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Howitt, Susan M.; Wilson, Anna N. – Science Education, 2018
Scientists use judgment in deciding what and how much data to present in publications but science degrees rarely address this issue. Instead, scientific knowledge is presented as certain and students have limited opportunities to use their own judgment in the laboratory. A consequence of this may be that students approach science with a moral…
Descriptors: Ethics, Epistemology, Moral Development, Student Development
Galloway, Kelli R.; Bretz, Stacey Lowery – Chemistry Education Research and Practice, 2016
A series of quantitative studies investigated undergraduate students' perceptions of their cognitive and affective learning in the undergraduate chemistry laboratory. To explore these quantitative findings, a qualitative research protocol was developed to characterize student learning in the undergraduate chemistry laboratory. Students (N = 13)…
Descriptors: Science Instruction, College Science, Chemistry, Science Laboratories
Flaherty, Aishling; O'Dwyer, Anne; Mannix-McNamara, Patricia; Leahy, J. J. – Journal of Chemical Education, 2017
Throughout countries such as Ireland, the U.K., and Australia, graduate students who fulfill teaching roles in the undergraduate laboratory are often referred to as "laboratory demonstrators". The laboratory demonstrator (LD) model of graduate teaching is similar to the more commonly known graduate teaching assistant (GTA) model that is…
Descriptors: Science Laboratories, Faculty Development, Teaching Assistants, Undergraduate Students
Zhao, Ningfeng; Wardeska, Jeffrey G.; McGuire, Saundra Y.; Cook, Elzbieta – Journal of College Science Teaching, 2014
Metacognition has been shown to lead to deeper, more durable, and more transferable learning (Bransford, Brown, & Cocking, 2000). This article describes a case study in which metacognition was introduced to undergraduate science (chemistry) classrooms. Students came to understand the difference between superficial memorization and real…
Descriptors: Science Instruction, College Science, Metacognition, Case Studies
DeKorver, Brittland K.; Towns, Marcy H. – Journal of Chemical Education, 2015
Little research exists on college students' learning goals in chemistry, let alone specifically pertaining to laboratory coursework. Because students' learning goals are linked to achievement and dependent on context, research on students' goals in the laboratory context may lead to better understanding about the efficacy of lab curricula. This…
Descriptors: Undergraduate Students, College Science, Science Laboratories, Teaching Methods
Graulich, Nicole – Chemistry Education Research and Practice, 2015
Organic chemistry education is one of the youngest research areas among all chemistry related research efforts, and its published scholarly work has become vibrant and diverse over the last 15 years. Research on problem-solving behavior, students' use of the arrow-pushing formalism, the investigation of students' conceptual knowledge and…
Descriptors: Organic Chemistry, Science Instruction, Scientific Concepts, Problem Solving
Wheeler, Lindsay B.; Maeng, Jennifer L.; Whitworth, Brooke A. – Chemistry Education Research and Practice, 2015
The purpose of this qualitative investigation was to better understand teaching assistants' (TAs') perceptions of training in a guided inquiry undergraduate general chemistry laboratory context. The training was developed using existing TA training literature and informed by situated learning theory. TAs engaged in training prior to teaching (~25…
Descriptors: Qualitative Research, Teaching Assistants, Inquiry, Undergraduate Study
Moore, J. Christopher; Rubbo, Louis J. – Physical Review Special Topics - Physics Education Research, 2012
We have found that non-STEM (science, technology, engineering, and mathematics) majors taking either a conceptual physics or astronomy course at two regional comprehensive institutions score significantly lower preinstruction on the Lawson's Classroom Test of Scientific Reasoning (LCTSR) in comparison to national average STEM majors. Based on…
Descriptors: Constructivism (Learning), Majors (Students), Physics, Piagetian Theory
Easton, Eric; Gilburn, Andre – Journal of Biological Education, 2012
Field work and field courses within undergraduate biology degrees have been under threat in recent years for multiple reasons and while there has been widespread support from learned societies, academic staff and students for the retention of field study, there has been little research to support the perceived value of field teaching within this…
Descriptors: Evidence, Field Instruction, Biology, Foreign Countries
Knaus, Karen; Murphy, Kristen; Blecking, Anja; Holme, Thomas – Journal of Chemical Education, 2011
The design and use of a valid and reliable instrument for the assignment of cognitive complexity ratings to chemistry exam items is described in this paper. Use of such an instrument provides a simple method to quantify the cognitive demands of chemistry exam items. Instrument validity was established in two different ways: statistically…
Descriptors: Chemistry, Cognitive Processes, Cognitive Development, Science Instruction
Moore, J. Christopher – European Journal of Physics Education, 2012
University and high school students not pursuing a science, technology, engineering, and/or mathematics (STEM) course of study demonstrate less developed scientific reasoning than their STEM-based peers. Previous studies show that the majority of non-STEM students can be classified as either concrete operational or transitional reasoners in…
Descriptors: Nonmajors, College Science, Scientific Literacy, Thinking Skills
Talanquer, Vicente – International Journal of Science Education, 2009
Based on the analysis of available research on students' alternative conceptions about the particulate nature of matter, we identified basic implicit assumptions that seem to constrain students' ideas and reasoning on this topic at various learning stages. Although many of these assumptions are interrelated, some of them seem to change or…
Descriptors: Cognitive Processes, Misconceptions, Science Instruction, Scientific Concepts
Brown, Simon – Acta Didactica Napocensia, 2009
Science requires imagination nourished by knowledge, experience and sustained critical thinking. Science teaching has the same requirements, but metacognition is even more important to a teacher than it is to a practitoner of science. Critical thinking is essential to both science and science teaching: in either domain, imagination relies on…
Descriptors: Science Education, Cognitive Development, Critical Thinking, Comprehension
Markwell, John; Courtney, Sean – Biochemistry and Molecular Biology Education, 2006
Students' reactions to classroom learning and the mastery of science vary along a wide spectrum of attitudes and emotions. In particular, we argue here that how learners encounter and learn subject matter is a function of their level of cognitive development. We describe the stages of cognitive development based on the work of William Perry and…
Descriptors: College Science, Biochemistry, Cognitive Development, Undergraduate Students
Grove, Nathaniel; Bretz, Stacey Lowery – Journal of Chemical Education, 2007
Many researchers have investigated the effects of students' prior knowledge upon learning chemistry, for example, the tenacity of alternative conceptions. Knowledge about learning also shapes students' learning of chemistry. This research describes the development of CHEMX, a survey instrument that measures an aspect of knowledge about learning…
Descriptors: Majors (Students), Prior Learning, Chemistry, Expectation