National Science Foundation Curriculum Development and Implementation for Pre-college Science Education
Author:
Publisher:
Published: 1975
Total Pages: 318
ISBN-13:
DOWNLOAD EBOOKRead and Download eBook Full
Author:
Publisher:
Published: 1975
Total Pages: 318
ISBN-13:
DOWNLOAD EBOOKAuthor: National Science Foundation (U.S.). Directorate for Science Education. Office of Program Integration
Publisher:
Published: 1980
Total Pages: 232
ISBN-13:
DOWNLOAD EBOOKAuthor:
Publisher:
Published: 1975
Total Pages: 332
ISBN-13:
DOWNLOAD EBOOKAuthor: United States. Congress. House. Committee on Science and Technology
Publisher:
Published: 1977
Total Pages: 366
ISBN-13:
DOWNLOAD EBOOKAuthor: United States. Congress. House. Committee on Science and Technology
Publisher:
Published: 1977
Total Pages: 408
ISBN-13:
DOWNLOAD EBOOKAuthor: United States. Congress. House. Committee on Science and Technology. Subcommittee on Science, Research, and Technology
Publisher:
Published: 1976
Total Pages: 932
ISBN-13:
DOWNLOAD EBOOKAuthor:
Publisher:
Published: 1978
Total Pages: 168
ISBN-13:
DOWNLOAD EBOOKAuthor:
Publisher:
Published: 1976
Total Pages: 1932
ISBN-13:
DOWNLOAD EBOOKAuthor: United States. Superintendent of Documents
Publisher:
Published: 1976
Total Pages: 1466
ISBN-13:
DOWNLOAD EBOOKAuthor: Şenay Purzer
Publisher: Purdue University Press
Published: 2014
Total Pages: 469
ISBN-13: 1557536910
DOWNLOAD EBOOKIn science, technology, engineering, and mathematics (STEM) education in pre-college, engineering is not the silent "e" anymore. There is an accelerated interest in teaching engineering in all grade levels. Structured engineering programs are emerging in schools as well as in out-of-school settings. Over the last ten years, the number of states in the US including engineering in their K-12 standards has tripled, and this trend will continue to grow with the adoption of the Next Generation Science Standards. The interest in pre-college engineering education stems from three different motivations. First, from a workforce pipeline or pathway perspective, researchers and practitioners are interested in understanding precursors, influential and motivational factors, and the progression of engineering thinking. Second, from a general societal perspective, technological literacy and understanding of the role of engineering and technology is becoming increasingly important for the general populace, and it is more imperative to foster this understanding from a younger age. Third, from a STEM integration and education perspective, engineering processes are used as a context to teach science and math concepts. This book addresses each of these motivations and the diverse means used to engage with them.Designed to be a source of background and inspiration for researchers and practitioners alike, this volume includes contributions on policy, synthesis studies, and research studies to catalyze and inform current efforts to improve pre-college engineering education. The book explores teacher learning and practices, as well as how student learning occurs in both formal settings, such as classrooms, and informal settings, such as homes and museums. This volume also includes chapters on assessing design and creativity.