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Jürgen Russ; Niels Hammer – Anatomical Sciences Education, 2025
This study describes the process of developing a high-impact, low-cost, and low-maintenance air ventilation system for anatomy facilities. It employed the strategic application of Value Engineering (VE), assuring that the air ventilation system meets contemporary threshold limit values (TLVs) for formaldehyde in the working zone of dissection…
Descriptors: Engineering, Anatomy, Science Laboratories, Laboratory Procedures
JonathanG. H. Stathakis; Jake A. Cravino; Ross Andrew Shalliker – Journal of Chemical Education, 2023
In today's global economy, the origin of the food we eat is becoming more and more difficult to identify. Verifying the authenticity of products to protect supply chains is a complicated problem that requires a multidisciplinary approach. Chemical authentication of foodstuffs often includes a mass spectrometer detector; however, they are costly…
Descriptors: Food, Chemistry, Science Instruction, Science Experiments
Isabella Guerrero; Charles A. Smith – International Society for Technology, Education, and Science, 2023
In case-based learning, students develop and apply course knowledge to solve tangible and "real life" problems. This practice can enhance student motivation and engagement in the analytical laboratory. In this application of case-based learning students analyze commercially available oils for CBD content. In the state of Texas anyone can…
Descriptors: Case Method (Teaching Technique), College Science, Science Laboratories, Laboratory Procedures
Nagma Zerin – Chemical Engineering Education, 2024
Project-Enhanced learning is an excellent way to facilitate student-centered learning along with traditional lecture-based learning. In this Class and Home problem, an example of Project-Enhanced learning is provided that can be used in the Mass and Energy Balances (MEB) course. The students solve this problem as part of a group while receiving…
Descriptors: Student Projects, Active Learning, Student Centered Learning, Teaching Methods
Hadiati, Soka; Kuswanto, Heru; Rosana, Dadan; Pramuda, Adi – International Journal of Instruction, 2019
This study aims to examine students' reasoning based on the model in each laboratory work style and find the effect on scientific attitude and student activity. This study uses a quantitative approach with the experimental method. The study was conducted in three classes with different lab work styles. Arduino and sensors were used as a…
Descriptors: Logical Thinking, Scientific Attitudes, Laboratory Procedures, Open Source Technology
Kavai, Portia; de Villiers, Rian; Fraser, William – International Journal of Instruction, 2017
In Life Sciences (biology) education, both nationally and internationally, the study of animal and organ morphology has traditionally involved dissection since the early 19th century. This study focused on the inclinations of teachers and learners towards animal organ dissection, and its use in problem-solving in Grade 11 Life Sciences education…
Descriptors: Foreign Countries, High School Students, Grade 11, Biological Sciences
Williams, Deborah H.; Shipley, Gerhard P. – International Journal of STEM Education, 2018
Background: Native Americans are underrepresented in science, technology, engineering, and mathematics (STEM). We investigated whether having to violate cultural taboos might be a factor in the decisions of some Native Americans not to pursue STEM degrees. Many STEM faculty likely know very little about Native Americans' historical experiences…
Descriptors: American Indian Students, American Indian Culture, STEM Education, Disproportionate Representation
Walker, J. P.; Sampson, V.; Southerland, S.; Enderle, P. J. – Chemistry Education Research and Practice, 2016
This study examines the extent to which the type of instruction used during a general chemistry laboratory course affects students' ability to use core ideas to engage in science practices. We use Ford's (2008) description of the nature of scientific practices to categorize what students do in the laboratory as either empirical or…
Descriptors: Chemistry, Laboratory Experiments, Laboratory Procedures, Intermode Differences
Kavai, Portia; de Villiers, Rian; Fraser, William; Sommerville, Jaqui; Strydom, Nina – African Journal of Research in Mathematics, Science and Technology Education, 2015
In Life Sciences education internationally, including South Africa, the study of animal and organ morphology has traditionally involved dissections since the early nineteenth century. The major purpose of this study was to investigate how the engagement of learners with animal organ dissections may influence the development of problem-solving…
Descriptors: Animals, Laboratory Procedures, Biological Sciences, Secondary School Science
Carstensen, Anna-Karin; Bernhard, Jonte – European Journal of Engineering Education, 2009
Understanding time-dependent responses, such as transients, is important in electric circuit theory and other branches of engineering. However, transient response is considered difficult to learn since familiarity with advanced mathematical tools such as Laplace transforms is required. Here, we analyse and describe a novel learning environment…
Descriptors: Engineering Education, Scientific Concepts, Science Education, Educational Research
Evans, Karen L.; Yaron, David; Leinhardt, Gaea – Chemistry Education Research and Practice, 2008
Even after repeated instruction, first year college chemistry students are often unable to apply stoichiometry knowledge to equilibrium and acid-base chemistry problems. The dynamic and interactive capabilities of online technology may facilitate stoichiometry instruction that promotes more meaningful learning. This study compares a…
Descriptors: Stoichiometry, College Freshmen, Prior Learning, Chemistry
Peer reviewedShahrin, Muhammad; Toh, Kok-Aun; Ho, Boon-Tiong; Wong, Jessie – Journal of Creative Behavior, 2002
A study examined the relationship between the creative thinking of 114 13 to 14-year-old females and scientific problem-solving ability. The students did well in the "preliminary trialing" stage and were more proficient in "interpreting" and "performing" process skills. The other three components, "communication,""planning," and "reflecting,"…
Descriptors: Creative Thinking, Creativity, Females, Laboratory Procedures
Peer reviewedAnamuah-Mensah, Jophus; And Others – Journal of Research in Science Teaching, 1987
Reported the development and validation of an integrated model of performance on chemical concept-volumetric analysis. Model was tested on 265 chemistry students in eight schools.Results indicated that for subjects using algorithms without understanding, performance on volumetric analysis problems was not influenced by proportional reasoning…
Descriptors: Academic Achievement, Chemistry, Cognitive Processes, Grade 12
Peer reviewedSlack, Susie; Stewart, Jim – Journal of Biological Education, 1989
Prescriptions for improving student understanding and problem-solving performance related to transmission genetics are discussed. Research on novice/expert problem-solving in transmission genetics is reviewed. (Author/CW)
Descriptors: Biological Sciences, Cognitive Development, College Science, Genetics
Peer reviewedStaer, Helen; Goodrum, Denis; Hackling, Mark – Research in Science Education, 1998
Uses data from a survey of Perth lower secondary science teachers to reveal low levels of inquiry and determine the nature of the laboratory work undertaken by their students. Contains 29 references. (DDR)
Descriptors: Foreign Countries, High Schools, Inquiry, Knowledge Base for Teaching
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