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Matthews, Catherine E. – Science Scope, 1996
Presents activities designed to introduce the concept of fossils to middle school students and to clarify students' misconceptions about what is, and is not, a fossil. (JRH)
Descriptors: Elementary Secondary Education, Geology, Middle Schools, Misconceptions
Robertson, William C. – 2003
This book is designed to help teachers bolster their content knowledge by focusing on specific science concepts regarding the topic of light. The book covers three scientific models of light and discusses the observations that can be explained by each model. Chapters include: (1) "LightN-The Early Years"; (2) "Colorful Waves"; (3) "Focus, People,…
Descriptors: Knowledge Base for Teaching, Light, Misconceptions, Physics

Wright, Emmit L.; Govindarajan, Girish – Science Teacher, 1995
Describes how discrepant events in science can be used to stimulate and motivate the use of thinking skills in learning scientific concepts. (ZWH)
Descriptors: Demonstrations (Science), Learning Activities, Misconceptions, Science Activities

Lord, Thomas; Marino, Suzanna – Journal of College Science Teaching, 1993
Presents the results of a survey on evolution given to 392 university students in western Pennsylvania. Concludes that, although nearly three-quarters of the students say they believe in the theory of evolution, most do not understand the mechanism behind it. (PR)
Descriptors: Biology, College Science, Evolution, Higher Education

Abell, Sandra K.; And Others – Science Scope, 1996
Describes a fifth-grade science classroom where students were asked to invent an operational definition of matter and validate that definition by designing and implementing a variety of tests. Challenges students to confront their misunderstandings about matter and move beyond merely reciting a definition. (JRH)
Descriptors: Junior High Schools, Matter, Middle Schools, Misconceptions

Kramer, David C. – Science and Children, 1987
Describes the distinctive features of the common snapping turtle. Discusses facts and misconceptions held about the turtle. Provides guidelines for proper care and treatment of a young snapper in a classroom environment. (ML)
Descriptors: Animal Behavior, Animals, Elementary Education, Elementary School Science

Miller, Kenneth W.; And Others – Science and Children, 1996
Presents an integrated approach that helps students understand difficult science concepts. Involves counteracting children's confusion over certain concepts, confronting children's misconceptions through inquiry, and presenting a multitude of experiences that challenge children's erroneous beliefs. Presents an example of applying this approach to…
Descriptors: Childrens Literature, Elementary Education, Elementary School Science, Interdisciplinary Approach

Brouwer, W.; Paranjape, B. V. – Physics Education, 1991
The forward force of water on a hose is calculated using only the pressure gradient, the radius and length of the hose. The misconception about recoil on the nozzle is discussed. Dissipation energy and the consequent heat generation in a fluid flow are also described. (KR)
Descriptors: College Science, Energy, Fluid Mechanics, Heat

Nissani, M. – American Biology Teacher, 1996
Presents a guided discovery activity that uses fruit flies and can be implemented in introductory biology and nature of science classes to flesh out abstract lectures about life cycles, insect morphology, patterns and causes of animal behavior, and the nature of science. Discusses strengths and drawbacks and results of student evaluations of the…
Descriptors: Biology, Discovery Learning, Educational Change, Inquiry

Pfister, Hans; Laws, Priscilla – Physics Teacher, 1995
Kinesthetic apparatus make physics learning experiences stimulating, memorable, and influential in helping students relate natural phenomena to the laws of physics. Describes a number of experiments and demonstrations that are possible with kinesthetic apparatus, which help eradicate some traditional student misconceptions and provide students…
Descriptors: Demonstrations (Science), Elementary Secondary Education, Kinesthetic Perception, Misconceptions

do Couto Tavares, Milton; And Others – Physics Education, 1991
A mechanical analogy between the microscopic motion of a charged carrier in an ordinary resistor and the macroscopic motion of a ball falling along a slanted board covered with a lattice of nails is introduced. The Drude model is also introduced to include the case of inelastic collisions. Computer simulation of the motion is described. (KR)
Descriptors: Computer Simulation, Electricity, Laboratory Procedures, Misconceptions

Berg, Craig A. – Science Teacher, 1993
Describes thought-provoking activities with the Cartesian Diver system. Presents student answers explaining the phenomena. (PR)
Descriptors: High Schools, Learning Activities, Misconceptions, Physical Sciences

Emery, Dave – Science Scope, 1996
Describes a lab involving a cloud formation activity that uses the constructivist learning model to get students more involved in creating the lab. Enables students to develop a greater understanding of the concepts involved and more interest in the lab's outcomes. (JRH)
Descriptors: Constructivism (Learning), Earth Science, Hands on Science, Junior High Schools
Steinberg, Melvin S. – 1986
Misconceptions associated with the origins of force and the effectiveness of a bridging strategy for developing correct conceptual models in mechanics are identified for high school physics teachers in this paper. The situation investigated was whether a table exerts an upward force on a book. Student misconceptions related to this phenomenon as…
Descriptors: Cognitive Development, Force, High Schools, Learning Strategies

Iona, Mario; Beaty, William J. – Science and Children, 1988
Presents two views about lenses and optics in attempt to clarify a story written by Carolyn Hermann, "Through the Magnifying Glass." Cites two references for additional reading on students' optics difficulties. (RT)
Descriptors: Elementary Education, Elementary School Science, Misconceptions, Optics