This book explains how to close the gaps between assessment, curriculum, and instruction by replacing outmoded assessment methods with proficiency-based assessments.
No matter the content area or grade level, proficiency-based grading puts student growth at the heart of the classroom. Designed for content-area teachers and administrators, Proficiency-Based Grading in the Content Areas details how to implement evidence-based grading and maintain its effectiveness over time. This book equips any educator -- from technical to fine arts -- with the tools to make this shift. Use proficiency-based grading (also known as evidence-based grading) to drive student success: Become familiar with the basic concepts and essential decisions of evidence-based grading that apply to all content areas. Study individual-level and institutional-level grading decisions and how they differ from each other. Become familiar with the steps, paradigm shifts, and pedagogy necessary to implement proficiency-based grading in a particular content area. Study the ways proficiency-based grading differs from content area to content area and the unique benefits it offers to each. Follow a structure that mirrors flow psychology and Mihaly Csikszentmihalyi's five stages of creativity. Contents: Introduction Chapter 1: Implementing Proficiency-Based Grading With Core Belief Fidelity Chapter 2: Implementing Evidence-Based Reporting in Career and Technical Education Chapter 3: Implementing Evidence-Based Grading in English Language Arts Chapter 4: Implementing Evidence-Based Grading in Fine Arts Chapter 5: Implementing Evidence-Based Grading in Mathematics Chapter 6: Implementing Evidence-Based Grading in Physical Education and Health Chapter 7: Implementing Evidence-Based Grading in Sciences Chapter 8: Implementing Evidence-Based Grading in Social Sciences Chapter 9: Implementing Evidence-Based Grading in World Languages Epilogue: Creating Self-Reliant Learners References and Resources Index
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 Proficiency-Based Instruction: Rethinking Lesson Design and Delivery authors Eric Twadell, Mark Onuscheck, Anthony Reibel, and Troy Gobble offer a comprehensive guide in proficiency-based instruction and its implementation. The authors begin with a persuasive explanation of the benefits of changing from traditional instruction to one based on student proficiency. However, they recognize that the process of switching from long-standing, traditional methods of instruction to an entirely new method are both daunting and confusing. Thus, the authors offer a process of five comprehensive steps based on the creative process-(1) preparation, (2) incubation, (3) insight, (4) evaluation, and (5) elaboration-that educators can follow to make the switch to proficiency-based instruction. Moreover, the authors ensure that no instructor will go through this process alone by offering the tools necessary to carry out these steps as part of a collaborative team. Through this book, readers will gain all the tools and strategies they need to make the switch from traditional methods of instruction to a system of proficiency-based instruction.
Challenge traditional grading practices and adopt a new, more effective grading model for students, which will close the gaps in student achievement and content mastery. This book provides the pathway for implementing evidence-based grading practices in schools through a straightforward, five-phase creative model: (1) preparation, (2) incubation, (3) insight, (4) evaluation, and (5) elaboration. Readers will follow a hypothetical curriculum team's journey through each phase of this process. Benefits Confront ineffective grading practices and then overcome traditional biases to apply better grading practices. Reflect on the effectiveness of revisions and improve newly revised grading methods. Give students meaningful information about their progress toward learning targets and expectations. Identify the concepts and perspectives to which curriculum team members must commit, to successfully adopt evidence-based grading practices. Discover the important relationships between learning targets and grading, feedback and instruction, assessment and grading, and gradebooks and learning. Contents About the Author Introduction 1 Preparation 2 Incubation 3 Insight 4 Evaluation 5 Elaboration Epilogue References and Resources Index
Transform an in-depth understanding of the new science standards into successful classroom practice. You’ll learn how to align instruction and assessment with the science standards and create proficiency scales that can be used to plan all types of lessons. Discover hundreds of ready-to-use proficiency scales derived from the Next Generation Science Standards that are applicable to specific areas of science instruction.
Learn everything you need to know to implement an integrated system of assessment and grading. The author details the specific benefits of formative assessment and explains how to design and interpret three different types of formative assessments, how to track student progress, and how to assign meaningful grades. Detailed examples bring each concept to life, and chapter exercises reinforce the content.
Annotation In K-12 education's growing movement of competency-based education and personalized learning, both contradictory and overlapping definitions come up around these two terms. To clear up this confusion, A Handbook for Personalized Competency-Based Education by Robert J. Marzano, Jennifer S. Norford, Michelle Finn, and Douglas Finn III and contributors Rebecca Mestaz and Roberta Selleck delves into the components of a personalized competency-based education system. It reckons with the need to establish shared meanings for these terms, resulting in an inclusive definition of the terms, which the authors call personalized competency-based education (PCBE), and a clear implementation approach for a PCBE system. Once that term is in place, this handbook explores considerations, approaches, and strategies that educators should survey as they design PCBE systems that can help ensure students' content mastery.
English Language Proficiency Assessments for Young Learners provides both theoretical and empirical information about assessing the English language proficiency of young learners. Using large-scale standardized English language proficiency assessments developed for international or U.S. contexts as concrete examples, this volume illustrates rigorous processes of developing and validating assessments with considerations of young learners’ unique characteristics. In this volume, young learners are defined as school-age children from approximately 5 to 13 years old, learning English as a foreign language (EFL) or a second language (ESL). This volume also discusses innovative ways to assess young learners’ English language abilities based on empirical studies, with each chapter offering stimulating ideas for future research and development work to improve English language assessment practices with young learners. English Language Proficiency Assessments for Young Learners is a useful resource for students, test developers, educators, and researchers in the area of language testing and assessment.
Selected as the Michigan Council of Teachers of Mathematics winter book club book! Rich tasks, collaborative work, number talks, problem-based learning, direct instruction...with so many possible approaches, how do we know which ones work the best? In Visible Learning for Mathematics, six acclaimed educators assert it’s not about which one—it’s about when—and show you how to design high-impact instruction so all students demonstrate more than a year’s worth of mathematics learning for a year spent in school. That’s a high bar, but with the amazing K-12 framework here, you choose the right approach at the right time, depending upon where learners are within three phases of learning: surface, deep, and transfer. This results in "visible" learning because the effect is tangible. The framework is forged out of current research in mathematics combined with John Hattie’s synthesis of more than 15 years of education research involving 300 million students. Chapter by chapter, and equipped with video clips, planning tools, rubrics, and templates, you get the inside track on which instructional strategies to use at each phase of the learning cycle: Surface learning phase: When—through carefully constructed experiences—students explore new concepts and make connections to procedural skills and vocabulary that give shape to developing conceptual understandings. Deep learning phase: When—through the solving of rich high-cognitive tasks and rigorous discussion—students make connections among conceptual ideas, form mathematical generalizations, and apply and practice procedural skills with fluency. Transfer phase: When students can independently think through more complex mathematics, and can plan, investigate, and elaborate as they apply what they know to new mathematical situations. To equip students for higher-level mathematics learning, we have to be clear about where students are, where they need to go, and what it looks like when they get there. Visible Learning for Math brings about powerful, precision teaching for K-12 through intentionally designed guided, collaborative, and independent learning.