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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
Winkelmann, Kurt; Baloga, Monica; Marcinkowski, Tom; Giannoulis, Christos; Anquandah, George; Cohen, Peter – Journal of Chemical Education, 2015
Research projects conducted by faculty in STEM departments served as the inspiration for a new curriculum of inquiry-based, multiweek laboratory modules in the general chemistry 1 course. The purpose of this curriculum redesign was to improve students' attitudes about chemistry as well as their self-efficacy and skills in performing inquiry…
Descriptors: Inquiry, Science Process Skills, Skill Development, Self Efficacy
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

Howard, Robert E.; And Others – Journal of Chemical Education, 1989
Describes a year long laboratory program for third, fourth, and fifth graders. States the goal of the program is to demonstrate what chemistry is, how it is done, and why it is fun and interesting. Provides a syllabus of the experiments and lists educational objectives. (MVL)
Descriptors: Chemical Reactions, Chemistry, Curriculum Development, Elementary Education
Steinfeld, J. I. – J Chem Educ, 1969
Descriptors: Chemistry, College Science, Curriculum Development, Laboratory Experiments

Gregory, J. M. – Physics Education, 1974
Describes teaching schemes and apparatus designed to give the teacher and the student a range of reliable, workable experiments to explore the world of small static charges. (GS)
Descriptors: Curriculum Development, Electricity, Equipment, Laboratory Experiments
Caulton, Eric – J Biol Educ, 1970
Discusses teaching ecology in high schools in terms of kinds of problems suitable for study and management of field and laboratory activities. (EB)
Descriptors: Biology, Curriculum Development, Ecology, Field Trips
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

Dowling, John, Jr. – American Journal of Physics, 1975
Presents the advantages and disadvantages associated with the canned computer lab from the educational and software aspects. Summarizes two years of experience with canned labs and gives an example of a program and a typical student output. (GS)
Descriptors: College Science, Computer Assisted Instruction, Curriculum Development, Higher Education
Belfield, W.; Dearden, M. – 1971
This book presents an experimental approach to the teaching of biology in secondary schools. Starting with a unit on microscopy, the study centers on animals. The two particular examples taken are those of the rat and the rabbit. A number of experiments have been suggested on nutrition, circulation, respiration, sweat, excretion, skin, regulation…
Descriptors: Biology, Curriculum, Curriculum Development, Curriculum Guides

Crawford, F. W.; Ilic, D. B. – American Journal of Physics, 1976
The evolution of a laboratory oriented undergraduate plasma physics course is described. Brief accounts of the 14 experiments utilized in the course are provided. (CP)
Descriptors: College Science, Course Descriptions, Curriculum Development, Higher Education

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

Pines, E.; And Others – Journal of Chemical Education, 1973
Summarizes the thermodynamics of macromolecular systems, including theories and experiments of cyclic energy conversion with rubber and collagen as working substances. Indicates that an early introduction into the concept of chemical potential and solution thermodynamics is made possible through the study of the cyclic processes. (CC)
Descriptors: Chemistry, College Science, Curriculum Development, Instruction

Bergeson, Haven E. – American Journal of Physics, 1975
Describes a one-quarter introductory electronics course in which the students use a variety of inexpensive integrated circuits to design and construct a large number of useful circuits. Presents the subject matter of the course in three parts: linear circuits, digital circuits, and more complex circuits. (GS)
Descriptors: College Science, Course Content, Course Descriptions, Curriculum Development