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Bernard, Rachel; Henegan, Colleen – Science Teacher, 2018
For many students, the first--and sometimes only--chance to look through a microscope is in high school biology class, where they observe plant and animal cells up close. Even in college, few students use a microscope for a subject other than biology. Thus, it can be a surprise to learn that microscopes are a primary tool used to understand the…
Descriptors: Science Instruction, Science Laboratories, Laboratory Equipment, Biology
Howarth, Richard – Environmental Education, 1992
Discusses the way in which physics can be used to determine the structure of the Earth and observe the processes indicative of the structures dynamic nature. (MDH)
Descriptors: Earth Science, Earthquakes, Environmental Education, Geology

Cordua, William S. – Science Activities, 1994
Discusses common as well as uncommon minerals that are attracted to a hand magnet. Included in the discussion are answers to the following questions: (1) What causes this attraction? and (2) How many different minerals respond to a hand magnet? (ZWH)
Descriptors: Elementary Secondary Education, Geology, Magnets, Minerals

Revetta, Frank A.; Das, Biman – Journal of Geoscience Education, 2002
Suggests an integrated approach to make science teaching and learning more effective, interesting and motivating to students. Argues that team teaching by physics and geology departments enables students to learn concepts and principles of physics and apply them to solve geological problems facing the local community. Reports that a typical…
Descriptors: Earth Science, Geology, Higher Education, Interdisciplinary Approach

Hartel, Hermann – Physics Education, 2000
Finds that computer simulations can be used to visualize the processes involved with lunar tides. Technology adds value, thus opening new paths for a more distinct analysis and increased learning results. (Author/CCM)
Descriptors: Astronomy, Computer Simulation, Earth Science, Educational Technology

Cordua, William S. – Science Activities, 1996
Presents experiments with polarized light for grades 8-12 which can produce colorful effects with a minimum of equipment and can illustrate many principles of physics, chemistry, and geology. (MKR)
Descriptors: Chemistry, Demonstrations (Science), Geology, Light
California Univ., San Diego, La Jolla. Inst. of Marine Resources. – 1996
This curriculum and classroom activity guide considers evidence gathered in answer to questions concerning global environmental change. It describes methods that biologists, chemists, geologists, meteorologists, and physicists use to gather and interpret their findings. The activities and approaches in this guide were developed to meet the skill…
Descriptors: Biology, Chemistry, Climate Change, Elementary Secondary Education

Young, Charles T. – Journal of Geoscience Education, 2002
Details the use of tabletop models that demonstrate concepts in direct current electrical resistivity, self-potential, and electromagnetic geophysical models. Explains how data profiles of the models are obtained. (DDR)
Descriptors: College Curriculum, Concept Formation, Earth Science, Geology

Caballero, Julio Faustino; Harris, Delphia F. – Science Teacher, 1996
Presents an activity that uses the study of earthquakes to provide a rich educational experience to reinforce and expand students' knowledge of the structure of the Earth, provide an application of physics concepts such as force and energy, and present these topics integrated with a unit on mathematics. (JRH)
Descriptors: Earth Science, Earthquakes, Energy, Force

Hall-Wallace, Michelle; Mitchell, Carl – Science Teacher, 1996
Presents a unit that focuses on landslides and integrates earth science, physics, chemistry, and math. Includes activities to investigate porosity, permeability, cohesion, saturation, and gravity. (JRH)
Descriptors: Chemistry, Earth Science, Geology, Interdisciplinary Approach

Lucidi, Louis; Mecca, Peter M. – Science Teacher, 2001
Introduces a project in which students examined the physics, chemistry, and geology of radon and used available technology to measure radon concentrations in their homes. Uses the inquiry process, analytical skills, communication skills, content knowledge, and production of authentic products for student assessment. (YDS)
Descriptors: Chemical Analysis, Chemistry, Communication Skills, Evaluation
Perry, Phyllis J. – 1994
The purpose of this guide is to highlight some broad areas in which teachers and other adults have exceptional opportunities to encourage and enjoy teaching children science. Each area in the book provides some hands-on ideas for projects as well as an annotated list of readily available resources that might prove helpful on the topic at hand. The…
Descriptors: Astronomy, Biology, Botany, Chemistry
Blueford, J. R.; And Others – 1985
A unified science approach is incorporated in this K-6 curriculum mode. The program is organized into six major cycles. These include: (1) science, math, and technology cycle; (2) universe cycle; (3) life cycle; (4) water cycle; (5) plate tectonics cycle; and (6) rock cycle. An overview is provided of each cycle's major concepts. The topic…
Descriptors: Biology, Chemistry, Curriculum Design, Elementary Education
Bednarczyk, Angela; And Others – 1981
The guide lists program objectives for science instruction of hearing impaired students at Kendall Demonstration Elementary School. The curriculum, it is explained, is based on theories of J. Piaget. Objectives are stated in terms of process skills within four Piagetian stages of development: pre-operational, transition to concrete, concrete, and…
Descriptors: Behavioral Objectives, Biology, Deafness, Earth Science
Mauldin, Lundie; Frankenberg, Dirk – 1978
Although North Carolina's coastal water is chemically and physically similar to other bodies of sea water, the specific manner in which tides and waves act upon the coastline is unique. Accordingly, the 30 activities presented in this manual are intended to help junior high school students understand how physical forces modify coastal areas. While…
Descriptors: Earth Science, Environmental Education, Geology, Junior High Schools
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