teachers engaged with the tools and methods of improvement science by exploring: (1) How do teachers use improvement science tools and methods? (2) What structures support teachers in engaging in improvement work? And, (3) In what ways do improvement science tools and methods impact teacher agency? In this study teacher agency was conceptualized as teachers' sense of belonging to an improvement community - I am a member of a community that believes it can learn and improve, teachers' confidence that they can meet the learning needs of their students - I believe I have the skills and tools I need to meet the learning needs of my students, and teachers' perceived value of professional development support, - the improvement science tools and methods I'm learning are valuable to me now and in the future. The study found that engaging in improvement science professional development increased teachers' sense of agency along all three dimensions. Teachers reported an increased sense of belonging to an improvement community, an increased belief that they could meet the learning needs of all their students, and that learning about improvement science tools and methods was useful to them now and in the future. The study also determined four key structures that supported teachers as they engaged in learning and using the tools of improvement science, and two challenges that bear further investigation. Administrator support, regular meeting times, enlisting teachers as co-facilitators, and protocols to scaffold using improvement science tools, all contributed to teachers developing an improvement culture at their school site. Challenges teachers experienced during the study included deciding what data to collect to determine if a change idea was leading to improvement and using data to inform iterative cycles of inquiry during Plan Do Study Act cycles. The findings of this study suggest that the tools and methods of improvement science learned through professional development have a positive impact on teachers' sense of agency and the development of a school improvement culture. Considerations for adopting an improvement science professional development framework are also discussed.




Teacher Agency


Book Description

Recent worldwide education policy has reinvented teachers as agents of change and professional developers of the school curriculum. Academic literature has analyzed changes in how teacher professionalism is conceived in policy and in practice but Teacher Agency provides a fresh perspective on this issue, drawing upon an ecological theory of agency. Using this model for understanding agency, Mark Priestley, Gert Biesta and Sarah Robinson explore empirical findings from the 'Teacher Agency and Curriculum Change' project, funded by the UK-based Economic and Social Research Council (ESRC). Drawing together this research with the authors' international experiences and perspectives, Teacher Agency addresses theoretical and practical issues of international significance. The authors illustrate how teacher agency should be understood not only in terms of individual capacity of teachers, but also in respect of the cultures and structures of schooling.




Learning to Improve


Book Description

As a field, education has largely failed to learn from experience. Time after time, promising education reforms fall short of their goals and are abandoned as other promising ideas take their place. In Learning to Improve, the authors argue for a new approach. Rather than “implementing fast and learning slow,” they believe educators should adopt a more rigorous approach to improvement that allows the field to “learn fast to implement well.” Using ideas borrowed from improvement science, the authors show how a process of disciplined inquiry can be combined with the use of networks to identify, adapt, and successfully scale up promising interventions in education. Organized around six core principles, the book shows how “networked improvement communities” can bring together researchers and practitioners to accelerate learning in key areas of education. Examples include efforts to address the high rates of failure among students in community college remedial math courses and strategies for improving feedback to novice teachers. Learning to Improve offers a new paradigm for research and development in education that promises to be a powerful driver of improvement for the nation’s schools and colleges.




Improvement Science as a Tool for School Enhancement


Book Description

A 2023 SPE Outstanding Book Honorable Mention Improvement Science as a Tool for School Enhancement: Solutions for Better Educational Outcomes is a collection of equity-focused improvement science-in-action, school-based case studies led by practitioners. Chapter authors tell us how and why improvement science principles make system-wide improvements in classroom practice, how they learned from the problems encountered and, further, how they were then able to make changes within a school or district. A core principle of improvement science is variability in context (what works for whom and under what conditions)--a critical concept for improvement in each of the case studies. Each team analyzed their problem of practice from the perspective of the unique conditions in their context, considering what might work, and what might not work, and when the changes could be expanded for implementation school- or district-wide. Early chapters describe the actions of school personnel to embed social and emotional learning as well as how to serve historically underserved students during disasters. Trauma-informed and restorative practices embraced by all staff enhanced student outcomes and reduced educational disparities in classrooms and throughout the school. The content then explores how improvement science change processes improve chronic absenteeism and discipline issues through whole-school practices related to school climate. Centering student and family perception, developing representative systems, and facilitating collaborative improvement projects were found to measurably improve the experience of students, increase equity, reinforce democratic principles, and empower school stakeholders, especially those whose voices have historically been ignored, to create meaningful system-wide school improvement. Finally, the material in the book provides concrete examples of improvement science as it applies in real-setting to address high school advisories, graduation rates, services for multi-lingual learners, students with disabilities, and reading clubs. Each chapter has an equity focus. The editors and contributors provide examples of how to use the processes and tools of improvement science to increase equity system-wide. How to use improvement science to address educational disparities system-wide with urgency, commitment, and a belief in the success of every child, of every race, every ethnicity, gender, ability, and cultural identity, is the essence of this book. Perfect for courses such as: Educating For Equity And Social Justice │ Cultivating Culturally Responsive Classrooms │ Integrating Methods And Curriculum Design │ Inquiry, Assessment, And Instructional Design │ Foundations Of Culturally And Linguistically Responsive Practice │ Math Literacy │ Physical Education │ Professional Collaboration In Education │ Language And Literacy Development Of Diverse Learners │ Equal Opportunity: Racism; Diversity And Equity In Schools │ Cultural Proficiency In Schools │ Language And Power In Education │ Teaching For Equity In Literacy │ Supportive Classroom Communities │ Cultural Diversity In Literature │ Engaging Students In Writing │ Introduction To School Leadership │ Introduction To School Improvement │ Teacher Leadership And School Improvement To learn more about Improvement Science and see our full list of books in this area, please click through to the Myers Education Press Improvement Science website.




The Educational Leader's Guide to Improvement Science


Book Description

The Educational Leader’s Guide to Improvement Science: Data, Design and Cases for Reflection is a collection illustrating applied organizational problem-solving using methods of improvement science in educational leadership. Early chapters introduce improvement science and then the reader is led through a logical sequence of inquiry, presented with cases of educational dilemma matched with principles of improvement science and provided examples of research methodology applied in context. Because improvement science research is so quickly becoming a signature pedagogy and core subject area of inquiry in the field of educational leadership, the literature is still scant in its coverage of improvement science models; it is the purpose of this publication to fill the void by providing concrete examples, through case studies, of instances where improvement research methods and analyses can be embedded to enhance and strengthen efforts at organizational improvement. This text concentrates on the elements faculty, students, and administrators need; specific models where improvement science frameworks enhance the reliability and validity of improvement or quality enhancement efforts. Perfect for courses such as: Introduction to Improvement Science, Seminar/Practicum in Educational Leadership, Introduction to Program Evaluation, Educational Research for Administrators, Action Research for School Practitioners, Educational Research, School Improvement, and Teacher Leadership.




Designing Professional Development for Teachers of Science and Mathematics


Book Description

The classic guide for designing robust science and mathematics professional development programs! This expanded edition of one of the most widely cited resources in the field of professional development for mathematics and science educators demonstrates how to design professional development experiences for teachers that lead to improved student learning. Presenting an updated professional development (PD) planning framework, the third edition of the bestseller reflects recent research on PD design, underscores how beliefs and local factors can influence PD design, illustrates a wide range of PD strategies, and emphasizes the importance of: Continuous program monitoring Combining strategies to address diverse needs Building cultures that sustain learning




Improvement Science in the Field


Book Description

While several texts provide pedagogical and theoretical insights on improvement science for faculty, graduate students, and educational leaders, practitioners’ voices are seldom heard. Improvement Science in the Field: Cases of Practitioners Leading Change in Schools fills this gap by presenting real-life cases of K-12 practitioners’ use of improvement science to lead change in their educational systems. Improvement Science in the Field: Cases of Practitioners Leading Change in Schools contains two sections. Part I presents practitioners’ accounts of their use of improvement science to address actual problems of practice, such as closing discipline and achievement gaps, managing teacher stress and mental health, and improving school climate. Part II follows a tradition of case-based teaching in which authors provide part of their improvement journey and then invite readers to practice, discuss, brainstorm, and reflect on how they would address the problem presented using the tools of improvement science.




Science Teachers' Learning


Book Description

Currently, many states are adopting the Next Generation Science Standards (NGSS) or are revising their own state standards in ways that reflect the NGSS. For students and schools, the implementation of any science standards rests with teachers. For those teachers, an evolving understanding about how best to teach science represents a significant transition in the way science is currently taught in most classrooms and it will require most science teachers to change how they teach. That change will require learning opportunities for teachers that reinforce and expand their knowledge of the major ideas and concepts in science, their familiarity with a range of instructional strategies, and the skills to implement those strategies in the classroom. Providing these kinds of learning opportunities in turn will require profound changes to current approaches to supporting teachers' learning across their careers, from their initial training to continuing professional development. A teacher's capability to improve students' scientific understanding is heavily influenced by the school and district in which they work, the community in which the school is located, and the larger professional communities to which they belong. Science Teachers' Learning provides guidance for schools and districts on how best to support teachers' learning and how to implement successful programs for professional development. This report makes actionable recommendations for science teachers' learning that take a broad view of what is known about science education, how and when teachers learn, and education policies that directly and indirectly shape what teachers are able to learn and teach. The challenge of developing the expertise teachers need to implement the NGSS presents an opportunity to rethink professional learning for science teachers. Science Teachers' Learning will be a valuable resource for classrooms, departments, schools, districts, and professional organizations as they move to new ways to teach science.




The Role of Scientists in the Professional Development of Science Teachers


Book Description

Scientists nationwide are showing greater interest in contributing to the reform of science education, yet many do not know how to begin. This highly readable book serves as a guide for those scientists interested in working on the professional development of K-12 science teachers. Based on information from over 180 professional development programs for science teachers, the volume addresses what kinds of activities work and why. Included are useful examples of programs focusing on issues of content and process in science teaching. The authors present "day-in-a-life" vignettes, along with a suggested reading list, to help familiarize scientists with the professional lives of K-12 science teachers. The book also offers scientists suggestions on how to take first steps toward involvement, how to identify programs that have been determined effective by teachers, and how to become involved in system-wide programs. Discussions on ways of working with teachers on program design, program evaluation, and funding sources are included. Accessible and practical, this book will be a welcome resource for university, institutional, and corporate scientists; teachers; teacher educators; organizations; administrators; and parents.




Enhancing Professional Knowledge of Pre-Service Science Teacher Education by Self-Study Research


Book Description

Self-study research is making an impact on the field of science education. University researchers employ these methods to improve their instruction, develop as instructors, and ultimately, impact their students’ learning. This volume provides an introduction to self-study research in science education, followed by manuscripts of self-studies undertaken by university faculty and those becoming university faculty members in science teacher education. Chapter authors range from those new to the field to established researchers, highlighting the value of self-study research in science teacher education for every career rank. The fifteen self-studies provided in this book support and extend this contemporary work in science teacher education. They, and the subsequent reflections on professional knowledge, are organized into four sections: content courses for preservice teachers, elementary methods courses, secondary methods courses, and preparation of future teacher educators. Respondents from various locations around the globe share their reflections on these sections. A culminating reflection of the findings of these studies is provided at the end of the book that provides an overview of what we have learned from these chapters, as well as a reflection on the role of self-study research in the future of science teacher education.