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Schnittka, Christine; Richards, Larry – Science Teacher, 2016
Solar energy is clean, free, and abundant worldwide. The challenge, however, is to convert it to useful forms that can reduce our reliance on fossil fuels. This article presents an activity for physical science classes in which students learn firsthand how solar energy can be used to produce electricity specifically for transportation. The…
Descriptors: Energy, Fuels, Science Instruction, Teaching Methods
Hilton, Annette; Hilton, Geoff – Teaching Science, 2016
In many scientific contexts, students need to be able to use mathematical knowledge in order to engage in scientific reasoning and problem-solving, and their understanding of scientific concepts relies heavily on their ability to understand and use mathematics in often new or unfamiliar contexts. Not only do science students need high levels of…
Descriptors: Science Instruction, Mathematics Skills, Mathematical Concepts, Problem Solving
Lesseig, Kristin; Slavit, David; Nelson, Tamara Holmlund – Middle School Journal, 2017
Given the current emphasis on science, technology, engineering, and math (STEM) education and its key attributes, middle school is an optimal time to implement STEM-based curricula. However, the interdisciplinary and open-ended nature of STEM projects often makes implementation difficult. In this article, we describe a professional development…
Descriptors: STEM Education, Middle School Students, Middle School Teachers, Interdisciplinary Approach
Anderson, Elsa; Dryden, Lisa; Garza, Esther; Robles-Goodwin, Patsy J. – English in Texas, 2017
This article describes an instructional model for integrating children's literature and language arts into the elementary school science curriculum. This science-literacy instructional model is an adaptation from the original 5E model of scientific inquiry. The model demonstrates how reading, writing, listening, and speaking can be incorporated…
Descriptors: Models, Teaching Methods, Childrens Literature, Language Arts
Boesdorfer, Sarah; Greenhalgh, Scott – Science Teacher, 2014
The "Next Generation Science Standards" (NGSS Lead States 2013) urge science teachers to include engineering practices and ideas in their already full science curriculum, but many teachers do not know where to start. Only 7% of high school science teachers report feeling "very well prepared" to teach engineering. The…
Descriptors: Science Curriculum, Science Instruction, Science Teachers, Engineering
Razzouk, Rabieh; Dyehouse, Melissa; Santone, Adam; Carr, Ronald – Science Teacher, 2014
Teachers typically teach subjects separately, but integrated science, technology, engineering, and mathematics (STEM) curriculums that focus on real-world practices are gaining momentum (NAE and NRC 2009). Before release of the "Next Generation of Science Standards" ("NGSS") (NGSS Lead States 2013), 36 states already had a…
Descriptors: Plants (Botany), Pollution, Science Instruction, Standards
Carlone, Heidi; Smithenry, Dennis – Science and Children, 2014
Imagine two fourth-grade classes. Both contain students of comparable demographics and highly respected teachers each with four to five years of experience. Both classes engage in science curricula that emphasize science and engineering practices as outlined in the "Next Generation Science Standards" (NGSS Lead States 2013). Both classes…
Descriptors: Elementary School Students, Elementary School Teachers, Science Curriculum, Elementary School Curriculum
O'Connor, Kim C. – Chemical Engineering Education, 2007
Advances in the biological sciences necessitate the training of chemical engineers to translate these fundamental discoveries into applications that will benefit society. Accordingly, Tulane University revised its core chemical engineering curriculum in 2005 to include a new introductory course in bioengineering and biotechnology for sophomores.…
Descriptors: Introductory Courses, Biotechnology, Chemical Engineering, Science Instruction
Trefz, Rick – 1996
The academic needs of gifted students are qualitatively different from those of regular students. This document describes a course that is differentiated for gifted students in the areas of content, process, learning environment, and product. Emphasis is placed on higher order thinking skills through independent study dealing with real world…
Descriptors: Academically Gifted, Course Descriptions, Problem Solving, Science Activities
Peer reviewedPardue, Harry L.; Woo, Jannie – Journal of Chemical Education, 1984
Proposes an approach to teaching analytical chemistry and chemical analysis in which a problem to be resolved is the focus of a course. Indicates that this problem-oriented approach is intended to complement detailed discussions of fundamental and applied aspects of chemical determinations and not replace such discussions. (JN)
Descriptors: Chemical Analysis, Chemistry, Clinical Diagnosis, College Science
Peer reviewedAndersen, Hans O. – Hoosier Science Teacher, 1984
Discusses reasons for the failure of the post-Sputnik science curricula and offers criteria for selecting relevant curriculum content, suggesting that these curricula focus on problem-solving. Lists seven problem areas (technological, environmental, empirical, historical, aesthetic, philosophical, and futuristic) with recommended topics for each…
Descriptors: Curriculum Development, Educational Objectives, High Schools, Problem Solving
Peer reviewedTyser, Robin W.; Cerbin, William J. – BioScience, 1991
Described is an undergraduate biology course which uses exercises for teaching critical thinking. A line-of-reasoning model is presented. Evidence for the effectiveness of this approach is presented. (CW)
Descriptors: Biology, College Science, Course Descriptions, Critical Thinking
Wildlife Conservation Society, Bronx, NY. – 1995
The goal of this guide is to address a major environmental dilemma: worldwide habitat destruction and the disappearance of species. This guide is one of six that are included in the Habitat Ecology Learning Program (HELP), a holistic life science curriculum that involves students in an in-depth study of ecology. HELP includes six teaching guides…
Descriptors: Biology, Calculators, Communication Skills, Conservation (Environment)
Wildlife Conservation Society, Bronx, NY. – 1995
The goal of this guide is to address a major environmental dilemma: worldwide habitat destruction and the disappearance of species. This guide is one of six that are included in the Habitat Ecology Learning Program (HELP), a holistic life science curriculum that involves students in an in-depth study of ecology. HELP includes six teaching guides…
Descriptors: Biology, Calculators, Communication Skills, Conservation (Environment)
Margulies, Nancy; Sylwester, Robert – 1998
This teacher's guide presents current scientific research on the process of human learning and stresses the importance of metacognition. Focus is placed on the integrated pair of concepts, emotion and attention, with analogies to traffic conditions being employed to aid understanding. Background information on human emotion and attention, a…
Descriptors: Attention, Biology, Cognitive Processes, Cognitive Psychology

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