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Gardner, Margery; Abrams, Neal; McGee, Gregory; Hogan, Elizabeth – Journal of College Science Teaching, 2022
This article explores results from a 3-year model of laboratory instruction, Project Synapse, that synthesized biology, chemistry, and communication curricula for firstyear science majors at a STEMfocused university. Laboratory biology-chemistry integration was featured at natural intersections where disciplines used similar tools, such as…
Descriptors: College Freshmen, STEM Education, Majors (Students), Biology
Martin Bílek; Karel Kolár; Monika Pelikánová – International Baltic Symposium on Science and Technology Education, 2025
This study explores the integration of STEM principles into chemistry education through the redesign of the topic Chemical Reactions for initial teacher training. The aim was to develop and evaluate an innovative teaching module that fosters key competences--knowledge, skills, and attitudes--via student-centred, context-based, and…
Descriptors: STEM Education, Chemistry, Scientific Principles, Knowledge Level
Silverman, Julian R. – Journal of Chemical Education, 2021
As introductory chemistry courses expose students to many distinctive properties of matter, it is helpful to systematically evaluate and relate different measures such as mass, moles, and molarity, or specific heat capacity and heat capacity. Intensive and extensive designations help distinguish intrinsic and component properties of a system and…
Descriptors: Sustainability, Chemistry, Science Instruction, Teaching Methods
Upahi, Johnson Enero; Ramnarain, Umesh; Ishola, Ismail Saheed – Research in Science Education, 2020
The development of science education in many countries is varied and diverse. However, one common goal of science education in the different contexts is the focus on scientific literacy. To promote scientific literacy, the Nature of Science (NoS) is one of the vital components for raising scientifically literate citizens. In view of this, the…
Descriptors: Scientific Principles, Textbook Content, Textbook Evaluation, Science Education
Slabin, Uladzimir – International Baltic Symposium on Science and Technology Education, 2023
Eponymous terms play an important role in STEM education. This research focuses on the current state of Mendeleev eponyms in the context of education and ethnocentrism, addressing their usage in various languages, their educational value, cases of questioned priority and copyright violation in Mendeleev major eponyms--periodic table and periodic…
Descriptors: STEM Education, Ethnocentrism, Language Usage, Copyrights
Gardner, Margery A. – International Journal of Environmental and Science Education, 2017
This study featured findings from a three-year National Science Foundation (NSF) funded research project at a STEM focused college. 'Project Synapse' was developed to build relevance between disciplines through authentic collaborations between biology and chemistry content. Integrated science practices were explicitly addressed during…
Descriptors: College Freshmen, Undergraduate Study, Majors (Students), Biology
Stavrou, Dimitris; Michailidi, Emily; Sgouros, Giannis – Chemistry Education Research and Practice, 2018
Introducing Nanoscience and Nanotechnology (NST) topics into school science curricula is considered useful for an in-depth understanding of the content, processes and nature of science and technology, and also for negotiating the social aspects of science. This study examines (a) the development of an inquiry-based Teaching-Learning Sequence (TLS)…
Descriptors: Sequential Learning, Chemistry, Models, Communities of Practice
Morizot, Olivier; Audureau, Eric; Briend, Jean-Yves; Hagel, Gaetan; Boulc'h, Florence – Journal of Chemical Education, 2015
In this article, we present two concrete applications of the concept of the human element to chemistry education; starting with a course and experimental project on blue pigment synthesis and concluding with cross-disciplinary lessons and experiments on blue photography. In addition to the description of the content of these courses, we explore…
Descriptors: Science Instruction, Chemistry, College Science, Undergraduate Study
Kilner, William Cary – ProQuest LLC, 2014
Freshmen with declared life-science majors typically matriculate with a determination to succeed. However, inadequately-prepared students are easily overwhelmed and at risk of abandoning their aspirations for a STEM career. The investigator designed and taught weekly recitations for approximately 850 students during a five-year span, and…
Descriptors: Science Education, Chemistry, College Freshmen, STEM Education
Flener-Lovitt, Charity – Journal of Chemical Education, 2014
A thematic course called "Climate Change: Chemistry and Controversy" was developed for upper-level non-STEM students. This course used the socioscientific context of climate change to teach chemical principles and the nature of science. Students used principles of agnotology (direct study of misinformation) to debunk climate change…
Descriptors: Science Instruction, College Science, Undergraduate Study, Teaching Methods
Macrakis, Kristie; Bell, Elizabeth K.; Perry, Dale L.; Sweeder, Ryan D. – Journal of Chemical Education, 2012
By modifying secret writing formulas uncovered from the archives of the East German Ministry of State Security (MfS or Stasi), a novel general chemistry secret writing laboratory was developed. The laboratory combines science and history that highlights several fundamental chemical principles related to the writing. These include catalysis, redox…
Descriptors: Foreign Countries, Higher Education, Interdisciplinary Approach, History
An Approach to Teaching General Chemistry II that Highlights the Interdisciplinary Nature of Science
Sumter, Takita Felder; Owens, Patrick M. – Biochemistry and Molecular Biology Education, 2011
The need for a revised curriculum within the life sciences has been well-established. One strategy to improve student preparation in the life sciences is to redesign introductory courses like biology, chemistry, and physics so that they better reflect their disciplinary interdependence. We describe a medically relevant, context-based approach to…
Descriptors: Introductory Courses, Scientific Principles, Student Interests, Chemistry
de Berg, Kevin C. – Science & Education, 2011
This paper discusses the findings of a search for the intellectual tools used by Joseph Priestley (1733-1804) in his chemistry, education, and theology documents. Priestley's enquiring democratic view of knowledge was applicable in all three areas and constitutes a significant part of his lifework. Current epistemological issues in science…
Descriptors: Foreign Countries, Scientific Principles, Chemistry, Epistemology
de Silva, Eugene, Ed. – IGI Global, 2015
While the great scientists of the past recognized a need for a multidisciplinary approach, today's schools often treat math and science as subjects separate from the rest. This not only creates a disinterest among students, but also a potential learning gap once students reach college and then graduate into the workforce. "Cases on…
Descriptors: Teaching Methods, Science Education, Hands on Science, Elementary Secondary Education
Hill, Adam D.; Lehman, Ann H.; Parr, Maria L. – Journal of Chemical Education, 2007
A course linking chemistry and archaeology was designed to introduce scientific principles and applications to students with little or no science background. The course could provide students an opportunity to explore the role of the sciences in archaeology and to discover the relationship between materials and the culture that produce them.
Descriptors: Chemistry, Archaeology, Science Instruction, Spectroscopy
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