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Crumley, Sean; DeJarnette, Anna F. – Science Teacher, 2022
As a high school AP Physics 1 and 2 teacher, Sean Crumley wanted to create a curricular unit that would authentically connect literacy, opportunities for writing, and science standards while engaging a 21st-century student. This article provides an example of how Crumley incorporated writing into one of his AP physics units, and it could serve as…
Descriptors: Writing Achievement, Advanced Placement, Physics, High School Students
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Hewitt, Paul G. – Science Teacher, 2016
Examples of equilibrium are evident everywhere and the equilibrium rule provides a reasoned way to view all things, whether in static (balancing rocks, steel beams in building construction) or dynamic (airplanes, bowling balls) equilibrium. Interestingly, the equilibrium rule applies not just to objects at rest but whenever any object or system of…
Descriptors: Physics, Motion, Kinetics, Scientific Concepts
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Pleasants, Jacob – Science Teacher, 2018
In classroom science laboratories, unlike a real science laboratory, the teacher can guide students away from potential dead ends and toward data that are most likely to result in accurate conclusions. Sometimes, though, allowing students to pursue dead ends and to collect "bad" data can provide especially rich learning opportunities.…
Descriptors: Science Instruction, Science Experiments, Science Laboratories, Laboratory Experiments
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Bruxvoort, Crystal; Jadrich, James – Science Teacher, 2016
Science students should undertake engineering design projects and carry out scientific investigations, as recommended by the "Next Generation Science Standards" (NGSS Lead States 2013). However, studies show that students misconstrue the goals of science and engineering and are uncertain about their respective practices (Gilbert and Wade…
Descriptors: STEM Education, Science Instruction, Equipment, Engineering
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Staehling, Erica – Science Teacher, 2015
This article describes a lesson on the greenhouse effect in which students explore blackbody radiation and Wien's law. The lesson, which has been tested in a variety of high school physics classrooms, uses probeware and online simulations and combines two well-established instructional strategies: the 5E Learning Cycle (Bybee et al. 2006) and the…
Descriptors: Lesson Plans, Climate, Scientific Concepts, Scientific Principles
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Kruse, Jerrid; Wilcox, Jesse – Science Teacher, 2015
High school students often enter classrooms with misconceptions about density. While many students may have studied the concept in middle school, they lack the understanding on which to build more advanced concepts, such as the particulate nature of matter. This lack of understanding poses problems for students' learning about Pascal's principle…
Descriptors: Scientific Concepts, Misconceptions, Science Instruction, Scientific Principles
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Wilcox, Jesse; Kruse, Jerrid; Herman, Benjamin – Science Teacher, 2015
Even though density is taught in middle school, high school students often struggle to understand that the density of a substance is consistent regardless of amount. This is because many high school students know density = mass/volume, but do not have the conceptual understanding necessary to explain density-related phenomena. The scaffolded…
Descriptors: Scientific Concepts, Misconceptions, Science Instruction, Scientific Principles
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Tretter, Thomas – Science Teacher, 2012
Teachers strive to engage students in rich and varied experiences involving exploration. These experiences should be accessible to all types of learners (e.g., visual, kinesthetic, mathematically inclined), offering multiple pathways for engagement at different levels of sophistication and accommodating both conceptual and computational…
Descriptors: Physics, Video Technology, Teaching Methods, Science Instruction
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Meyer, Allison Antink – Science Teacher, 2012
Science teachers are often content to leave creativity to the arts and humanities classes. Fostering creativity in science, if attempted at all, is a challenge often relegated to the gifted classroom. But not just the privileged few have the capacity to be creative. Simply restructuring existing lessons can help promote creativity in all science…
Descriptors: Thinking Skills, Creativity, Science Teachers, Humanities
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Campbell, Todd; Neilson, Drew; Oh, Phil Seok – Science Teacher, 2013
Of the eight practices of science identified in "A Framework for K-12 Science Education" (NRC 2012), helping students develop and use models has been identified by many as an anchor (Schwarz and Passmore 2012; Windschitl 2012). In instruction, disciplinary core ideas, crosscutting concepts, and scientific practices can be meaningfully…
Descriptors: Physics, Models, Science Education, Science Instruction
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Lancor, Rachael – Science Teacher, 2009
Projectile motion, a cornerstone topic of introductory physics, is usually a student's first exposure to the problem-solving techniques used in this subject. Often, this is an inactive learning experience--students work with pencil and paper to read and solve projectile motion problems (e.g., diagrams and descriptions of balls being hit, kicked,…
Descriptors: Physics, Motion, Learning Experience, Science Instruction
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Eisenstein, Stanley – Science Teacher, 2008
First-year physics students often have a difficult time grasping Newton's laws of motion and recognizing the forces that these laws depend on. The "Paper Car" project is an experiential activity that is rich in application of force principles. It is also simple enough that students are able to integrate straightforward but non-trivial physics…
Descriptors: Physics, Motion, Teaching Methods, Scientific Principles
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Yang, Li-hsuan – Science Teacher, 2008
This article describes a thought-provoking lesson that compares various arrangements of lamp-battery circuits to help students develop the motivation and competence to participate in scientific discourse for knowledge construction. Through experimentation and discourse, students explore concepts about voltage, current, resistance, and Ohm's law.…
Descriptors: Physics, Lighting, Science Instruction, Science Experiments
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Creutz, E. – Science Teacher, 1976
Illustrates how both large entities (such as stars and galaxies) and small entities (such as fundamental particles) obey the same physical laws. Discusses quantum mechanics, Newton's laws, and general relativity. (MLH)
Descriptors: Instructional Materials, Mechanics (Physics), Physics, Quantum Mechanics
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Zucker, Andrew A.; King, Karen E. – Science Teacher, 2009
The declining cost of computers and wireless networks has made laptop programs more affordable than ever. At the same time, the internet resources available to teachers and students have grown exponentially in the 15 years since web browsers first became practical. As a result of these trends, growing numbers of students nationwide are provided…
Descriptors: Computer Uses in Education, Internet, Computer Networks, Teaching Methods
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