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Blum, Caleigh; Taylor, Amy – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2022
Children are very curious about the world around them. You may find them peering at tadpoles in a pond, counting ants on a log, or wondering about the stars, the sun, and the moon. I have been asked many times: Is the moon really made of cheese? Do astronauts live on the moon? Why does the moon look different every time I look up? Introducing…
Descriptors: Grade 1, Elementary School Students, Astronomy, Science Instruction
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Rock, Cheryl; Metzger, Elizabeth; Metzger, Nzinga – Journal of Food Science Education, 2021
Organizational patterns can serve as a teaching strategy for instructors and as a learning tool for students to develop their expository writing skills, which are commonly required for assignments (for example, laboratory reports and research papers) in Food Science courses and in their future careers. The article discusses the importance of…
Descriptors: Expository Writing, Technical Writing, Writing Skills, Teaching Methods
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Holub, Jordan; Kruse, Jerrid; Menke, Lucas – Science and Children, 2019
In this article, the authors focus on students constructing observations of patterns to understand how surfaces affect the motion of an object. Students will use the patterns they observe to predict future motion of marbles (NGSS Lead States 2013). Students then apply their learning by engaging in an engineering task. By giving students a task to…
Descriptors: Science Instruction, Teaching Methods, Motion, Physics
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Ehsan, Hoda; Rehmat, Abeera P.; Cardella, Monica E. – Science and Children, 2019
Computational thinking can provide a basis for problem solving, for making evidence-based decisions, and for learning to code or create programs. Therefore, it is critical that all students across the K-12 continuum--including students in the early grades--have opportunities to begin developing problem solving and computational thinking skills.…
Descriptors: Teaching Methods, STEM Education, Computer Science Education, Thinking Skills
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Mulvey, Bridget – Science Teacher, 2016
Students best learn science through a combination of science inquiry and language learning. This article presents a series of chemistry lessons on the naming of compounds. The weeklong unit focuses on patterns across compound names and chemical formulas and addresses several of the "Next Generation Science Standards" (NGSS Lead States…
Descriptors: Science Instruction, Chemistry, Scientific Concepts, Naming
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Schaller, Chris P.; Graham, Kate J.; Jones, T. Nicholas – Journal of Chemical Education, 2014
Road map problems ask students to integrate their knowledge of organic reactions with pattern recognition skills to "fill in the blanks" in the synthesis of an organic compound. Students are asked to identify familiar organic reactions in unfamiliar contexts. A practical context, such as a medicinally useful target compound, helps…
Descriptors: Organic Chemistry, Synthesis, Pattern Recognition, Science Process Skills
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Walker, Justin – Physics Education, 2010
The benefits of using data logging to teach "how science works" are presented. Pedagogical approaches that take advantage of other school ICT are briefly described. A series of simple, quick experiments are given together with their resulting charts. Examples of the questions that arise from the charts show how the rich data lead to the refinement…
Descriptors: Science Instruction, Physics, Laboratory Equipment, Water
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Olsen, Robert J. – Journal of Chemical Education, 2008
I describe how data pooling and data visualization can be employed in the first-semester general chemistry laboratory to introduce core statistical concepts such as central tendency and dispersion of a data set. The pooled data are plotted as a 1-D scatterplot, a purpose-designed number line through which statistical features of the data are…
Descriptors: Familiarity, Visualization, Chemistry, Laboratories
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Cowan, Kay W.; Cipriani, Sandra – Young Children, 2009
Visual intelligence is a key element in the thought processes of the most capable and creative among individuals, and this intelligence is closely related to analogical thinking, a learner's ability to make connections between prior knowledge and newly presented information. This article describes an approach to teaching scientific inquiry at…
Descriptors: Science Process Skills, Prior Learning, Visual Literacy, Cognitive Processes
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Gooran, Deena; Braude, Stan – American Biology Teacher, 2007
Human Biology courses are typically offered for non-biology majors who, like students in high school biology courses, have varying degrees of motivation and background. The primary focus is on explaining the biology behind human health and disease, but human ecology, human evolution, and human genetics may also be covered. Hence, Human Biology…
Descriptors: Higher Education, Critical Thinking, Teaching Methods, Ecology
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Twiest, Meghan M. – Science and Children, 1986
Introduces an approach to teaching about the skin that involves making, comparing, and classifying its prints. Outlines the procedures for making skin prints and explains why different kinds of patterns exist in various parts of the body and also among individuals. (ML)
Descriptors: Biology, Elementary Education, Elementary School Science, Human Body
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Schrader, C. L. – Journal of Chemical Education, 1984
Discusses instructional strategies and activities designed to help students learn to recognize patterns and to create models to explain patterns. These include laboratory investigations and an exercise in which students are challenged to find the model used for the classroom seating arrangement. (JN)
Descriptors: Chemistry, High Schools, Models, Pattern Recognition
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Fensham, Peter; Kornhauser, Aleksandra – Journal of Chemical Education, 1982
Two presentations at the 1981 International Conference on Chemical Education are summarized: (1) current and future rationales for chemistry instruction and use of Gowin's V for more effective chemistry teaching and (2) creative adaptability toward challenges of chemistry content, society, and the individual, focusing on learning chemistry by…
Descriptors: Chemistry, College Science, Concept Formation, Educational Objectives