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Burns, Karolyn; Molina-Castrillón, Diego – Science Teacher, 2023
Historically, science education has not adequately addressed the concerns and values of BIPOC individuals and women, especially those who fall into both categories. One way that educators are addressing this disparity is by incorporating social justice into their curricula. Climate change is one of today's most pressing issues, and youth have much…
Descriptors: Science Education, Climate, Social Justice, Pollution
Turrin, Margie – Science Teacher, 2015
Data and data analysis are central to science and the complex world in which people live. Students need to practice working with data--addressed in the "Next Generation Science Standards" (NGSS Lead States 2013)--starting with small, self-collected data sets and moving on to larger, remotely collected data assemblages. Small data sets…
Descriptors: Science Education, Data Collection, Data Analysis, Experiential Learning
Nation, Molly Trendell; Feldman, Allan; Wang, Ping – Science Teacher, 2015
Global climate change and its effects are real and immediate. Students must gain an understanding of climate science so they can participate in public debate about how to reduce the emission of heat-trapping gases and how their communities can mitigate the effects of global warming. In this activity, students model these effects on Earth's oceans…
Descriptors: Global Approach, Climate, Pollution, Investigations
Givot, Rima; O'Connell, Kari; Hadley, Adam S.; Betts, Matthew G. – Science Teacher, 2015
The decline in hummingbird populations and shifts in their movements may adversely affect their role as pollinators and, in turn, plant biodiversity (Allen-Wardell et al. 1998). For example, Hadley et al. (2014) discovered that larger fragments of forest correlated with larger hummingbird populations and more seeds of "H. tortuosa" being…
Descriptors: Citizen Participation, Science Education, Student Participation, Scientific Research
Busey, Amy; Krumhansl, Ruth; Mueller-Northcott, Julianne; Louie, Josephine; Kochevar, Randy; Krumhansl, Kira; Zetterlind, Virgil – Science Teacher, 2015
Scientific research is undergoing a "big data" revolution, as probes deployed in oceans, the atmosphere, and outer space provide near real-time data streams. As more and more data sets such as Ocean Tracks become available online, opportunities to engage students in the "Next Generation Science Standards" (NGSS Lead States…
Descriptors: Data Collection, Data Analysis, Oceanography, Marine Biology
Gould, Roy; Sunbury, Susan; Dussault, Mary – Science Teacher, 2014
The "Next-Generation Science Standards" emphasize the importance of teaching the practices of science alongside content ideas and crosscutting concepts (NGSS Lead States 2013). Chief among these practices is the ability to gather, assess, analyze, and interpret data. Authentic inquiry near the leading-edge of science offers a wonderful…
Descriptors: Data, Data Analysis, Data Collection, Data Interpretation
Green, Carie; Medina-Jerez, William – Science Teacher, 2012
In recent years, citizen science projects have emerged as a means to involve students in scientific inquiry, particularly in the fields of ecology and environmental science. A citizen scientist is "a volunteer who collects and/or processes data as part of a scientific inquiry" (Silverton 2009, p. 467). Participation in citizen science…
Descriptors: Teaching Methods, Scientific Research, Social Sciences, Citizenship Education
Abbott, Cheryl; Swanson, Marc – Science Teacher, 2006
A collaborating scientist--a rewarding addition to any high school science program--can help students collect and analyze data that either replicates or parallels the work of the partnering scientist. This type of partnership is beneficial for both students and scientists, and perhaps there has never been a better time to consider such a…
Descriptors: Partnerships in Education, High Schools, Data Collection, Data Analysis

Klein, Aaron E. – Science Teacher, 1974
Reports the results of a nationwide project in which science classes (representing about 16,000 students) collected and submitted data on the pH of the rain falling in their respective areas. (JR)
Descriptors: Air Pollution, Data Collection, Environment, Environmental Education

Soroka, Leonard G. – Science Teacher, 1990
Developed is a classroom activity that illustrates the scientific method. The importance of observation, interpretation, and prediction is discussed. The activity uses pictures of the surface of Mars. (KR)
Descriptors: Astronomy, Data Collection, Misconceptions, Observation
Rutherford, Sandra; Wylo, Bonnie – Science Teacher, 2004
Building and racing mousetrap cars is a common activity in many eighth- and ninth-grade physical science classrooms. However, once students have raced their cars, most mousetrap assignments come to an end. In this article, the authors developed a project to help teachers get more mileage out of mousetrap cars. The Mousetrap Car Project addresses…
Descriptors: Motor Vehicles, Science Education, Physics, Grade 8

Cox, Anne Marshall; Craig, Dorothy Valcarcel – Science Teacher, 1997
Defines action research in terms of science education, delineates the process, provides the rationale for research into practice, and gives an example of putting this process into action. Includes some tips for data collection and analysis. (DDR)
Descriptors: Action Research, Curriculum Development, Data Analysis, Data Collection

Kelly, Ivan; Ryan, Alan – Science Teacher, 1983
Explains the use of contingency tables as a tool in assessing variables to determine whether a relationship exists. Develops an example hypothesis step-by-step, noting the scientific processes and attitudes being addressed. Cautions that a large difference, which suggests a relationship, is not explanation since correlation does not guarantee…
Descriptors: Classification, Data Analysis, Data Collection, High Schools

Crump, Reva – Science Teacher, 1994
This activity uses ice crystals to introduce middle school and high school students to the collection, preparation, examination, and manipulation of scientific data. (PR)
Descriptors: Data Analysis, Data Collection, High Schools, Junior High Schools

Evans, Kenneth H. – Science Teacher, 1992
Describes an activity in which students examine hypothetical exposure to toxins by being showered by different colored pieces of confetti over several visits to exposure sites. Students record quantities of confetti that stick to packing tape. Colors correspond to different toxins posing different health problems. Students process their findings…
Descriptors: Chemistry, Data Analysis, Data Collection, Discussion (Teaching Technique)
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