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Jessica M. Karch; Nicolette M. Maggiore; Jennifer R. Pierre-Louis; Destiny Strange; Vesal Dini; Ira Caspari-Gnann – Science Education, 2024
Small group interactions and interactions with near-peer instructors such as learning assistants serve as fertile opportunities for student learning in undergraduate active learning classrooms. To understand what students take away from these interactions, we need to understand how and what they learn during the moment of their interaction. This…
Descriptors: Teaching Assistants, Interaction, Active Learning, Electronic Learning
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
Katherine A. Clements; Kyle T. Vallone; Thomas P. Clements; Elizabeth H. Catania; Lily L. Claiborne; Katherine L. Friedman; Todd R. Graham; Heather J. Johnson; Savanna R. Starko; Tara D. Todd; Jessica Watkins; Cynthia J. Brame – CBE - Life Sciences Education, 2025
Students often experience science, technology, engineering, and mathematics (STEM) courses as competitive, weed-out spaces. Learning Assistants (LAs) have potential to improve students' experiences in these courses. Previously, we elucidated themes describing the impact of LAs on students' sense of STEM belonging and science-related confidence in…
Descriptors: STEM Education, Sense of Belonging, Self Esteem, Teaching Assistants
Balabanoff, Morgan; Kaur, Simreen; Barbera, Jack; Moon, Alena – International Journal of Science Education, 2022
Across science disciplines, light is a common tool for measuring, characterizing, and catalysing molecules and molecular processes. Despite the ubiquity of light-based tools, little research has been done to investigate how students understand light and light-matter interactions (LMI). This topic is typically first introduced in first-year…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Light
Testa, Italo; Galano, Silvia; Tarallo, Oreste – International Journal of Science Education, 2023
In this longitudinal study, we investigate how demographic, cognitive and meta-cognitive variables affect students' success in chemistry and physics exams in two Science-Technology-Engineering-Mathematics undergraduate courses, biology and engineering. Independent variables include high school final examination performance, chemistry and physics…
Descriptors: College Freshmen, Accuracy, Self Evaluation (Individuals), Grade Prediction
Yik, Brandon J.; Raker, Jeffrey R.; Apkarian, Naneh; Stains, Marilyne; Henderson, Charles; Dancy, Melissa H.; Johnson, Estrella – International Journal of STEM Education, 2022
Background: Active learning used in science, technology, engineering, and mathematics (STEM) courses has been shown to improve student outcomes. Nevertheless, traditional lecture-orientated approaches endure in these courses. The implementation of teaching practices is a result of many interrelated factors including disciplinary norms, classroom…
Descriptors: Introductory Courses, Lecture Method, College Science, College Mathematics
Lisa B. Limeri – CBE - Life Sciences Education, 2025
Mindset (beliefs about the malleability of intelligence) has been studied in a variety of contexts for decades. Recent research highlights the importance of contextual factors in moderating mindset's impact on student outcomes. The commonly-used original mindset measure is context-general. Recently, a mindset measure that is specific to science…
Descriptors: Science Education, Mathematics Education, Undergraduate Students, Student Attitudes
Young, Kaisa; Young, Chadwick; Marlow, Matthew; Cortez, Mallory; Borsetta, Alberto – Physics Teacher, 2021
Students in the physical sciences--physics and chemistry--often take multiple-choice exams for introductory courses. Some students will write a lot on their exams, while others write very little. Does the student doing more scratch work on their exam perform better than one who does not write as much? We analyzed multiple-choice exams in physics…
Descriptors: Multiple Choice Tests, Science Tests, Chemistry, Physics
Russell Crank; Jenny Spence – Journal of Adult and Continuing Education, 2024
Student awareness and selection of learning strategies are predictors of academic success. Yet, little is known about learning strategies of students in university preparation science courses, who are frequently mature-aged or underrepresented students. This lack of knowledge potentially hinders tailoring reflective learning experiences, specific…
Descriptors: Electronic Learning, Science Instruction, Learning Strategies, Nontraditional Students
Christopher M. Wally; Kathryn G. Miller; Regina F. Frey – Journal of Chemical Education, 2023
A little studied aspect of supporting students in large introductory STEM courses is examining from whom students seek information and advice when they are struggling in or need advice about issues related to large introductory courses. The current study explores student support-seeking behavior related to academic issues or concerns in their…
Descriptors: Student Behavior, Help Seeking, STEM Education, Introductory Courses
Kilmer, Nelson; Krehbiel, Joel D. – Physics Teacher, 2019
Gay-Lussac's law states that the pressure of an ideal gas is directly proportional to its absolute temperature if the volume is constant. Students observe this relationship by taking measurements on the pressure of gas in a flask or metal sphere at different temperatures and then extrapolate the data to estimate absolute zero. In our college…
Descriptors: Physics, Science Instruction, Science Experiments, Teaching Methods
Brett M. Condon; Junyang Xian; Donna Murasko; Daniel King; Jennifer S. Stanford – Journal on Excellence in College Teaching, 2024
STEM courses can be difficult for students adjusting to college. Effectively and equitably identifying students who could benefit from academic support is challenging, especially with changing strategies around use of standardized test scores. Alternative tools to identify those in need of academic support interventions are needed. The authors…
Descriptors: Undergraduate Students, STEM Education, Scientific Attitudes, Success
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
Gao, Yannan; Dicke, Anna-Lena; Safavian, Nayssan; Eccles, Jacquelynne – Grantee Submission, 2021
College Introductory STEM courses impact students' persistence. Guided by Eccles' Expectancy-Value (EV) theory, we examined undergraduates' open-ended explanations for major persistence plans. Students (N=2,737; 45.6% women; 16.4% White, 22.6% Latino/a, 46.5% Asian, 14.5% other; 43% 1st-generation college-going students) reported certainty in…
Descriptors: Undergraduate Students, First Generation College Students, Majors (Students), Student Attitudes
Kuntzleman, Thomas S.; Johnson, Ryan – Journal of Chemical Education, 2020
The so-called Diet Coke and Mentos experiment is initiated by dropping Mentos candies into a bottle of Diet Coke or other carbonated beverage. This causes the beverage to rapidly degas, causing foam to stream out of the bottle. Simple application of the gas laws leads to the straightforward prediction that ejection of greater foam volume is…
Descriptors: Chemistry, Food, Science Instruction, Teaching Methods