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This framework describes a developmental, sequential, age-appropriate physical education program designed to provide students of all ages with the knowledge and ability needed to maintain an active, healthy life-style. Three major goals of the curriculum are that students should: (1) develop effective motor skills and understand the fundamentals of movement by practicing and analyzing purposeful movement; (2) develop and maintain a positive self-image and strive to achieve personal excellence in planned physical activities; and (3) develop appropriate social behaviors by working independently and with others during planned physical activity. The guide, divided into six chapters, provides concepts and strategies that form the foundation of a comprehensive physical education system for kindergarten through grade 12. The chapter titles are: (1) "A Vision for Physical Education"; (2) "Goals and Disciplines for the Physical Education Curriculum"; (3) "Physical Education Guidelines for Kindergarten through Grade 12"; (4) "Environment Needed for a Quality Physical Education Program"; (5) "Quality Instruction in Physical Education"; and (6) "Criteria for Evaluating Instructional Resources." A definition and outcomes of the physically educated person, a program advisory clarifying adapted physical education program services, and a list of publications available from the California Department of Education are appended. (LL)
Educational linguistics is transcultural, with research in the field adopting an international scope. Educational systems, on the contrary, are culture-bound. As a consequence, actual teaching differs across countries, and sometimes even among provinces, local educational authorities, and schools. However, a globalized world needs to share the various meanings of “knowing a language” and “teaching a language”, as language is the main factor of both cultural identity and national and international interaction. The framework offered here is built on eight “hypotheses”, logical models that provide the potential common core of a non-culture-bound theory of language education and of language teaching. The book thus suggests a common terminology, some common principles, and a basic paradigm to be shared in both theoretical and practical research in edu-linguistics, consequently going beyond the borders implied by such titles as European framework, American standards, and Chinese guidelines.
This framework emphasizes health literacy for students, i.e., development of the knowledge, skills, and behaviors needed for healthy living. The framework defines four unifying ideas of health literacy that serve as central themes for all content areas and grade levels: (1) acceptance of personal responsibility for lifelong health; (2) respect for and promotion of the health of others; (3) an understanding of the process of growth and development; (4) informed use of health-related information, products, and services; and (5) promotion of health education supported by a comprehensive school health system and sustained by the collaborative efforts of school, family, and community. Seven chapters are organized as follows: (1) "The Vision: Health Literacy, Healthy Schools, Healthy People"; (2) Developing Health Literacy in the Classroom and in the School"; (3) "Health Education"; (4) "Beyond Health Education"; (5) "Assessment of Health Literacy"; (6) "Criteria for Evaluating Instructional Resources"; and (7) "Integration with Other Disciplines." Selected Education Code sections, a paper titled "Integrated Services Center Links School, Family and Community" (Andrea Zetlin and Robert Bilovsky), Project Teach recommendations on preservice teacher training in health education, and a list of publications available from the California Department of Education are appended. (LL)
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.
Represents the content of science education and includes the essential skills and knowledge students will need to be scientically literate citizens. Includes grade-level specific content for kindergarten through eighth grade, with sixth grade focus on earth science, seventh grade focus on life science, eighth grade focus on physical science. Standards for grades nine through twelve are divided into four content strands: physics, chemistry, biology/life sciences, and earth sciences.
Anti-bias education begins with you! Become a skilled anti-bias teacher with this practical guidance to confronting and eliminating barriers.