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Lusardi, Laura; Haroldson, Rachelle – Science Teacher, 2021
COVID-19 is the first global pandemic in the age of the internet and the world has collectively documented the virus's spread, offering a unique opportunity to study both the virus and the streams related to COVID-19, on topics from testing access to income to race. They develop their own research question to investigate the relationship between…
Descriptors: COVID-19, Pandemics, Incidence, Distance Education
Geddes, Kim; Franchini, Elease – Science Teacher, 2012
As a high school physics teacher, Kim Geddes is constantly searching for new experiences to challenge, motivate, and engage students. Last year, she incorporated ExploraVision into the energy unit of her school's physics curriculum with the help of their media specialist (Elease Franchini). ExploraVision is a competition offered through a…
Descriptors: Physics, Competition, Media Specialists, Science Teachers
Lancor, Rachael – Science Teacher, 2009
Projectile motion, a cornerstone topic of introductory physics, is usually a student's first exposure to the problem-solving techniques used in this subject. Often, this is an inactive learning experience--students work with pencil and paper to read and solve projectile motion problems (e.g., diagrams and descriptions of balls being hit, kicked,…
Descriptors: Physics, Motion, Learning Experience, Science Instruction

Hewitt, Paul G. – Science Teacher, 2006
Three sample physics problems are presented in this article. The solutions to the three problems addresses a major student difficulty in problem solving--knowing where to begin. The first suggested step is to begin by stating what is asked for. Step 2 is identifying the fundamental physics that underlies the problem situation. Step 3 is isolating…
Descriptors: Teaching Methods, Physics, Scientific Methodology, Problem Solving

Altshuler, Kenneth – Science Teacher, 1989
Discusses a unit on nuclear technology which is taught in a physics class. Explains the unit design, implementation process, demonstrations used, and topics of discussion that include light and optics, naturally and artificially produced sources of radioactivity, nuclear equations, isotopes and half-lives, and power-generating nuclear reactors.…
Descriptors: Curriculum Design, Decision Making, Nuclear Energy, Nuclear Physics

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

Woodring, Kathleen Mills – Science Teacher, 2000
Introduces a project of constructing a rover that can maintain its upright position with minimal gravitation that is based on National Aeronautics and Space Administration (NASA) Jet Propulsion Laboratories rover designs. Tests the project in NASA's "Vomit Comet" under zero-gravity environment. (YDS)
Descriptors: Design, Engineering, Gravity (Physics), Hands on Science

Hewitt, Paul G. – Science Teacher, 2000
Introduces conceptual physics, which does not have the computational roadblock typical to most physics courses and appeals to both science and non-science students. First published in 1990. (YDS)
Descriptors: Concept Formation, Critical Thinking, High Schools, Mathematical Applications

Conn, Kathleen – Science Teacher, 1995
Presents John Collier's "Problem-Solving Loop" as a structure for finding the most acceptable solution to any problem. Describes a project that uses the problem-solving loop to analyze some problems outside the classroom related to kinematics and dynamics. (JRH)
Descriptors: Physics, Problem Solving, Science Activities, Science Education

Reibman, Zwe – Science Teacher, 1975
Describes a lesson that utilized inquiry to teach the students a scientific concept and to emphasize the fact that they shouldn't jump to conclusions. (LS)
Descriptors: Instruction, Physics, Problem Solving, Questioning Techniques

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

Erhardt, Walter – Science Teacher, 1976
Presents two examples of problem solving activities in which students are provided with helpful and extraneous information. Each of six group members must make verbal input for the collective solution of a problem. (CP)
Descriptors: Group Activities, Instructional Materials, Physics, Problem Solving

Rye, James A. – Science Teacher, 1997
Details an investigation concerned with the composition of a grape to illustrate how food and nutrition topics can drive inquiry-oriented science learning. Students design experiments that surround the development of a fictitious new beverage. (DDR)
Descriptors: Data Analysis, Data Collection, Elementary Secondary Education, Food

Roy, Darlene – Science Teacher, 1995
Describes an activity that challenges students to apply their knowledge of motion to designing and constructing roller coasters. Emphasizes the processes students go through to communicate their ideas and the problem-solving skills they develop. (JRH)
Descriptors: Acceleration (Physics), Motion, Problem Solving, Science Activities

Quimby, Donald J. – Science Teacher, 1984
Discusses the geometry, algebra, and logic involved in the solution of a "Mindbenders" problem in "Discover" magazine and applies it to calculations of satellite orbital velocity. Extends the solution of this probe to other applications of falling objects. (JM)
Descriptors: Astronomy, Computation, Geometry, High Schools
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