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Chia, Vanessa Y. Y.; Ho¨ltta¨-Otto, Katja; Anariba, Franklin – Journal of Chemical Education, 2022
We provide an update on the "electrochemistry designette" in relation to its pedagogical effectiveness to students and experiential learning. We have previously proposed that the designette be applied as an assessment tool to measure the students' competence on electrochemical principles through a series of objective metrics. Based on…
Descriptors: Chemistry, Visualization, Scientific Principles, Misconceptions
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Kent-Schneider, Isaiah; Kruse, Jerrid – Physics Teacher, 2020
Within physics education research (PER), inductive teaching strategies (e.g., inquiry-based teaching) have long been a goal. Yet others do not seem to be convinced that consensus exists with respect to the goals of physics education and identify three possible goals as: (1) to teach practical, factual knowledge, (2) to develop deep understandings…
Descriptors: Scientific Principles, Physics, Science Instruction, History Instruction
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Milsom, John A. – Physics Teacher, 2021
The classic brachistrochrone problem is standard material in intermediate mechanics. Many variations exist including some accessible to introductory students. While a quantitative solution isn't feasible in introductory classes, qualitative discussions can be very beneficial since kinematics, Newton's laws, energy conservation, and motion along…
Descriptors: Mechanics (Physics), Introductory Courses, College Students, Motion
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Hackett, Laura; Simpson, Sherralyn – Primary Science, 2022
LASAR (Learning about Science and Religion) has been exploring different opportunities to engage children with practical science enquiry to develop children's understanding of the nature of science and how they suppose science connects to 'big questions'. After-school club opportunities and classroom opportunities are presented.
Descriptors: Science Instruction, Scientific Principles, Inquiry, After School Programs
Tyler A. Shaffer; Carlos U. Herrada; Avery M. Walker; Laura D. Casto-Boggess; Lisa A. Holland; Timothy R. Johnson; Megan E. Jones; Yousef S. Elshamy – Journal of Chemical Education, 2023
Electrophoresis is integral to analytical and biochemistry experiences in undergraduate education; however, fundamental principles of the method are often taught in upper-level laboratories through hands-on experiences. A laboratory activity is reported that teaches the concepts of electrophoretic mobility and electroosmotic flow. A single…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Cost Effectiveness
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Kallepalli, Samaya; Johnson, Lydia; Mattson, Bruce – Journal of Chemical Education, 2021
Thomas Graham discovered the law that bears his name while studying gas diffusion into air and other gases. He also found that the same relationship held with gas effusion, the movement of gases through a pinhole into a vacuum. Modern understanding of diffusion and effusion is based on kinetic-molecular theory, and it is generally accepted that…
Descriptors: Chemistry, Scientific Concepts, Scientific Principles, Kinetics
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Park, Wonyong; Song, Jinwoong – Science & Education, 2018
There has been growing criticism over the aims, methods, and contents of practical work in school science, particularly concerning their tendency to oversimplify the scientific practice with focus on the hypothesis-testing function of experiments. In this article, we offer a reading of Johann Wolfgang von Goethe's scientific writings--particularly…
Descriptors: Science Experiments, Scientific Methodology, Experimenter Characteristics, Color
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Briggs, Michael – Physics Teacher, 2019
The mystery tube is a fairly well known activity among science teachers for illustrating the nature of science. A variety of procedures have been presented for carrying out this activity, such as Scott Miller's method based on the BCSE 5E Instructional Model. Mystery tubes and other "black box" activities allow the students to engage in…
Descriptors: Physics, Science Instruction, Scientific Principles, Teaching Methods
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Pritchard, Matt – School Science Review, 2017
Magicians and scientists have a curious relationship, with both conflicting views and common ground. Magicians use natural means to construct supernatural illusions. They exploit surprise and misdirected focus in their tricks. Scientists like to deconstruct and explain marvels. They methodically measure, evaluate and repeat observations. However,…
Descriptors: Scientific Principles, Scientific Methodology, Science Instruction, Science Activities
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Lane, W. Brian – Physics Teacher, 2019
In tabletop games involving dice, it is important to ensure randomness of the dice rolls and to protect other gaming elements from being scattered by rolling dice. One way of ensuring random rolls and protecting gaming elements is to drop dice into a dice-rolling tower ("dice tower"). A dice tower is usually small (20 cm by 20 cm) and…
Descriptors: Science Instruction, Physics, Educational Games, Manipulative Materials
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Lee, Okhee – Science and Children, 2020
A "Framework for K-12 Science Education and the Next Generation Science Standards" ("NGSS") are intended for all students, hence "all standards, all students" (NGSS Lead States 2013). To make this vision a reality, the "NGSS" highlight three key instructional shifts: (1) explain phenomena or design solutions…
Descriptors: Science Instruction, Grade 5, Elementary School Science, Urban Schools
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Koumara, Anna; Plakitsi, Katerina; Lederman, Norman – Science Teacher, 2022
How do scientists make inferences for something they cannot directly observe? The Black Box approach seems ideal to help students understand how scientists work. Black Boxes are sealed units; their interior is not accessible. The effort to determine their possible content (internal structure) demands successive modifications in hypothesis,…
Descriptors: Teaching Methods, Science Instruction, Electronic Equipment, Scientific Principles
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Lutz, Joe; Sylvester, Kevin; Oliver, Keith; Herrington, Deborah – Physics Teacher, 2017
"For every action there is an equal and opposite reaction." "Except when a bug hits your car window, the car must exert more force on the bug because Newton's laws only apply in the physics classroom, right?" Students in our classrooms were able to pick out definitions as well as examples of Newton's three laws; they could…
Descriptors: Scientific Concepts, Scientific Principles, Physics, Concept Teaching
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Jiménez-Liso, Maria Rut; López-Banet, Luisa; Dillon, Justin – Science & Education, 2020
We propose explicit and implicit approaches for the teaching of acid-base chemistry based on research into the history and nature of science (NoS). To support these instructional proposals, we identify four rationales for students to understand acid-base processes: daily life, socio-scientific, curriculum, and history of science. The extensive…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Scientific Concepts
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Kaltcheva, N. T.; Pritzl, B. J. – Physics Education, 2018
Stars are point-source emitters that are the closest to the definition of a blackbody in comparison to all other similar sources of radiation found in nature. Existing libraries on stellar spectra are thus a valuable resource that can be used to introduce the laws of thermal radiation in a classroom setting. In this article we briefly describe…
Descriptors: Radiation, Scientific Concepts, Scientific Principles, Spectroscopy
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