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Yin, Yue – Science Scope, 2012
Misconceptions about sinking and floating phenomena are some of the most challenging to overcome (Yin 2005), possibly because explaining sinking and floating requires students to understand challenging topics such as density, force, and motion. Two scientific principles are typically used in U.S. science curricula to explain sinking and floating:…
Descriptors: Science Education, Misconceptions, Scientific Principles, Physics
Campbell, Ashley – Science Scope, 2012
Engaging students in the study of genetics is essential to building a deep understanding of heredity, a core idea in the life sciences (NRC 2012). By integrating into the curriculum the stories of famous scientists who studied genetics (e.g., Mendel, Franklin, Watson, and Crick), teachers remind their students that science is a human endeavor.…
Descriptors: Genetics, Heredity, Scientists, Scientific Principles
Riddle, Bob – Science Scope, 2010
Stars of different masses have varying life spans, with the more massive stars "burning out" more quickly than stars of lower masses. How or what they do when they burn out also varies, depending on the mass of the star. All stars are called "main sequence stars" as they continue fusing hydrogen and staying in a state of equilibrium--a balance…
Descriptors: Astronomy, Science Instruction, Scientific Principles, Heat
Day, Martha; Stobaugh, Rebecca; Tassell, Janet; Neiman, Nicholas – Science Scope, 2012
This article discusses the resources available for teachers to apply higher-level thinking and cognitive complexity to their instruction and assessments. While designing higher-level assessments might be a challenging task, doing so not only can improve student achievement in science, it also prepares students for a changing world. Students learn…
Descriptors: Science Achievement, Science Process Skills, Problem Solving, Science Teachers
Murray, Tracey Arnold – Science Scope, 2011
Adding mint Mentos candy to a two-liter bottle of Diet Coke produces a fountain of soda foam that can reach 3 m high. A demonstration such as this can get a "Wow" out of most audiences, usually followed by a "Do it again!"--but can it be used to teach anything? The answer is a definite "Yes," and what follows is a guided inquiry activity that…
Descriptors: Middle School Students, Science Experiments, Science Instruction, Secondary School Science
Gillette, Brandon; Hamilton, Cheri – Science Scope, 2011
When viewing objects of different colors, you might notice that some appear brighter than others. This is because light is reflected differently from various surfaces, depending on their physical properties. The word "albedo" is used to describe how reflective a surface is. The Earth-atmosphere has a combined albedo of about 30%, a number that is…
Descriptors: Science Instruction, Scientific Concepts, Learning Activities, Color
Riddle, Bob – Science Scope, 2010
On January 29, Mars will reach opposition, a point along its orbit around the Sun where Mars will be directly opposite from the Sun in a two-planet and Sun line-up with the Earth in between. At this opposition, the Earth and Mars will be separated by nearly 100 million km. An opposition is similar to a full Moon in that the planet at opposition…
Descriptors: Astronomy, Science Instruction, Scientific Concepts, Scientific Principles
Clary, Renee; Wandersee, James – Science Scope, 2011
Dinosaurs in the middle school classroom can be exciting. These extinct reptiles are both an exotic subject and familiar to our students. Because students are inherently interested, dinosaurs can serve as an effective portal for the integration of biology, geology, ecology, and the history and nature of science. The field of dinosaur study is…
Descriptors: Middle Schools, Paleontology, Science History, Visualization
Moyer, Richard; Everett, Susan – Science Scope, 2010
This article describes a lesson where students explore the absorbency of several towels with different weaves and weights. The lesson follows the 5E learning-cycle model and incorporates engineering in the sense of product testing with a focus on the relationship between the weave of a towel and its absorbency. The National Science Education…
Descriptors: Science Instruction, Scientific Principles, Middle School Students, Secondary School Science
Andersen, Lauren; Nobile, Nicole; Cormas, Peter – Science Scope, 2011
For students to develop an understanding of science content and processes, teachers must create classroom environments in which students use inquiry to understand the natural world. However, teachers frequently find it difficult, if not impossible, to demonstrate complex scientific concepts, which textbooks often fail to properly explain. During…
Descriptors: Textbooks, Prior Learning, Chemistry, Scientific Concepts
Wilcox, Jesse; Kruse, Jerrid – Science Scope, 2012
Although inquiry is more engaging and results in more meaningful learning (Minner, Levy, and Century 2010) than traditional science classroom instruction, actually involving students in the process is difficult. Furthermore, many students have misconceptions about Earth's seasons, which are supported by students' prior knowledge of heat sources.…
Descriptors: Investigations, Prior Learning, Misconceptions, Science Instruction
Moyer, Richard; Everett, Susan – Science Scope, 2009
The ballpoint pen is an ideal example of simple engineering that we use everyday. But is it really so simple? The ballpoint pen is a remarkable combination of technology and science. Its operation uses several scientific principles related to chemistry and physics, such as properties of liquids and simple machines. They represent significant…
Descriptors: Scientific Principles, Learning Processes, Engineering, Science Instruction
Clary, Renee; Wandersee, James – Science Scope, 2010
Coal fueled the Industrial Revolution and, as a result, changed the course of human history. However, the geologic history of coal is much, much longer than that which is recorded by humans. In your classroom, the coal cycle can be used to trace the formation of this important economic resource from its plant origins, through its lithification, or…
Descriptors: Fuels, Geology, Science Instruction, Secondary School Science
Herald, Christine – Science Scope, 2010
According to the National Science Education Standards, students should be able to describe an object by its position, direction of motion, and speed (NRC 1996). During a unit on motion, the author decided to use Hot Wheels cars as the object students would describe. The first two activities are used to introduce students to the equipment and the…
Descriptors: Science Activities, Science Instruction, Science Laboratories, Scientific Principles
Fairweather, Elizabeth; Fairweather, Thomas – Science Scope, 2010
Mendel and his peas. Goodall and her chimpanzees. Bentley and his snowflakes. Pasteur and his sheep. Not only do these stories intrigue students, but they also demonstrate the trials and tribulations associated with scientific inquiry. Using scientists' biographies piques student interest while providing an added dimension to their understanding…
Descriptors: Scientific Principles, Inquiry, Discovery Processes, Scientists