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page keeley science probes: Uncovering Student Ideas in Science: 25 formative assessment probes Page Keeley, 2005 V. 1. Physical science assessment probes -- Life, Earth, and space science assessment probes. |
page keeley science probes: Uncovering Student Ideas in Life Science Page Keeley, 2011 Author Page Keeley continues to provide KOCo12 teachers with her highly usable and popular formula for uncovering and addressing the preconceptions that students bring to the classroomOCothe formative assessment probeOCoin this first book devoted exclusively to life science in her Uncovering Student Ideas in Science series. Keeley addresses the topics of life and its diversity; structure and function; life processes and needs of living things; ecosystems and change; reproduction, life cycles, and heredity; and human biology. |
page keeley science probes: Uncovering Student Ideas in Astronomy Page Keeley, Cary Ivan Sneider, 2012 What do your students know-- or think they know-- about what causes night and day, why days are shorter in winter, and how to tell a planet from a star? Find out with this book on astronomy, the latest in NSTA' s popular Uncovering Student Ideas in Science series. The 45 astronomy probes provide situations that will pique your students' interest while helping you understand how your students think about key ideas related to the universe and how it operates. The book is organized into five sections: the Nature of Planet Earth; the Sun-Earth System; Modeling the Moon; Dynamic Solar System; and Stars, Galaxies, and the Universe. As the authors note, it' s not always easy to help students untangle mistaken ideas. Using this powerful set of tools to identify students' preconceptions is an excellent first step to helping your students achieve scientific understanding. |
page keeley science probes: Inspire Science Jay K. Hackett, Page Keeley, Dinah Zike, Richard Moyer, Dorothy J. T. Terman, Douglas Fisher, Jo Anne Vasquez, 2019 Inspire Science is designed to help you spark students' interest and empower them to ask more questions, think more critically, and maximize their ability to creatively solve problems.--Publisher's website |
page keeley science probes: Uncovering Student Ideas in Science: 25 new formative assessment probes Page Keeley, Joyce Tugel, 2009 Wouldn't it be helpful to know what your students' ideas are about a science concept before launching into a new lesson or unit? Uncovering Student Ideas in Science, Volume 4, offers 25 more formative assessment probes to help reveal students' preconceptions of fundamental concepts in science, bringing the total to 100 probes for the popular series by author Page Keeley. Teachers of grades K-12 will find short probes with grade-band specifics that provide easy-to-follow suggestions for addressing students' ideas by promoting learning through conceptual-change instruction. Volume 4 adds to the probes in physical, life, and Earth and space science with a new category called unifying principles. Also covered is a discussion on balancing formative assessment with summative assessment. |
page keeley science probes: Uncovering Student Ideas in Science: 25 more formative assessment probes Page Keeley, Francis Eberle, Joyce Tugel, 2007 The popular features from Volume 1 are all here. The field-tested probes are short, easy to administer, and ready to reproduce. Teacher materials explain science content and suggest grade-appropriate ways to present information. But Volume 2 covers more life science and Earth and space science probes. Volume 2 also suggests ways to embed the probes throughout your instruction, not just when starting a unit or topic. |
page keeley science probes: Uncovering Student Ideas in Physical Science, Volume 1 Page D. Keeley, Rand Harrington, 2010-05-15 This is a must-have book if you're going to tackle the challenging concepts of force and motion in your classroom. -- |
page keeley science probes: Uncovering Student Ideas in Primary Science, Volume 1 Page D. Keeley, 2013-09-15 2014 Winner of the Distinguished Achievement Award from PreK-12 Learning Group, Association of American Publishers! What ideas do young children bring to their science learning, and how does their thinking change as they engage in “science talk”? Find out using the 25 field-tested probes in the newest volume of Page Keeley’s bestselling Uncovering Student Ideas in Science series, the first targeted to grades K–2. This teacher-friendly book is: • Tailored to your needs. The content is geared specifically for the primary grades, with an emphasis on simple vocabulary as well as drawing and speaking (instead of writing). The format of the student pages uses minimal text and includes visual representations of familiar objects, phenomena, or ideas. • Focused on making your lessons more effective. The assessment probes engage youngsters and encourage “science talk” while letting you identify students’ preconceptions before beginning a lesson or monitor their progress as they develop new scientific explanations. • Applicable to a range of science concepts. This volume offers 8 life science probes, 11 physical science probes, and 6 Earth and space science probes that target K–2 disciplinary core ideas. • Ready to use. The book provides grade-appropriate reproducible pages for your students and detailed teacher notes for you, including clear and concise explanations, relevant research, suggestions for instruction, and connections to national standards. Uncovering Student Ideas in Primary Science is an invaluable resource for classroom and preservice teachers and professional development providers. This age-appropriate book will help you teach more effectively by starting with students’ ideas and adapting instruction to support conceptual change. |
page keeley science probes: Science Formative Assessment, Volume 1 Page Keeley, 2015-09-09 Formative assessment informs the design of learning opportunities that take students from their existing ideas of science to the scientific ideas and practices that support conceptual understanding. Science Formative Assessment shows K-12 educators how to weave formative assessment into daily instruction. Discover 75 assessment techniques linked to the Next Generation Science Standards and give classroom practices a boost with: Descriptions of how each technique promotes learning Charts linking core concepts at each grade level to scientific practices Implementation guidance, such as required materials and student grouping Modifications for different learning styles Ideas for adapting techniques to other content areas |
page keeley science probes: Uncovering Student Ideas in Earth and Environmental Science Page Keeley, Laura Tucker, 2016 If you' re new to formative assessment probes, you' ll love this timely addition to the bestselling Uncovering Student Ideas in Science series. Authors Page Keeley and Laura Tucker give you 32 engaging questions, or probes, that can reveal what your students already know-- or think they know-- about core Earth and environmental science concepts. Armed with those insights, you can use the probes' teacher notes to adjust your approach and present the science in grade-appropriate ways so students will learn the content accurately. If you' re among the thousands of educators who love the Uncovering Student Ideas in Science series and crave probes specifically about Earth and environmental science, you' re in luck. The probes are organized into four sections: land and water; water cycle, weather, and climate; Earth history, weathering and erosion, and plate tectonics; and natural resources, pollution, and human impact. The 10th book in this wildly popular, award-winning series offers field-tested teacher materials that provide science background and link to national standards, including the Next Generation Science Standards. The new probes are short, ready to reproduce, and easy to use. Why wait? It' s time to help your students demystify why the ocean is salty, how old the Earth is, and which direction water swirls when it goes down the drain. |
page keeley science probes: Uncovering Student Ideas in Science Page Keeley, 2021-03 Volume 1. This is the newest book in the bestselling Uncovering Student Ideas in Science series. Like the first edition of volume 1, this book helps pinpoint what your students know (or think they know) so you can monitor their learning and adjust your teaching accordingly. Loaded with classroom-friendly features you can use immediately, the book includes 25 probes brief, easily administered formative assessments designed to understand your students thinking about 60 core science concepts. All probes in this new edition are provided in both Spanish and English. The detailed Teacher Notes that accompany each probe have been updated to include current research summaries, connections to A Framework for K 12 Science Education and the Next Generation Science Standards, new instructional suggestions, and related NSTA resources. These teacher materials also explain science content, present developmental considerations, and suggest instructional approaches for elementary, middle, and high school students. Other books may discuss students general misconceptions about scientific ideas. Only this one provides single, reproducible sheets you can use to determine students thinking about, for example, Moon phases, conservation of matter, reflection, chemical change, and cells. All probes have been field-tested with hundreds of students across multiple grade levels, so they re proven effective for helping your students reveal, reexamine, and further develop their understanding of science concepts. |
page keeley science probes: Science Curriculum Topic Study Page Keeley, 2005-02-23 ′Without question, this book will be of great value to the profession of science teaching. Given today′s educational landscape of standards and high-stakes testing, curriculum topic study is an essential piece of the puzzle′ - Cary Sneider, Vice President for Educator Programs, Museum of Science, Boston Discover the missing link between science standards, teacher practice, and improved student achievement! Becoming an accomplished science teacher not only requires a thorough understanding of science content, but also a familiarity with science standards and research on student learning. However, a comprehensive strategy for translating standards and research into instructional, practice has been lacking since the advent of standards-based education reform. Science Curriculum Topic Study provides a systematic professional development strategy that links science standards and research to curriculum, instruction, and assessment. Developed by author Page Keeley of the Maine Mathematics and Science Alliance, the Curriculum Topic Study (CTS) process can help teachers align curriculum, instruction, and assessment with specific, research-based ideas and skills. The CTS process will help teachers: - Improve their understanding of science content - Clarify a hierarchy of content and skills in a learning goal from state or local standards - Define formative and summative assessment goals and strategies - Learn to recognize and address learning difficulties - Increase opportunities for students of all backgrounds to achieve science literacy - Design or utilize instructional materials effectively Containing 147 separate curriculum topic study guides arranged in eleven categories that represent the major domains of science, this book provides the tools to both positively impact student learning and develop the knowledge and skills that distinguish expert science teachers from novices. |
page keeley science probes: Uncovering Student Thinking in Mathematics, Grades K-5 Cheryl Rose Tobey, Leslie Minton, 2010-10-04 This book provides 25 easily administered assessments of learners' math knowledge that help teachers monitor learning in real time and improve all students' math skills. |
page keeley science probes: Science Formative Assessment, Volume 1 Page Keeley, 2015-09-09 Newly Updated! Deepen students’ science knowledge through formative assessment. Formative assessment informs the design of learning opportunities that take students from their existing ideas of science to the scientific ideas and practices that support conceptual understanding. Page Keeley, a nationally known expert in science education, wrote Science Formative Assessment to help educators weave formative assessment into daily instruction and learning. In the second edition, the author provides many new examples, links the strategies to current research as well as the Framework for K-12 Science Education and Next Generation Science Standards, and even shows how these same techniques can be used across other disciplines. Teachers will appreciate 75 formative assessment classroom techniques (FACTs) that include: Descriptions of how each FACT promotes learning and informs instruction Charts linking K-12 core concepts and scientific practices to the 75 FACTs Implementation guidance, such as required materials and student grouping Modifications for different learners and grade spans Links to use in other content areas, including a brief example Use Science Formative Assessment with any science curriculum or state standards to improve and enhance teaching and learning in K-12 science classrooms. |
page keeley science probes: What Are They Thinking? Page Keeley , 2014-04-01 Children are continually developing ideas and explanations about their natural world. … Some of these ideas are consistent with the science children are taught; others differ significantly from scientific explanations. Many of these ideas will follow students into adulthood if they remain hidden from the teacher and unresolved. The challenge for teachers is to find ways to elicit these ideas and then use appropriate strategies to move students’ learning forward.” —Page Keeley, author of the bestselling NSTA Press series Uncovering Student Ideas in Science You don’t have to become a mind reader to understand the ideas young students bring to science class. This collection will help you draw out and then recognize what students know—or think they know—about the natural world. What Are They Thinking? is a compendium of 30 “Formative Assessment Probes” columns from NSTA’s elementary journal Science and Children. Each chapter provides: • A sample formative assessment probe: a set of interesting questions that root out commonly held, often-mistaken ideas. Geared to elementary students, probe topics range from why you can see the Moon in the daytime to where water goes when it evaporates to what is or isn’t a rock. Your students’ answers to each probe will help you take a step back and figure out how to guide them from where they are conceptually to where they need to be. • Accompanying teacher notes: easy-to-grasp explanations and advice that tell you how to encourage evidence-based discussion and then monitor students’ understanding. • A bonus feature: a set of study group questions written especially for this compendium by award-winning author Page Keeley. So forget about acquiring psychic powers. Instead, turn to What Are They Thinking? to transform both your teaching and your students’ learning about science. |
page keeley science probes: Growing Explanations M. Norton Wise, 2004-11-24 For much of the twentieth century scientists sought to explain objects and processes by reducing them to their components—nuclei into protons and neutrons, proteins into amino acids, and so on—but over the past forty years there has been a marked turn toward explaining phenomena by building them up rather than breaking them down. This collection reflects on the history and significance of this turn toward “growing explanations” from the bottom up. The essays show how this strategy—based on a widespread appreciation for complexity even in apparently simple processes and on the capacity of computers to simulate such complexity—has played out in a broad array of sciences. They describe how scientists are reordering knowledge to emphasize growth, change, and contingency and, in so doing, are revealing even phenomena long considered elementary—like particles and genes—as emergent properties of dynamic processes. Written by leading historians and philosophers of science, these essays examine the range of subjects, people, and goals involved in changing the character of scientific analysis over the last several decades. They highlight the alternatives that fields as diverse as string theory, fuzzy logic, artificial life, and immunology bring to the forms of explanation that have traditionally defined scientific modernity. A number of the essays deal with the mathematical and physical sciences, addressing concerns with hybridity and the materials of the everyday world. Other essays focus on the life sciences, where questions such as “What is life?” and “What is an organism?” are undergoing radical re-evaluation. Together these essays mark the contours of an ongoing revolution in scientific explanation. Contributors. David Aubin, Amy Dahan Dalmedico, Richard Doyle, Claus Emmeche, Peter Galison, Stefan Helmreich, Ann Johnson, Evelyn Fox Keller, Ilana Löwy, Claude Rosental, Alfred Tauber |
page keeley science probes: Hen Eggs Takehiko Yamamoto, Lekh Raj Juneja, Hajime Hatta, Mujo Kim, 2018-05-04 The egg is a chemical storehouse-within an incubating egg a complicated set of chemical reactions take place that convert the chemicals into a living animal. Using hen eggs as a model, this new text explores the use of eggs for food, industrial, and pharmaceutical applications. It covers the chemistry, biology, and function of lipids; carbohydrates; proteins; yolk antibody (IgY); and other materials of eggs. The novel merits of egg materials over others used in the same products are also discussed. These areas of egg technology have never been compiled before in one source. |
page keeley science probes: Uncovering Student Ideas in Life Science, Volume 2 PAGE. KEELEY, 2024-09 Author Page Keeley continues to provide K- 12 teachers with her highly usable and popular formula for uncovering and addressing the preconceptions that students bring to the classroom-- the formative assessment probe-- in this first book devoted exclusively to life science in her Uncovering Student Ideas in Science series. In this volume, Keeley addresses the topics of life and its diversity; structure and function; life processes and needs of living things; ecosystems and change; reproduction, life cycles, and heredity; and human biology. Using the probes as diagnostic tools that identify and analyze students' preconceptions, teachers can easily move students from where they are in their current thinking to where they need to be to achieve scientific understanding. At the same time, use of the probes deepens the teacher's understanding of the subject matter, suggests instructional implications, and expands assessment literacy. Using the student-learning data gained through the probes to inform teaching and learning is what makes the probes formative. Each probe is supported by extensive Teacher Notes, which provide background information on the purpose of the probes, related concepts |
page keeley science probes: Science Formative Assessment, Volume 2 Page Keeley, 2014-10-16 Deepen scientific understanding with formative assessment! Only by knowing what your students are thinking can you design learning opportunities that deepen content mastery and meet their individual needs. In this highly engaging resource, internationally respected expert Page Keeley shares 50 new techniques to pinpoint student understanding before, during, and after instruction. In addition to promoting best practices in the classroom, the techniques shared here support learning and link instruction to the Next Generation Science Standards. These flexible assessments can be used with any science curriculum, along with Practical strategies for using the techniques throughout the instruction cycle Considerations for implementation and suggestions for modification An explanation of how each technique promotes learning Examples of how the techniques can be used in different content areas An expert in the field of K-12 science education, Page Keeley is the former president of the National Science Teachers Association, a current Board Member of the National Science Education Leadership Association, and has seventeen best-selling books. Science Formative Assessment, Volume 2 contains a wealth of tools that encourage students to engage in practices such as scientific argumentation and discourse. By emphasizing the alignment of the FACT with Science and Engineering Practices, Keeley provides multiple ways for teachers to monitor more than the disciplinary core ideas being taught. — Susan German, Science Teacher Hallsville R-IV School District, MO Teachers everywhere are spending a lot of time and energy looking for ways to increase student achievement. Well, the answer is not a big secret, nor is it expensive. Fortunately, Page Keeley has an answer. Improved performance lies in using formative assessments as an integral aspect of a lesson. In this book, Keeley shows how 50 formative assessments can lead to greater student success in science. —Douglas Llewellyn, Professor St. John Fisher College, Rochester, NY Other Books from Corwin and Page Keeley: Keeley, Science Formative Assessment ISBN: 9781412941808 Keeley, Math Formative Assessment ISBN: 9781412968126 Keeley, Science Curriculum Topic Study ISBN: 9781412908924 |
page keeley science probes: Mathematics Formative Assessment Page Keeley, Cheryl Rose Tobey, 2011-09-15 There is a substantive body of research that indicates formative assessment can significantly improve student learning. Yet, this same research shows that the features of formative assessment that impact student achievement are sadly missing from many classrooms (Black, et al., 2003). This book provides teachers with guidance and suggestions for using formative assessment to improve teaching and learning in the mathematics classroom, and identifies and describes practical techniques teachers can use to build a rich repertoire of formative assessment strategies. The acronym, FACT, is used to label the techniques included in this book. FACT stands for Formative Assessment Classroom Technique. Through the varied use of FACTs, explicitly tied to a purpose for gathering information about or promoting students' thinking and learning, teachers can focus on what works best for learning and design or modify lessons to fit the needs of the students--Provided by publisher. |
page keeley science probes: Everyday Earth and Space Science Mysteries Richard Konicek-Moran, 2013 What are the odds that a meteor will hit your house? do you actually get more sunlight from Daylight Savings Time? Where do puddles go? By presenting everyday mysteries like these, this book will motivate your students to carry out hands-on science investigations and actually care about the results. These 19 open-ended mysteries focus exclusively on Earth and space science, including astronomy, energy, climate, and geology. The stories come with lists of science concepts to explore, grade-appropriate strategies for using them, and explanations of how the lessons align with national standards. They also relieve you of the tiring work of designing inquiry lesson from scratch. cover verso |
page keeley science probes: Understanding Childrens Ideas in Science Page Keeley, Edward M. Walsh, Jo Williams (Educator), 2021-12 |
page keeley science probes: Science Curriculum Topic Study Page Keeley, Joyce Tugel, 2019-09-11 Today’s science standards reflect a new vision of teaching and learning. | How to make this vision happen Scientific literacy for all students requires a deep understanding of the three dimensions of science education: disciplinary content, scientific and engineering practices, and crosscutting concepts. If you actively engage students in using and applying these three dimensions within curricular topics, they will develop a scientifically-based and coherent view of the natural and designed world. The latest edition of this best-seller, newly mapped to the Framework for K-12 Science Education and the Next Generation Science Standards (NGSS), and updated with new standards and research-based resources, will help science educators make the shifts needed to reflect current practices in curriculum, instruction, and assessment. The methodical study process described in this book will help readers intertwine content, practices, and crosscutting concepts. The book includes: • An increased emphasis on STEM, including topics in science, technology, and engineering • 103 separate curriculum topic study guides, arranged in six categories • Connections to content knowledge, curricular and instructional implications, concepts and specific ideas, research on student learning, K-12 articulation, and assessment Teachers and those who support teachers will appreciate how Curriculum Topic Study helps them reliably analyze and interpret their standards and translate them into classroom practice, thus ensuring that students achieve a deeper understanding of the natural and designed world. |
page keeley science probes: Tools and Traits for Highly Effective Science Teaching, K-8 Jo Anne Vasquez, 2008 A must-have for every elementary science teacher striving to be highly effective and for every support person addressing the needs of science teachers. - Linda Froschauer NSTA President 2006 - 2007 This important book helps us understand the details of effective science instruction in the elementary grades. Our job is to learn from this work and use it as we prepare future teachers and support current teachers as they collaborate to become effective elementary science teachers. - George D. Nelson Director, Science Mathematics and Technology Education, Western Washington University At last, we have a comprehensive resource that can help teachers, administrators, and anyone who deeply cares about the science learning of our children... help elementary teachers become both highly qualified and highly effective teachers of science. - Page Keeley Senior Science Program Director, Maine Mathematics and Science Alliance What does top-notch, learning-centered teaching look like in science? To move from competence to excellence, what should teachers know and be able to do? Tools & Traits for Highly Effective Science Teaching, K - 8 answers those questions and shows you how to make powerful practices part of your science instruction. Even if you have little formal training or background knowledge in science, Tools & Traits for Highly Effective Science Teaching, K - 8 pulls together cognitive and educational research to present an indispensable framework for science in the elementary and middle grades. You'll discover teaching that increases students' engagement and makes them enthusiastic participants in their own science learning. Tools & Traits for Highly Effective Science Teaching, K - 8 answers vital and frequently asked questions: How do you structure inquiry-oriented lessons? What assessment probes and seamless formative assessments work best? What is integration and what is it not? How can literacy be powerfully linked to science learning? How do you manage activity-based learning? How do you provide science for students with various abilities. language proficiencies, and special needs? Its practical, proven, and research-based advice helps you understand what strong science teaching looks like and gives you the repertoire of skills you need to implement it in your classroom. The National Science Education Standards say that everyone deserves to share in the excitement and personal fulfillment that can come from understanding and learning about the natural world. Whether you are reassessing your own teaching or examining it in light of state and federal science-education mandates, Tools & Traits for Highly Effective Science Teaching, K - 8 will make a difference in your teaching and in your students' lives. |
page keeley science probes: Uncovering Student Ideas in Science Page Keeley, 2018 This is the new updated edition of the first book in the bestselling Uncovering Student Ideas in Science series. Like the first edition of volume 1, this book helps pinpoint what your students know (or think they know) so you can monitor their learning and adjust your teaching accordingly. Loaded with classroom-friendly features you can use immediately, the book includes 25 probes -- brief, easily administered formative assessments designed to understand your students' thinking about 60 core science concepts. All probes in this new edition are provided in both Spanish and English. The detailed Teacher Notes that accompany each probe have been updated to include current research summaries, connections to A Framework for K- 12 Science Education and the Next Generation Science Standards, new instructional suggestions, and related NSTA resources. These teacher materials also explain science content, present developmental considerations, and suggest instructional approaches for elementary, middle, and high school students. Other books may discuss students' general misconceptions about scientific ideas. Only this one provides single, reproducible sheets you can use to determine students' thinking about, for example, Moon phases, conservation of matter, reflection, chemical change, and cells. All probes have been field-tested with hundreds of students across multiple grade levels, so they're proven effective for helping your students reveal, reexamine, and further develop their understanding of science concepts. |
page keeley science probes: Uncovering Student Ideas about Engineering and Technology Page Keeley, Cary Ivan Sneider, Mihir Ravel, 2020 This book offers teacher-friendly formative assessment probes to help you reveal preconceptions and misunderstandings that students (and maybe even you) hold. But instead of traditional science disciplines, this book's 32 probes focus on the disciplinary content of engineering and technology, engineering practices, and connections to crosscutting concepts. The probes are organized into four sections that explore what technology and engineering are, how to define problems, and how to design and test solutions. Each section includes a matrix of key ideas and the suggested grade level for each probe. All probes are short, easy to administer, and available in both English and Spanish. You can use them to uncover students' beliefs about everything from the purpose of technology to who can become an engineer to how an engineering design process works-- |
page keeley science probes: Teaching for Conceptual Understanding in Science Richard Konicek-Moran, Page D. Keeley, 2016-06-01 What do you get when you bring together two of NSTA’s bestselling authors to ponder ways to deepen students’ conceptual understanding of science? A fascinating combination of deep thinking about science teaching, field-tested strategies you can use in your classroom immediately, and personal vignettes all educators can relate to and apply themselves. Teaching for Conceptual Understanding in Science is by Richard Konicek-Moran, a researcher and professor who wrote the Everyday Science Mysteries series, and Page Keeley, a practitioner and teacher educator who writes the Uncovering Student Ideas in Science series. Written in an appealing, conversational style, this new book explores where science education has been and where it’s going; emphasizes how knowing the history and nature of science can help you engage in teaching for conceptual understanding and conceptual change; stresses the importance of formative assessment as a pathway to conceptual change; and provides a bridge between research and practice. This is the kind of thought-provoking book that can truly change the way you teach. Whether you read each chapter in sequence or start by browsing the topics in the vignettes, Konicek-Moran and Keeley will make you think—really think—about the major goal of science education in the 21st century: to help students understand science at the conceptual level so they can see its connections to other fields, other concepts, and their own lives. |
page keeley science probes: Supporting Grade 5-8 Students in Constructing Explanations in Science Katherine L. McNeill, Joseph S. Krajcik, 2012 I would encourage others to use [this book] as a resource for a professional learning community or department discussion group and the like... absolutely I would recommend it---why? It is simply good for our students' developing understanding of science...---Pamela M. Pelletier, Senior Program Director, Science K-12, Boston Public Schools, Boston, Massachusetts -- |
page keeley science probes: STEM-Infusing the Elementary Classroom Miranda Talley Reagan, 2016-02-19 Make learning relevant with STEM essential questions This engaging, teacher-friendly guide helps teachers quickly and confidently infuse STEM concepts into all content areas. Real-world vignettes, sample lesson templates, discussion questions and immediately applicable action steps help you seamlessly promote college and career ready skills. Use this inspiring guide to: Deepen all content areas, including English/ Language Arts Promote the 4Cs: communication, collaboration, critical thinking, and creativity Require students to take risks to solve problems Differentiate instruction and scaffold support Expand students’ specific measurable capabilities Incorporate design skills into the curricula Save valuable time and confidently develop standards-aligned STEM projects in all content areas! |
page keeley science probes: Uncovering Student Ideas in Science Page Keeley, Francis Eberle, Joyce Tugel, 2007 |
page keeley science probes: What's Your Evidence? Carla Zembal-Saul, Katherine L. McNeill, Kimber Hershberger, 2013 With the view that children are capable young scientists, authors encourage science teaching in ways that nurture students' curiosity about how the natural world works including research-based approaches to support all K-5 children constructing scientific explanations via talk and writing. Grounded in NSF-funded research, this book/DVD provides K-5 teachers with a framework for explanation (Claim, Evidence, Reasoning) that they can use to organize everything from planning to instructional strategies and from scaffolds to assessment. Because the framework addresses not only having students learn scientific explanations but also construct them from evidence and evaluate them, it is considered to build upon the new NRC framework for K-12 science education, the national standards, and reform documents in science education, as well as national standards in literacy around argumentation and persuasion, including the Common Core Standards for English Language Arts (Common Core State Standards Initiative, 2010).The chapters guide teachers step by step through presenting the framework for students, identifying opportunities to incorporate scientific explanation into lessons, providing curricular scaffolds (that fade over time) to support all students including ELLs and students with special needs, developing scientific explanation assessment tasks, and using the information from assessment tasks to inform instruction. |
page keeley science probes: Forty-five New Force and Motion Assessment Probes Page Keeley, Rand Harrington, 2010 Nationally known science educator Page KeeleyOCoprincipal author of the popular, four-volume NSTA Press series Uncovering Students Ideas in ScienceOCohas teamed up with physicist and science educator Rand Harrington to write this first volume in their new series on physical science. They begin with one of the most challenging topics in physical science: force and motion. The 45 assessment probes in this book enable teachers to find out what students really think about key ideas in force and motion. |
page keeley science probes: Geographies of Power Andrew Herod, Melissa W. Wright, 2008-04-15 At a time when references to things ‘global' have gained more currency than ever, this book explores the nexus of power and space behind the politics of geographical scale. Explores the nexus of power and space behind the rescaling of contemporary social, economic and political life. Organized into three sections on theorizing scale, the discourses and rhetorics of scale, and scales of activism. Will stimulate discussion about how conceptions and visions of scale inform all aspects of social life. |
page keeley science probes: Measurement of Thermal Radiation Properties of Solids Joseph C. Richmond, 1963 |
page keeley science probes: Learning Science by Doing Science Alan Colburn, 2016-12-22 Time-tested activities to teach the key ideas of science—and turn students into scientists! This witty book adapts classic investigations to help students in grades 3 through 8 truly think and act like scientists. Chapter by chapter, this accessible primer illustrates a “big idea” about the nature of science and offers clear links to the Next Generation Science Standards and its Science and Engineering Practices. You’ll also find: A reader-friendly overview of the NGSS Guidance on adapting the activities to your grade level, including communicating instructions, facilitating discussions, and managing safety concerns Case studies of working scientists to highlight specifics about the science and engineering practices |
page keeley science probes: The Feedback Loop Erin Marie Furtak, Howard M. Glasser, Zora M. Wolfe, 2016 The Feedback Loop describes a process by which you design formative assessments of what you do and collect a variety of forms of data. Then, the book shows you ways to actually use the information to improve your teaching. Written by veteran classroom teachers, the guide offers practical ideas for middle and high school teachers, regardless of discipline. The first chapters introduce the Feedback Loop framework; highlight the four elements of goals, tools, data, and inferences; and explore how to close the loop by connecting inferences and goals through feedback. Later chapters show how to use the full loop to inform your instruction. The book supports the Next Generation Science Standards and includes classroom vignettes that ground the ideas in real-life situations. |
page keeley science probes: 39 New Electricity and Magnetism Formative Assessment Probes Page Keeley, Rand Harrington, 2014 If you and your students can't get enough of a good thing, Volume 2 of Uncovering Student Ideas in Physical Science is just what you need. The book offers 39 new formative assessment probes, this time with a focus on electric charge, electric current, and magnets and electromagnetism. It can help you do everything from demystify electromagnetic fields to explain the real reason balloons stick to the wall after you rub them on your hair. Like the other eight wildly popular books in the full series, Uncovering Student Ideas in Physical Science, Volume 2: - Provides a collection of engaging questions, or formative assessment probes. Each probe in this volume is designed to uncover what students know-- or think they know-- about electric or magnetic phenomena or identify misunderstandings they may develop during instruction. - Offers field-tested teacher materials that provide best answers along with distracters designed to reveal misconceptions that students commonly hold. - Is easy to use by time-starved teachers like you. The new probes are short, easy-to-administer activities that come ready to reproduce. In addition to explaining the science content, the teacher materials note links to national standards and suggest grade-appropriate ways to present material so students will learn it accurately. By helping you detect and then make sound instructional decisions to address students' misconceptions, this new volume has the potential to transform your teaching. |
page keeley science probes: Recombinational Repair of DNA Damage Andrei Kuzminov, 1996 |
page keeley science probes: Uncovering Student Thinking About Mathematics in the Common Core, Grades K–2 Cheryl Rose Tobey, Emily R. Fagan, 2013-05-31 Get to the core of your students’ understanding of math! Back by popular demand, Cheryl Tobey and new coauthor Emily Fagan bring you 25 entirely new formative assessment probes—this time specifically for Grades K–2 and directly aligned to the Common Core. Thousands of teachers have already discovered that using probes may be the single-best way to identify students’ understandings and misunderstandings of key math concepts and then follow-up with the most appropriate instructional choices. Organized by strand, the probes will enable you to: Objectively evaluate each child’s prior basic numeracy and math knowledge Systematically address common mistakes and obstacles before they become long-term problems Help students integrate new mathematical ideas and immediately pinpoint areas of struggle Plan targeted instruction that builds on students’ current understandings while addressing their identified difficulties With the help of these probes, K–2 teachers will eliminate once and for all the perception some kids just aren’t good at math and put all students on the path of lifelong proficiency. Tobey and Fagan provide both a roadmap and GPS for navigating the Common Core Standards for Mathematics. In a time when teachers are asked to do more and more, this is a fabulous resource to guide instruction that will meet the needs of individual students. I was so impressed with the content, I found myself taking copious notes as I read. —Roxie R. Ahlbrecht, Math Intervention Specialist Lowell MST, Sioux Falls, SD These probes get to the heart of the Common Core Standards. The Teacher Notes provide valuable guidance on interpreting student results and using the information to inform instruction. —Donna Boucher, K–5 Math Instructional Coach Morton Ranch Elementary School, Katy ISD, Katy, TX |
page keeley science probes: Uncovering Student Thinking in Mathematics Cheryl M. Rose, Leslie Minton, Carolyn Arline, 2006-12-20 Uncovering Student Thinking in Mathematics shows us ways to listen and observe children and their mathematical understandings so we can find better ways to help them take their next learning steps. This book is a gift to educators who ′seek to understand before being understood.′ —From the Foreword by Anne Davies A fresh and unique resource for mathematics teachers who recognize the importance of carefully establishing the starting points of instruction in terms of what students already know. The collection of assessment probes is inventive, engaging for students, and invaluable for teachers. —Richard H. Audet, Associate Professor, Roger Williams University Use formative assessment probes to take the guesswork out of mathematics instruction and improve learning! Students learn at varying rates, and if a misconception in mathematics develops early, it may be carried from year to year and obstruct a student′s progress. To identify fallacies in students′ preconceived ideas, Uncovering Student Thinking in Mathematics offers educators a powerful diagnostic technique in the form of field-tested assessment probes—brief, easily administered activities to determine students′ thinking on core mathematical concepts. Designed to question students′ conceptual knowledge and reveal common understandings and misunderstandings, the probes generate targeted information for modifying mathematics instruction, allowing teachers to build on students′ existing knowledge and individually address their identified difficulties. Linked to National Council of Teachers of Mathematics standards, this invaluable handbook assists educators with: 25 ready-to-use mathematical probes Teacher guides for implementing each probe at any grade level Examples of typical obstacles and faulty thinking demonstrated by students This rich resource combines standards, educational research findings, and practical craft knowledge to help teachers deliver informed instruction that strengthens all students′ learning and achievement in mathematics. |
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Formal Letter Format: How to Write a Formal Letter
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