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Cox, Charles T., Jr.; Jordan, Joni; Cooper, Melanie M.; Stevens, Ron – Science Teacher, 2006
Most science teachers are amazed when grading tests and quizzes, often wondering how and why students have reached a conclusion, particularly when students fail to provide a detailed account of their logic. Ideally, a variety of assessments should be used to identify alternate student conceptions or gaps in understanding, particularly when…
Descriptors: Tests, Misconceptions, Elementary Secondary Education, Educational Technology
Peer reviewedTinnesand, Michael; Chan, Alan – Science Teacher, 1987
Argues that cookbook chemistry laboratory experiments do little to teach scientific inquiry. Suggests providing students with laboratory experiences that follow the introduction of a concept and challenge students to investigate that concept through an experiment involving very few initial instructions. Lists some such challenges used in chemistry…
Descriptors: Chemistry, Inquiry, Laboratory Procedures, Learning Processes
Peer reviewedAlexander, Richard; Robertson, Bill – Science Teacher, 1997
Describes the Critical Issues Forum, a multidisciplinary program designed to encompass computer technology, current global issues, and effective teaching and learning practices. Features open-ended, collaborative activities that deal with current, real-world issues. Discusses analysis of the issues and integrating technology. (JRH)
Descriptors: Computer Uses in Education, Cooperative Learning, Educational Strategies, Educational Technology
Peer reviewedLilly, Sherril L. – Science Teacher, 1989
Describes a two-day forensic science course that is offered to eighth grade students enrolled in Science, Mathematics, and Technology Magnet Schools. Provides sample student activity sheets for the course. (Author/RT)
Descriptors: Chemistry, Data Analysis, Data Collection, Data Interpretation
Peer reviewedHuebel-Drake, Madeline; And Others – Science Teacher, 1995
Presents a project-based curriculum, Foundations of Science (FOS), that integrates the physical and biological sciences. Consists of three years of integrated science based on: integrating science disciplines, project-based science, inclusion of authentic problems, and routine uses of technology. (nine references) (JRH)
Descriptors: Cooperative Learning, Educational Change, Integrated Curriculum, Problem Solving
Peer reviewedSlesnick, Irwin L.; Miller, John A. – Science Teacher, 1988
Gives the background history and chemistry of modern day chemical warfare from World War I to the present. Provides discussion questions to stimulate deeper thinking on the issue. Contains a discussion activity called "Can New Chemical Weapons Lead to Humane Warfare?" (CW)
Descriptors: Biochemistry, Biology, Chemistry, Controversial Issues (Course Content)
Peer reviewedZielinski, Edward J.; Sarachine, D. Michael – Science Teacher, 1990
Presented are six activities that help to promote critical and creative student thinking. Activities include discrepant events and questioning, divergent thinking, dilemma discussions, and drawing objects from symbols. Activities can be adapted to any science discipline. (KR)
Descriptors: Cognitive Development, Cognitive Style, Critical Thinking, Discussion (Teaching Technique)
Peer reviewedDoran, Rodney L.; And Others – Science Teacher, 1992
Describes the selection and implementation of an authentic assessment model for evaluating students' science laboratory knowledge and skills. Provides sample problems and a scoring form for the performance-based science laboratory test. (MDH)
Descriptors: Evaluation Methods, Models, Performance Based Assessment, Problem Sets
Peer reviewedCompton, C. Arthur – Science Teacher, 1983
Provided are examples of science/society scenarios for biology, chemistry, and physics classes, as well as those of an interdisciplinary nature. These scenarios present some social or ethical problems related to the discipline and pose questions for student discussions. (Includes description of a project involved in developing/piloting such…
Descriptors: Biology, Chemistry, Controversial Issues (Course Content), Decision Making
Peer reviewedScience Teacher, 1989
Describes two software programs for the Apple II series and TRS-80 Models III and IV: (1) "Personal Energy Inventory" (grades 9-12, records and manages data, not considered user friendly); (2) "Energy Conservation" (grades 7-12, aids in converting and problem solving, uses drill and practice). (MVL)
Descriptors: Computer Software Reviews, Computer Uses in Education, Data Collection, Drills (Practice)
Peer reviewedRadford, David L.; And Others – Science Teacher, 1995
Presents the science demonstration assessment as an authentic- assessment technique to assess whether students understand basic science concepts and can use them to solve problems. Uses rubrics to prepare students for the assessment and to assign final grades. Provides examples of science demonstration assessments and the scoring of rubrics in the…
Descriptors: Critical Thinking, Demonstrations (Science), Performance Based Assessment, Problem Solving
Peer reviewedGabel, Dorothy; And Others – Science Teacher, 1992
Chemistry can be described on three levels: sensory, molecular, and symbolic. Proposes a particle approach to teaching chemistry that uses magnets to aid students construct molecular models and solve particle problems. Includes examples of Johnstone's model of chemistry phenomena, a problem worksheet, and a student concept mastery sheet. (MDH)
Descriptors: Chemistry, Cognitive Development, Concept Formation, Magnets
Peer reviewedHassard, Jack; Weisburg, Julie – Science Teacher, 1992
Describes the Global Thinking Project, a collaborative effort between Georgia State University and the Russian Academy of Pedagogical Sciences to develop strategies, methods, and teaching materials to help students think globally. Students are connected through the AppleLink network. Student and teacher attitudes toward the project are reported.…
Descriptors: Environmental Education, Foreign Countries, Global Education, High School Students
Creech, Janet; Hale, Gina – Science Teacher, 2006
Reading is an essential part of science literacy, yet teachers often face challenges in incorporating reading in science classrooms. In this article, the authors share how they brought reading back into their science classrooms. They designed four quarterly reading projects with yearlong literacy routines that they used successfully with their…
Descriptors: Literacy Education, Reading Skills, Reading Assignments, Middle School Students

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