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LaBanca, Frank; Ritchie, Krista C. – Science Teacher, 2011
Problem solving is a valuable skill in the science classroom. Students often use a variety of inquiry strategies to identify problems and their implications; develop action plans; locate relevant sources, information, and data; and formulate solutions. Problem solving is a logical, analytical, and sometimes creative process. The less tangible,…
Descriptors: Creativity, Learning Strategies, Problem Solving, Science Fairs
Rillero, Peter; Zambo, Ron – Science Teacher, 2011
Science fair judges provide secrets to a successful science fair. Whether students are competing in science fairs at the high school, local, district, regional, state, or international level, their success is dependent on the judges' interpretation of their work. In this article, the authors present a series of questions and answers from past…
Descriptors: Science Fairs, High Schools, Judges, Science Activities
McComas, William F. – Science Teacher, 2011
As a science teacher educator and former science teacher, the author has long known that the science fair should be part of his professional experience, but he had not given it much thought until recently. As he worked with his daughter's project, he became convinced that it is time to reconsider the range of activities one calls "science fairs."…
Descriptors: Science Fairs, Science Teachers, Science Education, Student Projects
Bernard, Warren – Science Teacher, 2011
There are many types of inquiry activities out there: Demonstrations, guided or scaffolded inquiry labs, open- or free-inquiry labs, and problem-based or project-based learning activities are all staples in science education. The importance of inquiry is highlighted in such documents as the National Science Education Standards (NRC 1996) and the…
Descriptors: Student Projects, Active Learning, Scientific Literacy, Science Education
Seeman, Jeffrey I.; Lawrence, Tom – Science Teacher, 2011
One goal of 21st-century education is to develop mature citizens who can identify issues, solve problems, and communicate solutions. What better way for students to learn these skills than by participating in a science and engineering fair? Fair participants face the same challenges as professional scientists and engineers, even Nobel laureates.…
Descriptors: Video Technology, Science Fairs, Learning Experience, Peer Influence

Fox, Michael W.; Ward, M. Andrea – Science Teacher, 1977
Experiments by secondary school students which inflict pain and suffering are described. NSTA policy regarding the use of live animals is presented. An argument for the use of animals in research is given along with a recommendation by the author that animal projects should show a reverence for life. (AJ)
Descriptors: Biology, Guidelines, Science Education, Science Experiments

Starr, Robert J. – Science Teacher, 1972
Descriptors: Educational Programs, Science Activities, Science Fairs, Science Projects

Goodman, Harvey – Science Teacher, 1975
Gives guidelines for initiating science projects and encourages students to enter them in science fairs to instill confidence in their accomplishments. (LS)
Descriptors: Exhibits, Instruction, Science Activities, Science Education

Teachworth, Martin D. – Science Teacher, 1987
Discusses the approach taken in a science project program at a math/science/computer magnet school. Explains the procedures, student requirements, and scheduling needs of the program. Contains a checklist of 17 steps for completion of the project. (ML)
Descriptors: Models, Science Education, Science Fairs, Science Instruction

Smith, Norman F. – Science Teacher, 1980
Presents an analysis of student science projects at science fairs that judges are likely to encounter. Presents a challenge to the organizers of science fairs to define the goals of the fair and the criteria for selecting winners. The problems associated with the process are discussed. (SA)
Descriptors: Competitive Selection, Creative Thinking, Criteria, Discovery Learning

Levin, Karen Noel; Levin, Robert E. – Science Teacher, 1991
Discussed is a method for judging science fair projects considered to be more accurate than just an averaging of scores. The use of many categories so that the number of projects in each is relatively small is proposed. The advantages of using the consensus method are described. (KR)
Descriptors: Evaluation Methods, Extracurricular Activities, Judges, Science Activities

Gowen, Lorraine F.; Marek, Edmund A. – Science Teacher, 1993
Science fairs can be used to advance a student's scientific knowledge, sharpen laboratory techniques, practice statistical analysis, and gain a better understanding of the process of science. This article describes an outline for developing a science fair that covers the objectives above and develops library and writing skills as well. (PR)
Descriptors: High Schools, Learning Activities, Science Activities, Science Education

Grobman, Arnold – Science Teacher, 1993
Describes problems with school science fairs including poor judging and a lack of understanding by the students of their own projects. Suggests improvements to the system. One suggestion is for science fair projects to be displayed only in classrooms and not district or regional fairs. (PR)
Descriptors: High Schools, Junior High Schools, Learning Activities, Science Activities

Hoots, Rita Aronow – Science Teacher, 1987
Reviews a science open house held at regular intervals at Yuba College, California. Enumerates the motivation for and the organization of the open house. Reports community wide attendance and participation. Lists the exhibits used at the open house with descriptions. (CW)
Descriptors: College Science, Community Relations, Elementary School Students, Extracurricular Activities