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Showing 76 to 90 of 683 results Save | Export
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Bates, Alan – Physics Teacher, 2021
The law of conservation of momentum can be applied to a wide range of processes whether it is the collision of subatomic particles, rocket propulsion, or the recoil of a cannon. In this experiment two technologies, the Arduino microcontroller and a PASCO smart cart, are used to create a movable rubber band launcher. The Arduino microcontroller is…
Descriptors: Science Instruction, Motion, Physics, Scientific Concepts
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Dumeignil, Franck; Paul, Jean-Francois; Paul, Sebastien – Journal of Chemical Education, 2017
With the development of a strong bioeconomy sector related to the creation of next-generation biorefineries, heterogeneous catalysis is receiving renewed attention. Indeed, catalysis is at the core of biorefinery design, and many new catalysts and catalytic processes are being developed. On the one hand, they are based on knowledge acquired during…
Descriptors: Interdisciplinary Approach, Chemistry, Biology, Thermodynamics
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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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Stefanidis, Lazaros; Scinto, Krystal V.; Strada, Monica I.; Alper, Benjamin J. – Journal of Chemical Education, 2018
Most biochemical transformations involve more than one substrate. Bisubstrate enzymes catalyze multiple chemical reactions in living systems and include members of the transferase, oxidoreductase, and ligase enzyme classes. Working knowledge of bisubstrate enzyme kinetic models is thus of clear importance to the practicing biochemist. However,…
Descriptors: Introductory Courses, Kinetics, Biochemistry, Models
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Ginsberg, Edw S. – Physics Teacher, 2018
The compatibility of the Newtonian formulation of mechanical energy and the transformation equations of Galilean relativity is demonstrated for three simple examples of motion treated in most introductory physics courses (free fall, a frictionless inclined plane, and a mass/spring system). Only elementary concepts and mathematics, accessible to…
Descriptors: Energy, Scientific Concepts, Physics, Motion
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Mohazzabi, Pirooz – Physics Teacher, 2018
In an article in this journal, it was shown that air resistance could never be a significant source of error in typical free-fall experiments in introductory physics laboratories. Since projectile motion is the two-dimensional version of the free-fall experiment and usually follows the former experiment in such laboratories, it seemed natural to…
Descriptors: Physics, Introductory Courses, Laboratory Experiments, Error Patterns
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Fernández-Terán, Ricardo; Sucre-Rosales, Estefanía; Echevarría, Lorenzo; Hernández, Florencio E. – Journal of Chemical Education, 2020
Herein we present an engaging description of the existent analogy between social distancing during the COVID-19 pandemic and the collision cross-section of particles as defined in the collisional model for a chemical reaction. In addition, the link between collision cross-sections and kinetic rate constants is thoroughly established, bridging…
Descriptors: COVID-19, Pandemics, Disease Control, Scientific Concepts
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Levanov, Alexander V.; Isaikina, Oksana Ya. – Journal of Chemical Education, 2020
Investigation of the kinetics of phosphorescence decay is a suitable learning task in studying the formal kinetics, and also properties of crystal phosphors. Kinetics of phosphorescence decay of crystal phosphors can be experimentally investigated at home as part of distance learning, using a conventional digital photo camera and a luminescent…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Distance Education
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Balaton, M. C.; Da Silva, L. F.; Carvalho, P. S. – Physics Education, 2020
In this paper, we aim to show strategies for improving graph interpretation skills at middle and high school students using OZOBOT® BIT, a small and relatively low-cost programmable robot which had been used to teach programming to young children. OZOBOT's speed can be controlled by drawing lines with colour codes, as well as through a visual…
Descriptors: Middle School Students, High School Students, Skill Development, Graphs
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Vié, Clotilde; Fattaccioli, Jacques; Jacq, Philippe – Journal of Chemical Education, 2019
This activity introduces droplet-based millifluidics and the usage of aqueous droplets as independent chemical microreactors for reaction-kinetics studies. Students build their own droplet generators from common macroscopic glassware and connecting parts to create trains of millimeter-sized droplets in which a redox reaction takes place. The…
Descriptors: Chemistry, Kinetics, Undergraduate Students, College Science
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Stannard, Warren B. – Physics Education, 2018
In most high school physics classes, gravity is described as an attractive force between two masses as formulated by Newton over 300 years ago. Einstein's general theory of relativity implies that gravitational effects are instead the result of a "curvature" of space-time. However, explaining why things fall without resorting to Newton's…
Descriptors: Physics, Scientific Concepts, Motion, Kinetics
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Vetrone, James – Physics Teacher, 2018
Students often struggle to understand the independence of velocity vectors in two-dimensional motion. Despite seeing classic projectile demonstrations, it is probably not obvious to most new students why the path of motion is parabolic. Likewise, first-year students might not predict that the path of motion is linear in two-dimensional vector…
Descriptors: Physics, Motion, Science Instruction, Student Centered Learning
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Rivadulla, Francisco – Journal of Chemical Education, 2019
The Maxwell distribution of speeds, f(v), is the starting point for the calculation of the transport coefficients in kinetic-molecular theory. Most physical chemistry textbooks follow a path to derive f(v) similar to that used by Maxwell, which makes it difficult for students to understand its relationship with the equilibrium state of the system,…
Descriptors: Molecular Structure, Theories, Science Instruction, Chemistry
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Stephens, Lisa I.; Mauzeroll, Janine – Journal of Chemical Education, 2019
One of the unique advantages of electrochemistry is that the relationship between thermodynamics and kinetics is quantitative, which is the basis of voltammetry. Mathematical models of electrochemical systems take advantage of this relationship to predict the effect of changing a system property (e.g., concentration, scan rate, or rate constant)…
Descriptors: Chemistry, Mathematical Models, Thermodynamics, Kinetics
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Hartmann, Bruno; Priemer, Burkhard – Physics Education, 2019
In this paper we present a novel approach to teach kinetic energy as an observable and measurable concept. The fundamental principles have been outlined for gravitational potential energy in an earlier work, that we extend here. By accelerating or decelerating bodies with springs we begin, in a first step, with a direct comparison method for…
Descriptors: Science Instruction, Kinetics, Energy, Secondary School Science
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