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Williams, Leah C.; Reddish, Michael J. – Journal of Chemical Education, 2018
Many chemistry laboratory exercises follow a given protocol with known results. Such traditional laboratories rarely give students an accurate representation of how research is conducted, the scientific practices involved in research, and the ownership that accompanies developing and carrying out an independent project. Several laboratory reforms…
Descriptors: Chemistry, Science Instruction, Science Laboratories, College Science
Kapon, Shulamit – Journal of Research in Science Teaching, 2016
Research experience is increasingly considered an important component of science education at the secondary school and undergraduate levels. This paper presents a case study of students learning in a unique apprenticeship model in which students are engaged in long-term (18 month) open-ended research projects in physics that are done at the…
Descriptors: Physics, Inquiry, Science Education, Secondary School Science
Nadelson, Louis S.; Warner, Don; Brown, Eric – Journal of STEM Education: Innovations and Research, 2015
Research experiences for undergraduates (REUs) seek to increase the participating students' knowledge and perceptions of scientific research through engagement in laboratory research and related activities. Various REU outcomes have been investigated including influence on participants' content knowledge, career plans, and general perceptions of…
Descriptors: Undergraduate Students, Student Research, Scientific Research, Science Laboratories
Mkhatshwa, Thembinkosi Peter; Doerr, Helen M. – Mathematical Thinking and Learning: An International Journal, 2018
Contributing to a growing body of research on undergraduate students' quantitative reasoning, the study reported in this article used task-based interviews to investigate business calculus students' quantitative reasoning when solving two optimization tasks situated in the context of revenue and profit maximization. Analysis of verbal responses…
Descriptors: Undergraduate Students, Calculus, Mathematics Instruction, Mathematical Logic
Thao, Mao; Lawrenz, Frances; Brakke, Mary; Sherman, Jamie; Matute, Martin – Natural Sciences Education, 2016
With the high demand to build the science, technology, engineering, and mathematics (STEM) workforce and the disparity of underrepresented minorities in STEM fields, there have been increased educational efforts to diversify STEM fields. This article describes what works in research collaborations between research-intensive universities (RIUs) and…
Descriptors: Intercollegiate Cooperation, Scientific Research, Research Universities, STEM Education
Sato, Brian K.; Lee, Amanda K.; Alam, Usman; Dang, Jennifer V.; Dacanay, Samantha J.; Morgado, Pedro; Pirino, Giorgia; Brunner, Jo Ellen; Castillo, Leanne A.; Chan, Valerie W.; Sandholtz, Judith H. – CBE - Life Sciences Education, 2017
Despite the ubiquity of prerequisites in undergraduate science, technology, engineering, and mathematics curricula, there has been minimal effort to assess their value in a data-driven manner. Using both quantitative and qualitative data, we examined the impact of prerequisites in the context of a microbiology lecture and lab course pairing.…
Descriptors: Mixed Methods Research, Prerequisites, Required Courses, Microbiology
Becker, Nicole M.; Rupp, Charlie A.; Brandriet, Alexandra – Chemistry Education Research and Practice, 2017
Models related to the topic of chemical kinetics are critical for predicting and explaining chemical reactivity. Here we present a qualitative study of 15 general chemistry students' reasoning about a method of initial rates task. We asked students to discuss their understanding of the terms rate law and initial rate, and then analyze rate and…
Descriptors: Qualitative Research, Chemistry, Logical Thinking, Scientific Concepts
Lira, Matthew E.; Gardner, Stephanie M. – Advances in Physiology Education, 2017
Physiology demands systems thinking: reasoning within and between levels of biological organization and across different organ systems. Many physiological mechanisms explain how structures and their properties interact at one level of organization to produce emergent functions at a higher level of organization. Current physiology principles, such…
Descriptors: Physiology, Systems Approach, Undergraduate Students, Science Instruction
Galloway, Kelli R.; Leung, Min Wah; Flynn, Alison B. – Journal of Chemical Education, 2018
To explore the differences between how organic chemistry students and organic chemistry professors think about organic chemistry reactions, we administered a card sort task to participants with a range of knowledge and experience levels. Beginning students created a variety of categories ranging from structural similarities to process oriented…
Descriptors: Organic Chemistry, Science Instruction, College Science, Graduate Students
Schmidt-McCormack, Jennifer A.; Muniz, Marc N.; Keuter, Ellie C.; Shaw, Scott K.; Cole, Renée S. – Chemistry Education Research and Practice, 2017
Well-designed laboratories can help students master content and science practices by successfully completing the laboratory experiments. Upper-division chemistry laboratory courses often present special challenges for instruction due to the instrument intensive nature of the experiments. To address these challenges, particularly those associated…
Descriptors: Science Laboratories, Science Instruction, College Science, Undergraduate Study
Moutinho, Sara; Moura, Rui; Vasconcelos, Clara – EURASIA Journal of Mathematics, Science & Technology Education, 2017
Model-Based learning is a methodology that facilitates students' construction of scientific knowledge, which, sometimes, includes restructuring their mental models. Taking into consideration students' learning process, its aim is to promote a deeper understanding of phenomena's dynamics through the manipulation of models. Our aim was to ascertain…
Descriptors: Cognitive Structures, Models, Visualization, Teaching Methods
Karim, Nafis I.; Maries, Alexandru; Singh, Chandralekha – Physical Review Physics Education Research, 2018
The Conceptual Survey of Electricity and Magnetism (CSEM) has been used to assess student understanding of introductory concepts of electricity and magnetism because many of the items on the CSEM have strong distractor choices which correspond to students' alternate conceptions. Instruction is unlikely to be effective if instructors do not know…
Descriptors: Pedagogical Content Knowledge, Teaching Assistants, Scientific Concepts, Student Surveys
Edessa, Sutuma – Cypriot Journal of Educational Sciences, 2017
The purpose of this study was to assess and determine impacts of insufficient instructional materials and ineffective lesson delivery methods on teaching in biology higher education. The participants of this study were 60 trainees who graduated in Bachelor of Sciences from eight public universities in majoring biology. Data for the study was…
Descriptors: Biology, Science Instruction, Instructional Materials, Higher Education
Soto, Julio G.; Everhart, Jerry – Bioscene: Journal of College Biology Teaching, 2016
Biology faculty at San José State University developed, piloted, implemented, and assessed a freshmen course sequence based on the macro-to micro-teaching approach that was team-taught, and organized around unifying themes. Content learning assessment drove the conceptual framework of our course sequence. Content student learning increased…
Descriptors: College Freshmen, College Science, Biology, Team Teaching
Fazio, Claudio; Battaglia, Onofrio Rosario; Di Paola, Benedetto – Physical Review Special Topics - Physics Education Research, 2013
This paper describes a method aimed at pointing out the quality of the mental models undergraduate engineering students deploy when asked to create explanations for phenomena or processes and/or use a given model in the same context. Student responses to a specially designed written questionnaire are quantitatively analyzed using…
Descriptors: Undergraduate Students, Engineering Education, Science Instruction, Questionnaires