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Garimella, Umadevi; Sahin, Nesrin – Science Teacher, 2021
One way to develop a cross-curricular lesson is to select the most common mathematical formulas used in science and carefully develop and implement tasks that allow students to make connections between the mathematical representations and theoretical/physical science concepts. The slope-intercept formula, which is used to study relationships…
Descriptors: Science Instruction, Thermodynamics, Mathematical Formulas, Mathematical Concepts
Hanson, Eric; Burakowski, Elizabeth – Science Teacher, 2015
For much of the northern United States, the months surrounding the winter solstice are a time of increased darkness, low temperatures, and frozen landscapes. Each year, the ubiquitous white ice crystals that blanket regions of the north go uninvestigated. Instead of hunkering down indoors with their classes, however, teachers can take advantage of…
Descriptors: Science Instruction, Science Activities, Science Process Skills, Secondary School Science
Wilcox, Jesse; Kruse, Jerrid; Herman, Benjamin – Science Teacher, 2015
Even though density is taught in middle school, high school students often struggle to understand that the density of a substance is consistent regardless of amount. This is because many high school students know density = mass/volume, but do not have the conceptual understanding necessary to explain density-related phenomena. The scaffolded…
Descriptors: Scientific Concepts, Misconceptions, Science Instruction, Scientific Principles
Veal, William; Sneed, Kevin – Science Teacher, 2014
The Next Generation Science Standards ("NGSS") were developed by teachers, scientists, and leaders in science and science education from around the country and are endorsed by the National Science Teachers Association (NSTA), a partner in the development of the "NGSS." This article presents an example of how to modify a lab to…
Descriptors: Academic Standards, Science Laboratories, Alignment (Education), Thermodynamics
Hazzard, Edmund – Science Teacher, 2012
A recipe is a great way to learn about the procedure and the variables (or "ingredients") involved. Cookbooks are comforting and valuable: They're easy to follow, and people know what they'll get. The problem is that cookbook labs end just when things get interesting. The excitement of science is in understanding the discovery and pursuing the…
Descriptors: Heat, Laboratory Experiments, Science Activities, Inquiry
Johnson, Samuel A.; Tutt, Tye – Science Teacher, 2008
Recently, a high school Science Club generated a large number of questions involving temperature. Therefore, they decided to construct a thermal gradient apparatus in order to conduct a wide range of experiments beyond the standard "cookbook" labs. They felt that this apparatus could be especially useful in future ninth-grade biology classes, in…
Descriptors: Scientific Methodology, Science Laboratories, Biology, Laboratory Equipment

Fowler, John M. – Science Teacher, 1972
Problems concerning energy shortage are presented along with possible solutions. Three important areas of concern are (1) energy-origin and uses, (2) environmental effects of energy use, and (3) resources and new sources. (DF)
Descriptors: Energy, Environmental Education, Physics, Resource Materials

Wald, Robert M. – Science Teacher, 1979
Discusses the theory, formation, and properties of the black holes, nature's dark stars. The connection between black holes and thermodynamics is also discussed. (HM)
Descriptors: Astronomy, Earth Science, Physics, Science Education

Butcher, Frank – Science Teacher, 1984
Describes an experiment in which the final speed of a toy car is predicted by measuring the elastic potential energy stored in its spring at the start and the energy lost to friction during the run. Conservation of energy is discussed and the necessary mathematical formulas are presented. (BC)
Descriptors: Energy, Motion, Physics, Science Education

Berger, Joel J. – Science Teacher, 1979
Gives a brief descriptive review of the life of Albert Einstein, his scientific papers and his valuable contributions to physics. (BA)
Descriptors: Biographies, Physics, Quantum Mechanics, Relativity

Sumrall, William J.; Richardson, Denise; Yan, Yuan – Science Teacher, 1998
Explains a series of laboratory activities which employ a microwave oven to help students understand word problems that relate to states of matter, collect data, and calculate and compare electrical costs to heat energy costs. (DDR)
Descriptors: Elementary Secondary Education, Hands on Science, Heat, Laboratory Procedures

Ringlein, James – Science Teacher, 2005
Violins, earthquakes, and the "singing rod" demonstration all have something in common--stick-slip frictional motion. The application of stick-slip friction can be extended to a ringing wineglass, exotic percussion instruments, car racing, and the latest research on the interplay between surfaces at the atomic level. These examples all involve two…
Descriptors: Motion, Physics, Demonstrations (Educational), Science Experiments
Church, William – Science Teacher, 2005
In this article, the author features "the sidewalk project" in Littleton High School. The sidewalk project is a collaboration of more than 40 high school physics students, 10 local mentors, and a few regional and national organizations who worked together to invent a way to heat a sidewalk with an alternative energy source. The project, which…
Descriptors: Writing Skills, Thermodynamics, Energy, High Schools

Engleka, Karl – Science Teacher, 1975
Describes a series of activities for demonstrating the conditions necessary for burning (fuel, oxygen and temperature) plus several related phenomena. (CP)
Descriptors: Demonstrations (Educational), Instruction, Laboratory Procedures, Physical Sciences

Rioseco, Marilu; Romero, Ricardo; Pedersen, Jon E. – Science Teacher, 1998
Examines the interest level of Chilean students in physics and technology in light of unacceptable performance levels in these areas. Relevant thermodynamics problems applicable to students' daily lives generated more interest. Discusses the importance of presentation to student acceptance of the curriculum. (AIM)
Descriptors: Elementary Secondary Education, Foreign Countries, Physics, Problem Solving
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