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Replicating and Understanding Successful Innovations: Implementing Tutorials in Introductory Physics
Finkelstein, N. D.; Pollock, S. J. – Physical Review Special Topics - Physics Education Research, 2005
We report a detailed study of the implementation of "Tutorials in Introductory Physics" at a large-scale research institution. Based on two successive semesters of evaluation, we observe students' improved conceptual mastery (force and motion concept evaluation median normalized gain 0.77, N=336 ), albeit with some student discontent. We replicate…
Descriptors: Physics, Introductory Courses, Instructional Innovation, Teaching Methods
Hsieh, Yi-Chuan Jane; Cifuentes, Lauren – Educational Technology & Society, 2006
Mixed methods were adopted to explore the effects of student-generated visualization on paper and on computers as a study strategy for middle school science concept learning. In a post-test-only-control-group design, scores were compared among a control-group (n=28), a group that was trained to visualize on paper (n=30), and a group that was…
Descriptors: Control Groups, Study Habits, Scientific Concepts, Concept Teaching
Wefer, Stephen H. – American Biology Teacher, 2003
"Name That Gene" is a simple classroom activity that incorporates bioinformatics (available biological information) into the classroom using "Basic Logical Alignment Search Tool (BLAST)." An excellent classroom activity involving bioinformatics and "BLAST" has been previously explored using sequences from bacteria, but it is tailored for college…
Descriptors: Heredity, Scientific Research, Genetics, Scientific Literacy
Moreland, Judy; Jones, Alister; Cowie, Bronwen – Teaching Education, 2006
Biotechnology is an expanding area of scientific and community interest, one that it is important students understand because of its potential to impact on them and their communities. The issue for teachers and science and technology educators is how to provide learning experiences in this area. This paper draws on classroom-based research to…
Descriptors: Student Interests, Biotechnology, Pedagogical Content Knowledge, Classroom Research
Cacciatore, Kristen L.; Sevian, Hannah – Journal of Chemical Education, 2006
We present an alternative to a traditional first-year chemistry laboratory experiment. This experiment has four key features: students utilize stoichiometry, learn and apply principles of green chemistry, engage in authentic scientific inquiry, and discover why each part of a scientific lab report is necessary. The importance and essential…
Descriptors: Stoichiometry, Technical Writing, Verbal Communication, Chemistry
Ozkaya, Ali Riza; Uce, Musa; Saricayir, Hakan; Sahin, Musa – Journal of Chemical Education, 2006
The results of previous educational research raise some questions about the efficacy of conventional teaching strategies and point to a need for using teaching strategies that explicitly take into account misconceptions students bring to the classes or acquire during the teaching-learning process. Accordingly, this article presents efforts to…
Descriptors: Experimental Groups, Educational Research, Instructional Effectiveness, Misconceptions
Buchanan, Becky; Rios, Jose – Young Children, 2004
Teachers' beliefs about science reform have an important effect on how science is taught. This article examines a kindergarten teacher's science curriculum as she seeks to implement five of Washington State's Essential Academic Learning Requirements (EALRs) for core concepts and principles of science. The authors examine factors that affect…
Descriptors: Scientific Concepts, Elementary School Teachers, Kindergarten, Investigations
Hubber, Peter – Research in Science Education, 2006
This article reports on the third year of a three-year longitudinal investigation into six secondary students' understanding of optics at a secondary school level. In the third year of this investigation the students, who by now were in Year 12, underwent a teaching sequence that centred on the teaching and learning of physical optics and quantum…
Descriptors: Secondary School Students, Grade 12, Thinking Skills, Models
Shmaefsky, Brian R. – Journal of College Science Teaching, 2005
Classroom demonstrations are a great vehicle for getting students to apply information they have heard in a lecture. Educational research is replete with data showing that concept application in an inquiry setting reinforces long-term science content retention. This means that students learn best when they experience applications of concepts and…
Descriptors: Elementary School Students, Biochemistry, Biology, Service Learning
Tandogan, Ruhan Ozkardes; Orhan, Akinoglu – Online Submission, 2007
The aim of this study was to determine the effects of problem-based active learning in science education on students' academic achievement and concept learning. In the study, both quantitative and qualitative research methods were utilized. Quantitative data were obtained via the pre/post-test, treatment-control groups test model. Qualitative data…
Descriptors: Conventional Instruction, Comparative Analysis, Grade 7, Teaching Methods
Shevick, Ed; Shevick, Florence, Ed. – 1995
This book contains innovative hands-on science laboratory activities designed to teach 4th- through 9th-graders about the environment. The background materials and instructions included in each activity are written for students to work together in teams. Activities cover subjects such as smog, symbiosis, soil, trees, ecosystems, recycling,…
Descriptors: Air Pollution, Elementary Secondary Education, Environmental Education, Group Activities
Wilson, Karla G. – 1996
This curriculum unit on the ozone is intended for high school students and contains sections on environmental science and chemistry. It has been structured according to a learning cycle model and contains numerous activities, some of which are in a cooperative learning format. Skills emphasized include laboratory procedures, experimental design,…
Descriptors: Air Pollution, Chemical Reactions, Chemistry, Conservation (Environment)
Manitoba Dept. of Education and Training, Winnipeg. – 1991
This guide is one of a set of 10 science guides, each covering a separate grade in Manitoba, together covering kindergarten through grade 9. The guides have been designed to provide a framework for building scientific concepts and developing the learning of process skills. They replace an earlier set of guides dated 1979. Each guide is essentially…
Descriptors: Acoustics, Classroom Environment, Curriculum Guides, Earth Science
Good, Ronald G., Ed.; And Others – 1992
This book is composed of the following: materials used before and during a conference on evolution education, a proposed agenda for evolution education research, and related recommendations for evolution education research that arose from the conference. Abstracts of seven articles on evolution education, a literature review, and a section…
Descriptors: Biology, College Science, Conference Proceedings, Educational Change
Kyle, Beth Ann; And Others – 1990
The purpose of this guide is to help students better understand the science, citizen action, and research issues that are part of the acid rain problem. The guide is designed for students in grades 4-8 and their teachers. Following an introduction, the first seven sections are informative in nature. They include: (1) "Observations about Acidity";…
Descriptors: Acid Rain, Chemistry, Earth Science, Elementary School Science

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