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Prior-Grosch, Ariadne; Woodruff, Karen – Science Teacher, 2022
Fall 2020 presented myriad challenges for teachers trying to plan curricula to meet students' social-emotional and learning needs following an unprecedented spring and summer of isolation and loss due to the pandemic caused by SARS-CoV-2 (Rivera and Wallace 2020). The result of creative planning and adjusting of curricula for remote instruction…
Descriptors: COVID-19, Pandemics, School Closing, Distance Education
Kinslow, Andrew; Sadler, Troy; Friedrichsen, Patricia; Zangori, Laura; Peel, Amanda; Graham, Kerri – Science Teacher, 2017
The global scale of climate change may seem beyond many high school students' comprehension. To complicate matters, climate change has emerged as a political issue that pits candidates, neighbors, and sometimes teachers and students against each other (Kahan 2015). The "Next Generation Science Standards" (NGSS Lead States 2013) call on…
Descriptors: Climate, Ecology, Science and Society, Secondary School Science
Nugent, Jill; Smith, Walter; Cook, Linda; Bell, Meredith – Science Teacher, 2015
With rapidly evolving technology, the world is more connected than ever, and citizens around the globe can contribute to science like never before (Dickinson and Bonney 2012). Reflecting the growing capacity of citizen science, this article presents a science education continuum that moves from global awareness to global contribution. At each…
Descriptors: Science Education, Citizen Participation, Science Projects, Science Process Skills
Raven, Sara; Klein, Vanessa; Namdar, Bahadir – Science Teacher, 2016
Argumentation has long been promoted as a core scientific practice in which students should engage, yet science classrooms still often omit it. One remedy is to incorporate socioscientific issues (SSIs) in the curricula. SSIs are open-ended and complex, typically subject to multiple perspectives and solutions. These issues, influenced by science…
Descriptors: Persuasive Discourse, Criticism, Critical Thinking, Skill Development
Sampson, Victor; Grooms, Jonathon – Science Teacher, 2010
The Generate an Argument instructional model was designed to engage students in scientific argumentation. By using this model, students develop complex reasoning and critical-thinking skills, understand the nature and development of scientific knowledge, and improve their communication skills (Duschl and Osborne 2002). This article describes the…
Descriptors: Persuasive Discourse, Communication Skills, Thinking Skills, Teaching Methods
Hademenos, George; Russell, Jonathan; Birch, John; Wosczyna-Birch, Karen – Science Teacher, 2010
"Engineering Challenge for the 21st Century," a weeklong teacher workshop sponsored by the National Science Foundation, uses project-based learning (PBL) to help students and teachers build science, technology, engineering, and math (STEM) skills. The workshop, hosted by the U.S. Coast Guard Academy in New London, Connecticut, features the Coast…
Descriptors: Strategic Planning, Student Projects, Active Learning, Teacher Workshops
Smith, Amy; Molinaro, Marco; Lee, Alisa; Guzman-Alvarez, Alberto – Science Teacher, 2014
For students to be successful in STEM, they need "statistical literacy," the ability to interpret, evaluate, and communicate statistical information (Gal 2002). The science and engineering practices dimension of the "Next Generation Science Standards" ("NGSS") highlights these skills, emphasizing the importance of…
Descriptors: STEM Education, Statistics, Statistical Analysis, Learning Modules

Seese, John W. – Science Teacher, 1984
Describes a class project in which students determine the best brand of paper towel in several categories. The activities and experiments completed during the project foster observation, measuring, collecting, data evaluation, writing, and mathematics skills. (BC)
Descriptors: Consumer Science, General Science, Physical Sciences, Science Activities

Silberstein, Evan P. – Science Teacher, 1986
Discussed are the basic and specialized skills needed for graphing exercises. Suggests approaches and activities that can be used in the teaching of graphing skills. Includes a listing of software programs for both teaching graphing and for analyzing data. (ML)
Descriptors: Courseware, Graphs, Science Activities, Science Education

Carter, Glenda S.; Simpson, Ronald D. – Science Teacher, 1978
Cites examples to show that helping students master fundamental science skills will lead to improved reading. Discusses the relationships between reading and science. (CP)
Descriptors: Elementary School Science, Elementary Secondary Education, Instruction, Readability

Jesberg, Robert O.; Dowden, Edward – Science Teacher, 1986
Explains how computer and game port interfacing reduces the time required for data collection and organization and also stimulates student interest in science laboratory exercises. Illustrates this approach through a description of a population-variation lab. Includes diagrams for the construction of the interface box. (ML)
Descriptors: Computer Assisted Instruction, Ecology, Laboratory Experiments, Problem Solving

Webb, Michael J.; And Others – Science Teacher, 1983
Two descriptive chemistry experiments are presented which foster development of students' skills in making observations and deductions. In addition, the experiments are designed to stress the importance of chemical behavior and clear presentation of experimental findings. (JN)
Descriptors: Chemical Reactions, Chemistry, Deduction, High Schools

Good, Ron; Smith, Mike – Science Teacher, 1987
Explains the Every Teacher a Researcher (ETR) program and invites teachers to participate in classroom research on students' problem-solving abilities. Reviews previous approaches taken to investigations of problem solving in science. Identifies characteristics of successful and unsuccessful problem solvers. (ML)
Descriptors: Elementary Secondary Education, Problem Solving, Process Education, Research Needs

Quinn, Mary Ellen – Science Teacher, 1974
Descriptors: Concept Formation, Inquiry, Science Education, Secondary School Science

Lord, Thomas R. – Science Teacher, 1987
Upholds the importance and need for including visuo-spatial skill exercises in science lessons. Provides suggestions for improving students' visualization skills and reviews the approaches that have been successful with students who were poor in visual skills. (ML)
Descriptors: Cognitive Processes, Instructional Improvement, Perceptual Development, Science Education
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