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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
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
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
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
McCann, Florence; Pedersen, Jon; Falsarella, Carell; McCann, Patrick – Science Scope, 2008
This investigation was part of a multi-lesson unit that gave students direct experience using increasingly sophisticated tools to make more detailed observations and measurements of light. Through these lessons, students experienced a key aspect of the nature of science (McComas 2004), namely how scientists constantly refine and modify theories as…
Descriptors: Units of Study, Scientific Principles, Science Education, Observation
Kim, Byoung-Sug; McKinney, Mary – Science Scope, 2007
By virtue of its connection with scientific literacy, the nature of science has been considered essential subject matter for the science curriculum. With this in mind, seventh-grade students were introduced to three aspects of the nature of science: (1) the distinction between observation and inference, (2) the subjective, and (3) the tentative…
Descriptors: Scientific Principles, Scientific Literacy, Science Curriculum, Grade 7
Shubin, Joanna – Science Scope, 2004
This article describes a class project that engages students in a scientific dialogue almost immediately upon entering science class on the first day of school. The teacher's first announcement is that each student will receive one dollar. Student response will most likely be suspicion, amazement, and perplexity--all the attributes of scientists…
Descriptors: Scientific Principles, Teaching Methods, Science Instruction, Middle Schools
Straits, William – Science Scope, 2007
The reading of science-related, historical nonfiction alone does not necessarily lead students to make personal connections to science or understand science as a human endeavor interdependent with culture, society, and history. Teachers must structure students' reading to ensure that they consider specific aspects of science while reading and…
Descriptors: Scientific Principles, Discussion Groups, Reader Response, Reader Text Relationship
Curry, Kristen; Moore, Jerilou; Sumrall, William J. – Science Scope, 2007
When students investigate science, they model, imitate, and perform science much as scientists do. Learning science in this way is best, according to the locus of control research. Based on this research, students need to develop an internal belief that they can control science outcomes and become a part of science through their own hands-on…
Descriptors: Locus of Control, Investigations, Student Attitudes, Scientific Principles
Jackson, Julie; Allen, Gayle – Science Scope, 2007
Making connections is an emerging education theme of the 21st century. Science teachers are encouraged to connect new learning with prior knowledge, learning with student interests and experience, and classroom activities with the history and nature of science. Strategies that facilitate these connections enrich and enhance instruction. In this…
Descriptors: Teaching Methods, Scientific Principles, Learning Activities, Story Grammar
Pecore, John; Sacks, David – Science Scope, 2005
In this article, the authors describe an activity developed to assist students with constructing their own understanding of Earth's history and provide questions to help teach the geologic time scale. The lesson is aligned to the following National Science Education Standards: Science as Inquiry, Earth's History, and Nature of Science. While…
Descriptors: Scientific Principles, Heterogeneous Grouping, Geology, Science Activities
Zembal-Saul, Carla; Huckans, John H.; Walker, Dean C.; Hershberger, Kimber; Kurz, Nathan A.; Reed, Diane; Cole, Milton W. – Science Scope, 2007
Several teachers from State College (Pennsylvania) Area School District became intrigued with helping their students better understand the science associated with a unit on air and aviation. In particular, they observed that students often encountered difficulty with abstract flight concepts, such as lift, thrust, and drag. Content issues became…
Descriptors: College Science, Science Instruction, Teaching Methods, Scientific Principles
Kao,Yvonne S; Zenner, Greta M.; Gimm, J. Aura – Science Scope, 2005
Nanotechnology deals with machines, materials, and structures and their behaviors at the scale of atoms and molecules, or the nanoscale. By working on this scale, scientists are able to create enhanced materials with desirable properties, such as stain-resistance. The authors developed the activity described in this article to introduce middle…
Descriptors: Teaching Methods, Scientific Principles, Scientific Research, Scientists
Crawford, Teresa – Science Scope, 2003
As science teachers, they understand the importance of gaining student interest to promote learning. They know how challenging it is to spark the curiosity to truly engage students in the processes of "doing science." One often-used method of motivation is the demonstration of science in action. Demonstrations such as "discrepant events". They are…
Descriptors: Science Activities, Scientific Principles, Student Interests, Science Teachers
Reeves, Carolyn; Chessin, Debby – Science Scope, 2003
Middle-school students should develop and refine their understanding of the interrelationships among science, technology, and society while they are studying content. Several strategies to accomplish teaching the history and nature of science can easily be integrated into the science class with a little planning and research. Incorporating the…
Descriptors: Scientific Principles, Science and Society, Middle School Students, Educational Strategies
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