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Exploring Michigan through Project-Based Leaning includes 50 well-thought-out projects designed for grades 3-5. In assigning your students projects that dig into MichiganÕs geography, history, government, economy, current events, and famous people, you will deepen their appreciation and understanding of Michigan while simultaneously improving their analytical skills and ability to recognize patterns and big-picture themes. Project-based learning today is much different than the craft-heavy classroom activities popular in the past. Inquiry, planning, research, collaboration, and analysis are key components of project-based learning activities today. However, that doesnÕt mean creativity, individual expression, and fun are out. They definitely arenÕt! Each project is designed to help students gain important knowledge and skills that are derived from standards and key concepts at the heart of academic subject areas. Students are asked to analyze and solve problems, to gather and interpret data, to develop and evaluate solutions, to support their answers with evidence, to think critically in a sustained way, and to use their newfound knowledge to formulate new questions worthy of exploring. While some projects are more complex and take longer than others, they all are set up in the same structure. Each begins with the central project-driving questions, proceeds through research and supportive questions, has the student choose a presentation option, and ends with a broader-view inquiry. Rubrics for reflection and assessments are included, too. This consistent framework will make it easier for you assign projects and for your students to follow along and consistently meet expectations. Encourage your students to take charge of their projects as much as possible. As a teacher, you can act as a facilitator and guide. The projects are structured such that students can often work through the process on their own or through cooperation with their classmates.
Like most good educational interventions, problem-based learning (PBL) did not grow out of theory, but out of a practical problem. Medical students were bored, dropping out, and unable to apply what they had learned in lectures to their practical experiences a couple of years later. Neurologist Howard S. Barrows reversed the sequence, presenting students with patient problems to solve in small groups and requiring them to seek relevant knowledge in an effort to solve those problems. Out of his work, PBL was born. The application of PBL approaches has now spread far beyond medical education. Today, PBL is used at levels from elementary school to adult education, in disciplines ranging across the humanities and sciences, and in both academic and corporate settings. This book aims to take stock of developments in the field and to bridge the gap between practice and the theoretical tradition, originated by Barrows, that underlies PBL techniques.
Learn how to develop and sustain multimodal, project-based learning (PBL) instruction in secondary English Language Arts classrooms. National standards encourage authentic forms of reading, writing, and communication that can support college and career readiness, and this book highlights PBL as a powerful way to harness students’ interests and engage them in academically rigorous learning. The authors provide specific, research-informed curricular approaches and instructional guidance for classroom teachers, as well as an overview of the dimensions of PBL that are often overlooked in the broad expectations of inquiry-based teaching. Instead of “quick fix” lessons, Compose Our World explores how core dimensions of equitable teaching—such as social and emotional support, universal design for learning, and cultivating classroom community—function as the bedrock for student success in PBL contexts and beyond. Book Features: Based on the authors’ extensive experience developing and studying a PBL curriculum.Brings PBL to life through classroom vignettes and teacher and student voices.Provides classroom resources that facilitate customization to unique contexts. Shares ideas for developing teacher communities around PBL practices.Offers additional curriculum materials online.Appropriate for ELA teachers new to PBL, as well as veterans.
Improve student outcomes with a new approach to relationships and networks Relationships matter. Who You Know explores this simple idea to give teachers and school administrators a fresh perspective on how to break the pattern of inequality in American classrooms. It reveals how schools can invest in the power of relationships to increase social mobility for their students. Discussions about inequality often focus on achievement gaps. But opportunity is about more than just test scores. Opportunity gaps are a function of not just what students know, but who they know. This book explores the central role that relationships play in young people’s lives, and provides guidance for a path forward. Schools can: Integrate student support models that increase access to caring adults in students’ lives Invest in learning models that strengthen teacher-student relationships Deploy emerging technologies that expand students’ networks to experts and mentors from around world Exploring the latest tools, data, and real-world examples, this book provides evidence-based guidance for educators looking to level the playing field and expert analysis on how policymakers and entrepreneurs can help. Networks need no longer be limited by geography or circumstance. By making room for relationships, K-12 schools can transform themselves into hubs of next-generation learning and connecting. Who You Know explains how.
This brand-new elementary science methods text uses an innovative applied approach and is authored by three leaders in the field. The text takes a constructivist approach and practices this approach by engaging students in reflective thought and investigations.Project-based science engages young learners in exploring authentic, important, and meaningful questions of real concern to students. Through a dynamic process of investigation and collaboration and using the same processes and technologies that real scientists use, students work in teams to formulate questions, make predictions, design investigations, collect and analyze data, make products and share ideas. Students learn fundamental science concepts and principles that they apply to their daily lives. Project-based science helps all students regardless of culture, race, or gender engage in science learning.The book is packed with numerous examples so that the reader can easily understand points that are made throughout the book. Each chapter has activity boxes with experiments that exemplify the project-based approach. The book provides useful tips, charts, diagrams, and tables that illustrate how to get children doing investigations. The text's dynamic teaching methods match all of today's major science education reports including The National Science Education Standards, Project 2061: Science for All Americans, and Benchmarks for Science Literacy.
The roadmap for your school’s CBE journey! The one-size-fits-all instructional and assessment practices of the past no longer equitably meet the needs of all students. Competency-based education (CBE) has emerged not only as an innovation in education, but as a true transformation of the approaches to how we traditionally "do" school. In Deeper Competency-Based Learning, the authors share best practices from their experiences implementing CBE across states, districts, and schools. Leaving no stone unturned, readers are guided step-by-step through CBE implementation and validation phases, beginning with defining your WHY and collaborative development of the competencies describing deeper learning. The CBE readiness tools and reflections inside will help your team: Build the foundation for organizational shifts by examining policies, leadership, culture, and professional learning Dig in to shifts in teaching and learning structures by addressing rigorous learning goals, competency-based assessment, evidence-based grading, and body of evidence validation Take a deep dive into the shift to student-centered classrooms through personalized instructional strategies that change mindsets regarding teacher-student roles, responsibilities, and classroom culture Discover how your students can demonstrate deeper learning of academic content and develop personal success skills by maximizing time, place, and pace of learning with this roadmap for your CBE journey.
In Start with Joy: Designing Literacy Learning for Student Happiness, author Katie Cunningham links what we know from the science of happiness with what we know about effective literacy instruction. When given a choice about what to write, children express hopes, fears, and reactions to life's experiences. Literacy learning is full of opportunities for students to learn tools to live a happy life. Inside, you'll find: Seven Pillars: Cunningham discusses the seven pillars that guide her classrooms and are involved in each literacy lesson'sConnection, Choice, Challenge, Play, Story, Discovery, and Movement. Ten Invitations: Designed for teachers to improvise and make their own, these ten lessons may be presented at any time of year in the context of any unit and include children's literature suggestions as well as recommended teacher talk to meet children's specific needs. Teaching Tools: Tools and resources that will help students tell their stories and make literacy learning something all students celebrate and cherish. This book honors the adventure that learning is meant to be and aims to make happiness more tangible in the classroom. By infusing school days with happiness, teachers can support children as they become stronger readers, writers, and thinkers, while also helping them learn that strength comes from challenge, and joy comes from leading a purposeful life.
Learning sciences is an interdisciplinary field that studies teaching and learning. The sciences of learning include cognitive science, educational psychology, computer science, anthropology, sociology, neuroscience, and other fields. The Cambridge Handbook of the Learning Sciences, first published in 2006, shows how educators can use the learning sciences to design more effective learning environments - including school classrooms and also informal settings such as science centers or after-school clubs, on-line distance learning, and computer-based tutoring software. The chapters in this handbook each describe exciting new classroom environments, based on the latest science about how children learn. CHLS is a true handbook in that readers can use it to design the schools of the future - schools that will prepare graduates to participate in a global society that is increasingly based on knowledge and innovation.