Teaching, Learning and Assessing Science 5 - 12


Book Description

This thoroughly revised and completely up-to-date new edition provides an excellent theoretical framework for teaching science that is firmly grounded in classroom practice and covers all stages of education for students aged 5 to 12. Wynne Harlen details a constructivist view of learning, which recognises that children already have ideas about the world in which they live, and gives advice on how teachers can help children to develop their understanding and change their perception to a more scientific view. A particular feature is the focus on formative assessment as a framework for discussion on how to help students develop their understanding, enquiry skills and positive attitudes to scientific investigation.




Teaching, Learning & Assessing Science 5-12


Book Description

A new and totally revised edition of Teaching and Learning Primary Science. The author provides a theoretical rationale for why science should be taught in particular ways, and ideas and examples of how to do it.




Teaching, Learning and Assessing Science 5 - 12


Book Description

`Professor Harlen has, once again, provided the leading text on primary science. This eminently readable book sets out a clear account of our understanding of learning, teaching and assessment and, through the skilful use of examples, explores the implications of this for science teachers of pupils aged five to 12. By emphasizing the importance of research evidence and the way in which it should underpin practice, this new edition challenges everyone involved in science education to reflect again on whether we are providing the most appropriate learning opportunities for our pupils. It is certainly a book which will be highly recommended, referred to on many occasions and used extensively′ - Dr Derek Bell, Chief Executive, The Association for Science Education This thoroughly revised and completely up-to-date new edition provides an excellent theoretical framework for teaching science that is firmly grounded in classroom practice and covers all stages of education for students aged five to 12 years. The author details a constructivist view of learning, which recognizes that children already have ideas about the world in which they live, and gives advice on how teachers can help children to develop their understanding and change their perception to a more scientific view. A particular feature is the focus on formative assessment as a framework for discussion on how to help students develop their understanding, enquiry skills and positive attitudes to scientific investigation. The wide range of topics covered include: The nature of students′ learning in science The goals of science education Gathering and interpreting information about students′ ′s ideas Helping development of scientific ideas Gathering and interpreting evidence of students′ enquiry skills and attitudes Strategies for helping development of students′ qnquiry skills and attitudes The learner′s role in learning Summarising and reporting learning Motivating learning Teachers and children′s questions Resources for learning science Managing science in the school Each chapter features useful summaries, points for reflection and further reading, making this acclaimed book indispensable reading for all primary and practitioners and students who want a book that will authoritatively inform, inspire and instruct their science teaching.




Assessing Science Understanding


Book Description

Recent government publications like "Benchmarks for Scientific Literacy" and "Science for all Americans" have given teachers a mandate for improving science education in America. What we know about how learners construct meaning--particularly in the natural sciences--has undergone a virtual revolution in the past 25 years. Teachers, as well as researchers, are now grappling with how to better teach science, as well as how to assess whether students are learning. Assessing Science Understanding is a companion volume to Teaching Science for Understanding, and explores how to assess whether learning has taken place. The book discusses a range of promising new and practical tools for assessment including concept maps, vee diagrams, clinical interviews, problem sets, performance-based assessments, computer-based methods, visual and observational testing, portfolios, explanatory models, and national examinations.




Assessing Science Learning


Book Description




Educational Assessment


Book Description

This book explores and builds on the extraordinary work of Professor Paul Black across assessment and pedagogy across the curriculum, including STEM, humanities and social science subjects. This book explores the influence that Black has had within educational settings focusing on interpretations of the work and scholarship he has achieved across a range of settings and on the ways scholars, who have worked with him or been influenced by his ideas, have developed their research and teaching. The contributions are presented under three thematic sections, each of which reflects a set of shared educational concerns and values drawing on the natural and social sciences and developments in public policy. These concerns and values, with their emphasis on teacher assessment, provide a basis for a strategic, informed and coherent response to challenges in education, such as the cancellation of public examinations in the face of the Covid-19 pandemic.




A Framework for K-12 Science Education


Book Description

Science, engineering, and technology permeate nearly every facet of modern life and hold the key to solving many of humanity's most pressing current and future challenges. The United States' position in the global economy is declining, in part because U.S. workers lack fundamental knowledge in these fields. To address the critical issues of U.S. competitiveness and to better prepare the workforce, A Framework for K-12 Science Education proposes a new approach to K-12 science education that will capture students' interest and provide them with the necessary foundational knowledge in the field. A Framework for K-12 Science Education outlines a broad set of expectations for students in science and engineering in grades K-12. These expectations will inform the development of new standards for K-12 science education and, subsequently, revisions to curriculum, instruction, assessment, and professional development for educators. This book identifies three dimensions that convey the core ideas and practices around which science and engineering education in these grades should be built. These three dimensions are: crosscutting concepts that unify the study of science through their common application across science and engineering; scientific and engineering practices; and disciplinary core ideas in the physical sciences, life sciences, and earth and space sciences and for engineering, technology, and the applications of science. The overarching goal is for all high school graduates to have sufficient knowledge of science and engineering to engage in public discussions on science-related issues, be careful consumers of scientific and technical information, and enter the careers of their choice. A Framework for K-12 Science Education is the first step in a process that can inform state-level decisions and achieve a research-grounded basis for improving science instruction and learning across the country. The book will guide standards developers, teachers, curriculum designers, assessment developers, state and district science administrators, and educators who teach science in informal environments.




Assessment of Learning


Book Description

This book takes a critical look at how students′ achievements are assessed for a range of purposes, from reporting progress to selection and qualification. It considers the relationship between what is taught, and how, and what and how learning outcomes are assessed. The impact of using assessment results for setting targets and evaluation of provision for learning is also discussed. The pros and cons of using tests and examinations and alternatives based on the judgments of teachers are considered in terms of four key criteria: validity, reliability, impact and required resources. Evidence from research and examples of current practice in different countries within and outside the UK support the case for making more and better use of teachers′ judgments in assessment of learning. In this way assessment of learning (summative assessment) can be compatible with assessment for learning (formative assessment).




Science


Book Description




Assessing Student Understanding in Science


Book Description

Assessment, when integrated with instruction, can provide a basis for restructuring science education. The National Science Education Standards are incorporated into this guide to assessing student understanding in science. Chapters include: (1) "Assessment Based on Six Domains of Science," which organizes an assessment framework for science learning and experiences around six domains which include concepts, processes, applications, positive attitudes, creativity, and the nature of science; (2) "Assessment in the Context of Teaching" in which different types of assessment are tested in the context of teaching; (3) "Evaluating Teaching Practice" in which possibilities for assessing teaching practice are addressed; (4) "Rubrics and Scoring Guides" which describes the ideas for designing schemes to evaluate student work; (5) "Assessment Examples for All Grade Levels," which provides examples of students' self assessment for all grade levels; (6) "Assessment Samples for Grades K through 4," which includes examples of self assessment and applying process skills and experimental design; (7) "Assessment Examples for Grades 5 through 8," which features examples recommended for grades 5 through 8; and (8) "Assessment Examples for Grades 9 through 12," which presents assessment for Grades 9 through 12. (YDS)