Course and Curriculum Improvement Projects: Mathematics, Science, Social Sciences
Author | : National Science Foundation (U.S.) |
Publisher | : |
Total Pages | : 132 |
Release | : 1966 |
Genre | : |
ISBN | : |
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Author | : National Science Foundation (U.S.) |
Publisher | : |
Total Pages | : 132 |
Release | : 1966 |
Genre | : |
ISBN | : |
Author | : National Research Council |
Publisher | : National Academies Press |
Total Pages | : 70 |
Release | : 1999-11-15 |
Genre | : Education |
ISBN | : 0309185629 |
With the publication of the National Science Education Standards and the National Council of Teachers of Mathematics' Curriculum and Evaluation Standards for School Mathematics, a clear set of goals and guidelines for achieving literacy in mathematics and science was established. Designing Mathematics or Science Curriculum Programs has been developed to help state- and district-level education leaders create coherent, multi-year curriculum programs that provide students with opportunities to learn both mathematics and science in a connected and cumulative way throughout their schooling. Researchers have confirmed that as U.S. students move through the grade levels, they slip further and further behind students of other nations in mathematics and science achievement. Experts now believe that U.S. student performance is hindered by the lack of coherence in the mathematics and science curricula in many American schools. By structuring curriculum programs that capitalize on what students have already learned, the new concepts and processes that they can learn will be richer, more complex, and at a higher level. Designing Mathematics or Science Curriculum Programs outlines: Components of effective mathematics and science programs. Criteria by which these components can be judged. A process for developing curriculum that is structured, focused, and coherent. Perhaps most important, this book emphasizes the need for designing curricula across the entire 13-year span that our children spend in elementary and secondary school as a way to improve the quality of education. Ultimately, it will help state and district educators use national and state standards to design or re-build mathematics and science curriculum programs that develop new ideas and skills based on earlier onesâ€"from lesson to lesson, unit to unit, year to year. Anyone responsible for designing or influencing mathematics or science curriculum programs will find this guide valuable.
Author | : Grant P. Wiggins |
Publisher | : ASCD |
Total Pages | : 383 |
Release | : 2005 |
Genre | : Education |
ISBN | : 1416600353 |
What is understanding and how does it differ from knowledge? How can we determine the big ideas worth understanding? Why is understanding an important teaching goal, and how do we know when students have attained it? How can we create a rigorous and engaging curriculum that focuses on understanding and leads to improved student performance in today's high-stakes, standards-based environment? Authors Grant Wiggins and Jay McTighe answer these and many other questions in this second edition of Understanding by Design. Drawing on feedback from thousands of educators around the world who have used the UbD framework since its introduction in 1998, the authors have greatly revised and expanded their original work to guide educators across the K-16 spectrum in the design of curriculum, assessment, and instruction. With an improved UbD Template at its core, the book explains the rationale of backward design and explores in greater depth the meaning of such key ideas as essential questions and transfer tasks. Readers will learn why the familiar coverage- and activity-based approaches to curriculum design fall short, and how a focus on the six facets of understanding can enrich student learning. With an expanded array of practical strategies, tools, and examples from all subject areas, the book demonstrates how the research-based principles of Understanding by Design apply to district frameworks as well as to individual units of curriculum. Combining provocative ideas, thoughtful analysis, and tested approaches, this new edition of Understanding by Design offers teacher-designers a clear path to the creation of curriculum that ensures better learning and a more stimulating experience for students and teachers alike.
Author | : Jay McTighe |
Publisher | : ASCD |
Total Pages | : 66 |
Release | : 2015-04-14 |
Genre | : Education |
ISBN | : 1416620443 |
Curriculum design experts Jay McTighe and Grant Wiggins have reviewed thousands of curriculum documents and unit plans across a range of subjects and grades. In this book, they identify and describe the 25 most common problems in unit design and recommend how to fix them--and avoid them when planning new units. McTighe and Wiggins, creators of the Understanding by Design® framework, help you use the process of backward design to troubleshoot your units and achieve tighter alignment and focus on learning priorities. Whether you're working with local or national standards or with other learning goals, you can rely on their practical and proven solutions to promote deeper and better learning for your students.
Author | : Wang, Victor C. X. |
Publisher | : IGI Global |
Total Pages | : 501 |
Release | : 2014-03-31 |
Genre | : Education |
ISBN | : 1466658738 |
Todays ever-changing learning environment is characterized by the fast pace of technology that drives our society to move forward, and causes our knowledge to increase at an exponential rate. The need for in-depth research that is bound to generate new knowledge about curriculum and program development is becoming ever more relevant. Andragogical and Pedagogical Methods for Curriculum and Program Development offers an in-depth description of key terms and concepts related to curriculum and program development for both faculty and students, as well as program designers, instructional program developers, trainers, and librarians.
Author | : National Research Council |
Publisher | : National Academies Press |
Total Pages | : 190 |
Release | : 2015-03-27 |
Genre | : Education |
ISBN | : 0309305152 |
A Framework for K-12 Science Education and Next Generation Science Standards (NGSS) describe a new vision for science learning and teaching that is catalyzing improvements in science classrooms across the United States. Achieving this new vision will require time, resources, and ongoing commitment from state, district, and school leaders, as well as classroom teachers. Successful implementation of the NGSS will ensure that all K-12 students have high-quality opportunities to learn science. Guide to Implementing the Next Generation Science Standards provides guidance to district and school leaders and teachers charged with developing a plan and implementing the NGSS as they change their curriculum, instruction, professional learning, policies, and assessment to align with the new standards. For each of these elements, this report lays out recommendations for action around key issues and cautions about potential pitfalls. Coordinating changes in these aspects of the education system is challenging. As a foundation for that process, Guide to Implementing the Next Generation Science Standards identifies some overarching principles that should guide the planning and implementation process. The new standards present a vision of science and engineering learning designed to bring these subjects alive for all students, emphasizing the satisfaction of pursuing compelling questions and the joy of discovery and invention. Achieving this vision in all science classrooms will be a major undertaking and will require changes to many aspects of science education. Guide to Implementing the Next Generation Science Standards will be a valuable resource for states, districts, and schools charged with planning and implementing changes, to help them achieve the goal of teaching science for the 21st century.
Author | : Olle ten Cate |
Publisher | : Springer |
Total Pages | : 208 |
Release | : 2017-11-06 |
Genre | : Education |
ISBN | : 3319648284 |
This book is open access under a CC BY 4.0 license. This volume describes and explains the educational method of Case-Based Clinical Reasoning (CBCR) used successfully in medical schools to prepare students to think like doctors before they enter the clinical arena and become engaged in patient care. Although this approach poses the paradoxical problem of a lack of clinical experience that is so essential for building proficiency in clinical reasoning, CBCR is built on the premise that solving clinical problems involves the ability to reason about disease processes. This requires knowledge of anatomy and the working and pathology of organ systems, as well as the ability to regard patient problems as patterns and compare them with instances of illness scripts of patients the clinician has seen in the past and stored in memory. CBCR stimulates the development of early, rudimentary illness scripts through elaboration and systematic discussion of the courses of action from the initial presentation of the patient to the final steps of clinical management. The book combines general backgrounds of clinical reasoning education and assessment with a detailed elaboration of the CBCR method for application in any medical curriculum, either as a mandatory or as an elective course. It consists of three parts: a general introduction to clinical reasoning education, application of the CBCR method, and cases that can used by educators to try out this method.
Author | : National Research Council |
Publisher | : National Academies |
Total Pages | : 361 |
Release | : 1989-02-01 |
Genre | : Education |
ISBN | : 0309040280 |
Biology is where many of science's most exciting and relevant advances are taking place. Yet, many students leave school without having learned basic biology principles, and few are excited enough to continue in the sciences. Why is biology education failing? How can reform be accomplished? This book presents information and expert views from curriculum developers, teachers, and others, offering suggestions about major issues in biology education: what should we teach in biology and how should it be taught? How can we measure results? How should teachers be educated and certified? What obstacles are blocking reform?
Author | : David E. Kern |
Publisher | : Johns Hopkins University Press |
Total Pages | : 0 |
Release | : 2009-10-22 |
Genre | : Medical |
ISBN | : 9780801893667 |
Curriculum Development for Medical Education is designed for use by curriculum developers and others who are responsible for the educational experiences of medical students, residents, fellows, and clinical practitioners. Short, practical, and general in its approach, the book begins with a broad overview of the subject. Each succeeding chapter covers one of the six steps: problem identification and general needs assessment, targeted needs assessment, goals and objectives, educational strategies, implementation, and evaluation. Additional chapters address curriculum maintenance, enhancement, and dissemination. The six-step approach outlined here has evolved over the past twenty years, during which time the authors have taught curriculum development and evaluation skills to faculty and fellows in the Johns Hopkins University Faculty Development Program for Clinician-Educators. Program participants have used the techniques described to develop curricula on such diverse topics as preclerkship skills building, clinical reasoning and shared decision making, outpatient internal medicine, musculoskeletal disorders, office gynecology for the generalist, chronic illness and disability, geriatrics for nongeriatric faculty, surgical skills assessment, laparoscopic surgical skills, cross-cultural competence, and medical ethics. This thoroughly revised edition includes a broad discussion of competencies mandated by the Accreditation Council for Graduate Medical Education and other bodies, current information on education technology, increased emphasis on scholarships related to curriculum development, and advice on obtaining institutional review board approval. Updated examples throughout the book illustrate major points. The expanded appendixes include samples of complete curricula and information on funding, faculty development, and curricular resources.
Author | : Noel Sobejana |
Publisher | : |
Total Pages | : 32 |
Release | : 2020-11-20 |
Genre | : |
ISBN | : 9783346342430 |
Academic Paper from the year 2017 in the subject Instructor Plans: Pedagogy / Education / Consultation, course: DOCTOR OF PHILOSOPHY IN EDUCATION ADMINISTRATION MAJOR IN HIGHER EDUCATION ADMINISTRATION, language: English, abstract: This study is a curriculum development plan for the program offered by in the department specifically the Bachelor of Science in Information Technology program. As the first ever Center of Development in the city it is the obligation of the institution to be the pioneering in the change and to adopt to the change which is the promotion of graduates and their outcomes. The major purpose of this Curriculum Improvement Plan (CIP) is solution of the author in the three major challenges change in the educational system in Philippine context. This plan aims to enhance the curriculum of the Bachelor of Science in Information Technology to ensure community improvement by providing quality manpower. The specific purposes of this Curriculum Improvement Plan that this paper sought to provide solutions and processes are; (1) Integrate the new direction of the CHED on the Outcomes-Based Education based on the philosophy of OBE and the institutions; (2) Consider the implementation of DepEd on K to 12 graduates in the year 2018 in aligning it to the curriculum. (3) Revisit the general education subjects of the program adopting the CMO No. 20, s. 2013 on the revised guidelines in the formulation of the CHED Policies, Standards, and Guidelines of Academic Programs; and (4) Insure the integration of the philosophy of the institution and core values in each course that is reflected in the curriculum.