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Ji, Xuan; Liu, Xiaomei; Li, Muzi; Shao, Songxue; Chang, Jing; Du, Jing; Ma, Xiaofei; Feng, Xia; Zhu, Lina; Yu, Xi; Hu, Wenping – Journal of Chemical Education, 2021
As simple and ubiquitous redox-active organic molecules, quinones participate in diverse electron transfer processes in chemistry and biological systems for energy transformation and signal transduction. We introduce here a practical exercise to study the redox potentials of benzoquinone and its two derivatives by combining the electrochemistry…
Descriptors: Chemistry, Computation, Energy, Thermodynamics
Mary Jane Brundage – ProQuest LLC, 2024
Validated conceptual multiple-choice surveys administered before and after instruction in relevant concepts can be useful tools to gauge the effectiveness of curricula and pedagogical strategies. Here we discuss the use of four different validated surveys to investigate student understanding: The Energy and Momentum Conceptual Survey (EMCS), the…
Descriptors: Surveys, Comprehension, Energy, Magnets
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Mary Jane Brundage; David E. Meltzer; Chandralekha Singh – Physical Review Physics Education Research, 2024
We use the Survey of Thermodynamic Processes and First and Second Laws-Long, a research-based survey instrument with 78 items at the level of introductory physics, to investigate introductory and advanced students' difficulties with internal energy, work, and heat transfer. We present analysis of data from 12 different introductory and advanced…
Descriptors: Physics, Science Instruction, Teaching Methods, Difficulty Level
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Méndez, Eduardo – Biochemistry and Molecular Biology Education, 2020
The use of the thermodynamic formalism in the investigation of biochemical reactions constitutes one of the key analysis in bioenergetics, and the first step in such analysis is the selection of the adequate reference state. For biochemistry majors, thermodynamic analysis based on the chemical reference state is used in Physical Chemistry courses,…
Descriptors: Science Instruction, Biochemistry, Thermodynamics, College Science
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Fazal, Md. Abul; Raigoza, Annette F.; Strollo, Christen M.; Peterson, Alicia A. – Journal of Chemical Education, 2020
Fundamentals of Macroscopic Chemical Analysis is a newly developed foundation-level course that integrates concepts from traditional physical and analytical chemistry courses. The course was designed to serve majors in chemistry, biochemistry, and biology as well as pre-health professional students. The main goal of this course is to develop the…
Descriptors: Chemistry, Introductory Courses, Energy, Thermodynamics
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Yeadon, Will; Quinn, Mark – Physics Education, 2021
We present a thermodynamics experiment suitable for first year undergraduate students employing Stirling Engines to create a demonstration of energy transformation and to measure the mechanical efficiency of such engines. Using an inexpensive transparent chambered Stirling Engine, students can connect concepts such as the theoretical…
Descriptors: Thermodynamics, Science Education, Physics, College Science
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Marco Bortoli; Laura Orian – Journal of Chemical Education, 2023
Molecules and Computer: Chemistry Calculations in Class (MC[superscript 4]) is a computational laboratory intended for final-year high school or undergraduate students. The topic is the antioxidant potential of anthocyanidins, which is chemically related to their radical scavenging action via the mechanism of hydrogen atom transfer (HAT). This…
Descriptors: Chemistry, Science Instruction, Undergraduate Students, High School Students
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Wang, Li; Violet, Camille; DuChanois, Ryan M.; Elimelech, Menachem – Journal of Chemical Education, 2020
Minimizing the energy consumption of desalination processes is an important goal for augmenting freshwater production and mitigating water scarcity. Chemical, civil, mechanical, and environmental engineering students can derive and analyze the energy consumption of desalination processes by applying engineering fundamentals such as thermodynamics,…
Descriptors: Energy, Chemistry, Science Instruction, Engineering Education
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Parobek, Alexander P.; Chaffin, Patrick M.; Towns, Marcy H. – International Journal of Science Education, 2023
A widespread call has been made to develop and support more integrated approaches to STEM education. The first law of thermodynamics serves as a guiding principle for the crosscutting concept of energy and matter. A qualitative interview study was undertaken to support integrated approaches to STEM education by exploring how chemistry, physics,…
Descriptors: Physics, Thermodynamics, Teaching Methods, STEM Education
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Keifer, David – Journal of Chemical Education, 2019
The change in enthalpy of a chemical reaction conducted at constant pressure is equal to the heat of the reaction plus the nonexpansion work of the reaction, ?H = qP + w[subscript additional]. After deriving that relationship, most general and physical chemistry textbooks set w[subscript additional] = 0 to arrive at the claim that ?H = qP, and…
Descriptors: Thermodynamics, Scientific Principles, Energy, Chemistry
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Mota-Babiloni, Adrián; Mateu-Royo, Carlos; Navarro-Esbrí, Joaquín; Barragán-Cervera, Ángel – Journal of Technology and Science Education, 2021
A significant amount of energy in the form of heat is lost in industrial processes once it is used in specific processes. Among different technologies, high-temperature heat pumps (HTHP) are a valuable method of recovering low-temperature waste heat in the industry in a very efficient way that can be activated using clean electricity. As a…
Descriptors: Computer Simulation, Laboratories, Engineering Education, Energy
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Pinochet, Jorge – Physics Education, 2019
Stars form from large clouds of gas and dust that contract under their own gravity. The birth of a star occurs when a fusion reaction of hydrogen into helium is ignited in its core. The key variable that determines the formation of a star is mass. If the mass of the contracting cloud is below a certain minimum value, instead of a star, a substelar…
Descriptors: Astronomy, Energy, Physics, Scientific Concepts
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Tomba, J. Pablo – Journal of Chemical Education, 2017
The use of free energy plots to understand the concept of thermodynamic equilibrium has been shown to be of great pedagogical value in materials science. Although chemical equilibrium is also amenable to this kind of analysis, it is not part of the agenda of materials science textbooks. Something similar is found in chemistry branches, where free…
Descriptors: Energy, Thermodynamics, Teaching Methods, Equations (Mathematics)
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Rogers, Bradley A.; Zhang, Yanjie – Journal of Chemical Education, 2020
The Hofmeister series is a recurring trend that ranks ions' abilities to influence various aqueous processes in solution. Herein, a set of project-based experiments was developed for students in an upper-level physical chemistry laboratory to investigate the specific ion effects on the thermodynamics of caffeine partitioning between aqueous and…
Descriptors: Science Instruction, Science Experiments, Chemistry, Science Laboratories
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Paczesniak, Tomasz; Rydel-Ciszek, Katarzyna; Chmielarz, Pawel; Charczuk, Maria; Sobkowiak, Andrzej – Journal of Chemical Education, 2018
Spontaneity criteria for processes with useful (especially electrical) work have been discussed based on total differentials of thermodynamic functions. Reaction Gibbs energy ([Delta][subscript r]G) and electrochemical reaction Gibbs energy ([Delta][subscript r]G~) have been juxtaposed. Three-dimensional graphs showing the dependencies of…
Descriptors: Chemistry, Science Instruction, Energy, Thermodynamics
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