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Bladt, Don; Murray, Steve; Gitch, Brittany; Trout, Haylee; Liberko, Charles – Journal of Chemical Education, 2011
This undergraduate organic laboratory exercise involves the sulfuric acid-catalyzed conversion of waste vegetable oil into biodiesel. The acid-catalyzed method, although inherently slower than the base-catalyzed methods, does not suffer from the loss of product or the creation of emulsion producing soap that plagues the base-catalyzed methods when…
Descriptors: Fuels, Chemistry, Organic Chemistry, Undergraduate Students
Jaggars, Shanna Smith; Edgecombe, Nikki; Stacey, Georgia West – Community College Research Center, Columbia University, 2013
Student outcomes in online courses trail considerably behind those in face-to-face courses. In order to gain insight into why this might be, the Community College Research Center (CCRC) undertook a series of studies that examined 23 high-demand, entry-level online courses at two community colleges in one state. CCRC researchers observed the online…
Descriptors: Online Courses, Community Colleges, College Faculty, Teacher Student Relationship
Kirschner, P. A. – 1989
The Prime Minister's Committee on Natural Science in Education in Great Britain reported in 1918 that "...in many schools more time is spent in laboratory work than the results obtained can justify." Seventy years later this conclusion can often still be drawn. This is particularly a problem in open distance education where laboratory practicals,…
Descriptors: Academic Achievement, College Science, Experiments, Higher Education

Hounshell, Paul B. – Science Teacher, 1989
Addresses whether or not science laboratory activities should become a thing of the past. Discusses the impact of the curriculum reforms of the 1960s and 1970s, physical restraints which cause teacher overload, rationale, and objectives of laboratory work. (RT)
Descriptors: Elementary School Science, Experiential Learning, Laboratories, Laboratory Experiments

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
Tyler, Vicki, Ed. – 1989
This book, addressed to students for their independent use as well as to teachers as a supplement to the standard texts, contains nearly 100 practical science experiments that cover a wide range of subjects at different grade and ability levels. It is designed to involve students in active scientific experimentation, demonstrations, and projects…
Descriptors: Astronomy, Biology, Botany, Chemistry
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

Schrader, C. L. – Journal of Chemical Education, 1984
Discusses instructional strategies and activities designed to help students learn to recognize patterns and to create models to explain patterns. These include laboratory investigations and an exercise in which students are challenged to find the model used for the classroom seating arrangement. (JN)
Descriptors: Chemistry, High Schools, Models, Pattern Recognition
National Academies Press, 2005
How do you get a fourth-grader excited about history? How do you even begin to persuade high school students that mathematical functions are relevant to their everyday lives? In this volume, practical questions that confront every classroom teacher are addressed using the latest exciting research on cognition, teaching, and learning. How Students…
Descriptors: Learning Processes, History Instruction, Mathematics Instruction, Science Instruction

Sundberg, Marshall – Bioscience, 1991
Reviews the work of the Commission on Undergraduate Education in the Biological Sciences (CUEBS) from 1964 to 1972. Suggests that now is the appropriate time to reassess their efforts, to build on their successes, and to use their experience to attack some of the continuing problems facing biology education. (21 references) (KR)
Descriptors: Biology, Curriculum Development, Educational Change, Evaluation

Goh, N. K.; And Others – Journal of Chemical Education, 1989
Provided is a model to depict how the development of process skills can be systematically achieved and in turn determine the students' achievement in science practicals. Modified laboratory instruction is compared with conventional laboratory instruction. The results of field testing on 164 ninth grade subjects are described. (MVL)
Descriptors: Chemistry, Grade 9, Instructional Effectiveness, Laboratories
United States Patent Model Foundation, Alexander, VA. – 1988
The Invent America program addresses the need to provide K-8 students with opportunities to learn critical and creative thinking skills through the process of inventing. Students apply problem-solving skills as they turn their own creative ideas into inventions. It is an effort to integrate the curriculum, help students synthesize knowledge, and…
Descriptors: Creative Thinking, Creativity, Discovery Processes, Elementary Education
California State Dept. of Education, Sacramento. – 1987
This guide was developed with the intention of helping teachers and school site administrators in California review the elementary science curriculum and compare it to an idealized model that is presented in the document. Part I of the guide provides a summary of a number of characteristics considered to be important to a strong elementary science…
Descriptors: Biological Sciences, Earth Science, Elementary Education, Elementary School Science
United States Patent Model Foundation, Alexander, VA. – 1988
The Invent America program addresses the need to provide K-8 students with opportunities to learn critical and creative thinking skills through the process of inventing. Students apply problem-solving skills as they turn their own creative ideas into inventions. It is an effort to integrate the curriculum, help students synthesize knowledge, and…
Descriptors: Creative Thinking, Creativity, Discovery Processes, Elementary Education
United States Patent Model Foundation, Alexander, VA. – 1988
The Invent America program addresses the need to provide K-8 students with opportunities to learn critical and creative thinking skills through the process of inventing. Students apply problem-solving skills as they turn their own creative ideas into inventions. It is an effort to integrate the curriculum, help students synthesize knowledge, and…
Descriptors: Creative Thinking, Creativity, Discovery Processes, Elementary Education
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