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Kerstiens, Geri Anne – ProQuest LLC, 2019
Recently, there have been many calls for an increase in instruction on the nature of science (NOS) in schools (i.e. NRC, 1996; NGSS Lead States, 2013). These calls recognize the importance of this topic at all levels of science education, but there is little guidance in terms of how to address it effectively in curricula. Similarly, there have…
Descriptors: Scientific Principles, Science Instruction, Chemistry, Science Laboratories
Valauri-Orton, Alexis; Bernd, Karen K. – American Biology Teacher, 2015
For many middle school students, connections between their lives and concepts like chemical reactivity, microbial contamination, and experimental sampling are not obvious. They may also feel that, even if there were connections, understanding the monitoring and quality of natural resources is something for grown-ups and beyond their…
Descriptors: Middle School Students, Secondary School Science, Microbiology, Chemistry
McCann, Florence F.; Marek, Edmund A.; Pedersen, Jon E.; Falsarella, Carell – Science and Children, 2007
With the number of popular medical and forensics programs on television and many references in the media today, even elementary students can comfortably throw around terms such as "cells," "DNA," and "artificial products." However, their questions on these topics often go unanswered, or they are left with misinformation regarding these concepts.…
Descriptors: Academically Gifted, Biological Sciences, Elementary School Science, Science Curriculum
Hiebert, Clyde – 1992
For various reasons, students do not have access to laboratory facilities and yet need courses in the laboratory sciences such as chemistry. This paper describes "Outreach Chemistry," a course developed to provide a chemistry laboratory experience for students attending schools that lack science laboratories. Designed for off-campus students whose…
Descriptors: Chemistry, Curriculum Development, Higher Education, Instructional Innovation

Science and Children, 1978
Urges the use of the immediate environment of the school to serve as a focus and a medium to help plan activities and experiments in the different subject areas of science, and in the area of environment. (GA)
Descriptors: Curriculum Development, Elementary Education, Elementary School Science, Environment

Jones, S. T.; Alexander, C. – American Journal of Physics, 1973
Descriptors: College Science, Curriculum Development, Electric Circuits, Instructional Materials

Tolley, S. Gregory; Everham, Edwin M., III; McDonald, Michael R.; Savarese, Mike – Journal of College Science Teaching, 2002
Uses a university campus as the focus for a study of the entire watershed. Presents a context for incorporating pedagogical elements, interdisciplinary teaching, research experience, and active, collaborative strategies into a useful framework for undergraduate science education. (Author/KHR)
Descriptors: Curriculum Development, Earth Science, Environmental Education, Higher Education

Kurz, James S. – Science Teacher, 2001
Describes the Connecticut Academic Performance Test (CAPT) and explains the reasons for a curriculum change. Introduces CAPT-style labs which require students to identify a problem, ask questions, develop a hypothesis, design and conduct an experiment, analyze data, and draw conclusions. (YDS)
Descriptors: Academic Achievement, Curriculum Development, High Schools, Inquiry

Roth, Wolff-Michael – Science and Education, 1997
Illustrates how teachers designed new science learning environments based on research readings from science and technology studies and studied teaching and learning within these environments. Examples of students' science-related activities include videotaped laboratory activities, taped interviews, and student-produced artifacts collected over…
Descriptors: Classroom Research, Curriculum Design, Curriculum Development, Elementary Secondary Education

Crawford, Frank S. – American Journal of Physics, 1973
Descriptors: College Science, Curriculum Development, Demonstrations (Educational), Instructional Materials

Iatridis, Mary – Science and Children, 1981
Describes a preschool science-based curriculum which encompasses four broad topics: water, small creatures, gadgetry, and environmental terraria. Includes a description and list of activities for each topic. Presents research suggesting that children participating in this curriculum increased their self-directed discovery and verbalized curiosity.…
Descriptors: Curriculum Development, Elementary Education, Instructional Materials, Preschool Education
Moomaw, Sally; Hieronymus, Brenda – 1997
Science curricula typically do not capitalize on the hands-on, self-initiated learning style of young children. This book provides a comprehensive, developmentally appropriate approach to science education with young children, with special attention to physics and chemistry. The book's introductory chapter is followed by chapters on: (1) science…
Descriptors: Chemistry, Curriculum Development, Developmentally Appropriate Practices, Early Childhood Education
Roberts, Douglas A.; And Others – 1986
This manual is organized around the concept of chemical change as used to explain everyday phenomena. It concentrates on three interrelated aspects of chemical change: (l) scientific knowledge; (2) technological applications; and (3) societal issues. The unit is divided into four episodes or segments of instruction with suggested time allotments.…
Descriptors: Chemical Reactions, Chemistry, Curriculum Development, Grade 10
Goodman, Jan; Sneider, Cary; Gould, Alan; Barber, Jacqueline; Hosoume, Kimi; Tucker, Laura; Willard, Carolyn – 1997
For many educators, gathering, organizing, and maintaining materials involved in inquiry-based science and math activities can seem daunting. This handbook is designed to help teachers in the task of gathering and maintaining materials to make kits for 42 activities derived from the Great Explorations in Math and Science (GEMS) Program at the…
Descriptors: Activity Units, Course Content, Curriculum Development, Elementary Secondary Education

Policoff, Ivan – Journal of College Science Teaching, 1990
Discussed is the use of volunteers to teach an astronomy laboratory course. Amateur astronomy groups were recruited to help teach this course. Advantages of using volunteers are listed. A list of student field experiences is included. (KR)
Descriptors: Astronomy, College Science, Course Descriptions, Curriculum Development
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