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Hammett, Amy; Dorsey, Chad – Science Teacher, 2020
To learn with data, students need "data" to explore. This can be deceptive--data-rich experiences typically involve much more than a straightforward science lab. Solving real problems with data means identifying authentic questions that are meaningful to students and provide a foundation for deep inquiry. Such situations often lend…
Descriptors: Data Analysis, Problem Solving, Student Projects, Active Learning
Warner, Laura A.; Ali, Amanda D.; Chaudhary, Anil Kumar – Journal of Agricultural Education, 2018
Water quality and availability are critical issues currently addressed by agricultural education professionals. Extension professionals need to employ innovative approaches to help residents adopt practices and technologies to reduce the impact of urban landscapes on water resources. This study explored how individuals' dissatisfaction relative to…
Descriptors: Agricultural Education, Extension Education, Rural Extension, Extension Agents
Ware, Mallory; Sampson, Christie; Lann, Delaney; Linard, Erica; Chance, Lauren Garcia – American Biology Teacher, 2019
Hands-on learning is a highly effective teaching method for topics in STEM disciplines. Unfortunately, environmental science teachers sometimes lack the tools to engage their students in hands-on experimentation in real-world research outside of the classroom. Partnerships between science professionals and teachers can help address this disparity,…
Descriptors: Instructional Effectiveness, Teaching Methods, Scientific Concepts, Concept Formation
Delen, Ibrahim; Krajcik, Joseph – International Journal of Science Education, 2015
Explanation studies underlined the importance of using evidence in support of claims. However, few studies have focused on students' use of others' data (second-hand data) in this process. In this study, students collected data from a local water source and then took all the data back to the classroom to create scientific explanations by using…
Descriptors: Secondary School Science, Middle School Students, Grade 6, Science Process Skills
Peckenham, John M.; Thornton, Teresa; Peckenham, Phoebe – Journal of Science Education and Technology, 2012
As part of a research project to evaluate the effects of sand and gravel mining on water quality, students were trained to analyze their own drinking water for simple quality indicators. Indicators analyzed were pH, conductivity, hardness, nitrate, chloride, and dissolved iron. Approximately 523 analyses were completed by students between 2006 and…
Descriptors: Water Quality, Water, Quality Control, Laboratories

Finkel, Liza; Early, Heidi; Fuller, Erin; Gleske, Angel; Hadwen, Sandy; Menard, Christina; Roderick, Stefanie – Science Teacher, 1998
Presents details of how a local stream is studied as part of a ninth-grade science curriculum, the goal of which is to learn about the school's ecosystem. Provides examples of specific group projects related to the stream. (DDR)
Descriptors: Biology, Data Analysis, Drinking Water, Ecology
Seier, Mark; Goedeken, Suzy – Science Teacher, 2005
In 2002 Shell Creek Watershed Improvement Group turned to the Newman Grove Public Schools' science department to help educate the public on water quality in the watershed and to establish a monitoring system that would be used to improve surface and groundwater quality in the creek's watershed. Nebraska Department of Environmental Quality provided…
Descriptors: Vacations, Data Analysis, Water Quality, Science Departments

Lee, D. G.; Corbet, Sarah A. – Journal of Biological Education, 1989
Described is a technique for monitoring the quality of freshwater aquatic habitats. Methods, comparison of samples, equipment, and data analysis are discussed and an example is presented. (CW)
Descriptors: Biology, College Science, Data Analysis, Ecology

Parker, Pamela H.; Mahoney, Melissa – Science Teacher, 1998
Details a project in which students assess the health of two seemingly different streams by conducting chemical and biological tests. Focuses on student and teacher use of a watershed educational project in Tennessee. (DDR)
Descriptors: Biology, Chemical Analysis, Data Analysis, Ecology
Wu, Hsin-Kai; Krajcik, Joseph S. – Science Education, 2006
This study explores seventh graders' use of inscriptions in a teacher-designed project-based science unit. To investigate students' learning practices during the 8-month water quality unit, we collected multiple sources of data (e.g., classroom video recordings, student artifacts, and teacher interviews) and employed analytical methods that drew…
Descriptors: Teaching Methods, Grade 7, Water Quality, Science Education
Variano, Evan; Taylor, Karen – Science Teacher, 2006
Inquiry can be implemented in various ways, ranging from simple classroom discussions to longterm research projects. In this article, the authors developed a project in which high school students were introduced to the nature and process of scientific discovery through a two-week guided inquiry unit on "limnology"--the study of fresh water, which…
Descriptors: Data Analysis, Field Trips, Inquiry, High School Students

Espinoza, Fernando – Science Activities, 2002
Describes a science activity appropriate for middle and high school students investigating the temperature, pH, and conductivity of a man-made lake. Uses an inquiry-based interdisciplinary approach. Collects and analyzes data to determine whether there is any significant difference among the factors considering the very little variance in lake…
Descriptors: Chemical Analysis, Chemistry, Computer Uses in Education, Data Analysis

Kinneavy, Kevin – Mathematics Teaching in the Middle School, 1996
Describes an interdisciplinary unit involving math, English, science, and geography. Discusses support and development of the project, objectives for teachers and students, pitfalls and successes, equipment and supplies, and benefits. (MKR)
Descriptors: Data Analysis, Elementary Education, Geography, Interdisciplinary Approach
Emery, Doug; And Others – Clearing, 1991
Two programs are described in which students monitor water quality and pollution in local streams and rivers. Discussed is the integration of computers and telecommunications into the classroom. Suggested activities that might start students thinking about a classroom project are included. (KR)
Descriptors: Computer Uses in Education, Data Analysis, Elementary School Science, Environmental Education