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Showing 1 to 15 of 149 results Save | Export
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K. K. Mashood; Arvind Kumar; Anwesh Mazumdar – International Journal of Mathematical Education in Science and Technology, 2024
Working with approximations is a common practice in physics. This paper presents an exploratory study of student understanding of some of the elementary aspects of approximations encountered in college physics. For this purpose, a questionnaire (a set of 14 multiple-choice questions) was developed to probe how students dealt with these aspects in…
Descriptors: Physics, Science Instruction, Mathematical Models, Undergraduate Students
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Andreas Haraldsrud; Tor Ole B. Odden – Journal of Chemical Education, 2023
When learning chemistry, students must learn to extract chemical information from mathematical expressions. However, chemistry students' exposure to mathematics often comes primarily from pure mathematics courses, which can lead to knowledge fragmentation and potentially hinder their ability to use mathematics in chemistry. This study examines how…
Descriptors: Chemistry, Mathematics, Computation, Cognitive Processes
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Lyrica Lucas; Anum Khushal; Robert Mayes; Brian A. Couch; Joseph Dauer – International Journal of Science Education, 2025
Educational reform priorities such as emphasis on quantitative modelling (QM) have positioned undergraduate biology instructors as designers of QM experiences to engage students in authentic science practices that support the development of data-driven and evidence-based reasoning. Yet, little is known about how biology instructors adapt to the…
Descriptors: Undergraduate Students, College Science, Biology, Classroom Observation Techniques
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Derek J. Bischoff; Michael E. Mackay; Sheldon A. Hewlett – Journal of Chemical Education, 2024
Upper-division undergraduate students are introduced to polymer processing using material extrusion fused filament fabrication 3D printing to make poly(lactic acid) (PLA) mechanical testing specimens. Computer aided design and slicing software packages are used to demonstrate the process of preparing 3D computer models for printing. Following the…
Descriptors: Plastics, Mathematical Models, Printing, Computer Peripherals
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Rodriguez, Jon-Marc G.; Lazenby, Katherine; Scharlott, Leah J.; Hunter, Kevin H.; Becker, Nicole M. – Journal of Chemical Education, 2020
Metamodeling ideas move beyond using a model to solve a problem to consider the nature and purpose of a model, such as reasoning about a model's empirical basis and understanding why and how a model might change or be replaced. Given that chemistry relies heavily on the use of models to describe particulate-level phenomena, developing…
Descriptors: Science Instruction, College Science, Undergraduate Study, Inquiry
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Liu, Chia-Yu; Wu, Chao-Jung; Chiou, Guo-Li; Wong, Wing-Kwong – Journal of Baltic Science Education, 2022
Proposing scientific descriptions is critical for individuals to cope with daily problems and acquire essential information. Nonetheless, few classes have enhanced students' ability to describe facts of scientific phenomena. Thus, using a tool of technology-based laboratory, this research examined whether students' scientific descriptions and…
Descriptors: Undergraduate Students, Mathematical Models, Science Instruction, Scientific Principles
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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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Romano, Paola; Mandrone, Mario – Physics Education, 2019
In this paper the muscular activity will be treated from a physical point of view, considering the main physical parameters that can be quantified. A brief and simple theoretical treatment will be followed by some homeworks for students. The problems have a difficulty degree typical of an undergraduate class, and the arguments have been chosen…
Descriptors: Biophysics, Muscular Strength, Homework, Human Body
Obaya Valdivia, Adolfo E.; Osornio, Carlos Montaño; Vargas-Rodríguez, Yolanda Marina – Online Submission, 2021
In the resolution of problems in chemical kinetics and catalysis the mathematical models relate the independent variable that is usually time, with the dependent variable which is normally the concentration of a reactant. They conform to linear models, whose parameters such as the ordering to origin and the slope are kinetic parameters, applying…
Descriptors: Problem Based Learning, Problem Solving, Chemistry, Kinetics
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Parra, Alfredo; Ordenes, Jorge; de la Fuente, Milton – Physics Teacher, 2018
Science learning for undergraduate students requires grasping a great number of theoretical concepts in a rather short time. In our experience, this is especially difficult when students are required to simultaneously use abstract concepts, mathematical reasoning, and graphical analysis, such as occurs when learning about RC circuits. We present a…
Descriptors: Science Instruction, Undergraduate Students, Mathematical Models, Scientific Concepts
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Pasachoff, Jay M.; Mativi, Jason W. – Physics Teacher, 2020
To span the great distance from the solar system to the farthest clusters of galaxies in the universe, astronomers break down the distance indicators into steps. The nearest ones are measured geometrically, with what is known as parallax. Among the objects whose distances are thus directly measured are a rare type of star known as a Cepheid…
Descriptors: Science Instruction, Astronomy, Measurement Techniques, Science Laboratories
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Durán, Pablo A.; Marshall, Jill A. – International Journal of Mathematical Education in Science and Technology, 2019
The purpose of this study was to investigate the mathematical needs of biological sciences undergraduate students. Student needs were measured through a needs assessment methodology scheme that included a content analysis of peer-reviewed journals, a nationwide cross-sectional survey, and semi-structured interviews. The research question that…
Descriptors: Biological Sciences, Undergraduate Students, Needs Assessment, Student Needs
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Simcock, David C.; Chua, Wei-Hang; Hekman, Margreet; Levin, Matthew T.; Brown, Simon – Knowledge Management & E-Learning, 2019
Audiovisual recordings of lectures are available to many students in all disciplines. The use of lecture recordings has been studied extensively, but it is still not clear how, or how much, they are actually used. Previous analysis of their use has been based on either survey data or computer logs of access. In the latter case, measurements of…
Descriptors: Audiovisual Aids, Video Technology, Lecture Method, Science Instruction
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Florjanczyk, Ursula; Ng, Derek P.; Andreopoulos, Stavroula; Jenkinson, Jodie – Biochemistry and Molecular Biology Education, 2018
The mathematical models that describe enzyme kinetics are invaluable predictive tools in numerous scientific fields. However, the daunting mathematical language used to describe kinetic behavior can be confusing for life science students; they often struggle to conceptualize and relate the mathematical representations to the molecular phenomena…
Descriptors: Undergraduate Students, Science Instruction, College Science, Animation
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Bauer, Christina A.; Hamada, Terianne Y.; Kim, Hyesoo; Johnson, Mathew R.; Voegtle, Matthew J.; Emrick, Matthew S. – Journal of Chemical Education, 2018
Quantum dots (QDs) are useful for demonstrating the particle-in-a-box (PIB) model utilized in quantum chemistry, and can readily be applied to a discussion of both thermodynamics and kinetics in an undergraduate laboratory setting. Modifications of existing synthetic procedures were used to create QDs of different sizes and compositions (CdS…
Descriptors: Science Instruction, College Science, Undergraduate Study, Chemistry
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