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Showing 1 to 15 of 151 results Save | Export
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Jingjing Han; Lina Zhang; Liucai Yang; Yougen Luo; Ruiqin Yao; Xuebin Qu – Biochemistry and Molecular Biology Education, 2024
The primary objective of science postgraduate education is to foster students' capacity for creative thinking and problem-solving, particularly in the context of scientific research quality. In order to achieve this goal, the "7E" teaching mood has been implemented in the cell biology course for postgraduate students to promote…
Descriptors: Science Instruction, Graduate Students, Creative Thinking, Problem Solving
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Diane C. Darland; Emily M. Gisi; Julia R. Hampton; He Huang; Lydia M. Kantonen; Dehui Kong; Lynda R. LaFond; Jeremy P. Martin; Blessing O. Okosun; Lydia M. Westberg; Laura C. Young – Journal of College Science Teaching, 2024
Scientific writing is a rewarding, challenging, and necessary part of research. Building skills in scientific writing is critical in graduate student training and provides the foundation for scientific communication at all professional levels. Despite the importance of writing in research, this skill remains a barrier to success for many students.…
Descriptors: Content Area Writing, Science Instruction, Writing Instruction, Graduate Students
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Melissa Dancy; Charles Henderson; Naneh Apkarian; Estrella Johnson; Marilyne Stains; Jeffrey R. Raker; Alexandra Lau – Physical Review Physics Education Research, 2024
A survey of 722 physics faculty conducted in 2008 found that many physics instructors had knowledge of research-based instructional strategies (RBISs), were interested in using more, but often discontinued use after trying. Considerable effort has been made during the decade following 2008 to develop and disseminate RBISs in physics as well as…
Descriptors: Science Instruction, Science Teachers, Knowledge Level, Active Learning
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Laura A. Meadows; Max Bernard; Kaela Clabaugh-Howell; Jessica Duke; Lani Irvin; Lydia Mayo; Emily A. Holt – College Teaching, 2024
Learner-centered and inclusive and equitable teaching practices aim to promote better learning outcomes for all students. Course syllabi can provide a window into these practices. We adapted an existing rubric to measure inclusiveness and equity-mindedness of syllabi and used an established rubric to assess their learner-centeredness. We then…
Descriptors: Inclusion, Biology, Introductory Courses, Science Instruction
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Michael C. Ralph; Blair Schneider; David R. Benson; Douglas Ward – Active Learning in Higher Education, 2024
Institutions of higher education are seeking to support more active learning among faculty, and that support includes the creation of active learning spaces to support more student-centered course activities. However, incremental development of these learning spaces leads to a sorting of students between active and passive learning environments.…
Descriptors: Undergraduate Students, Organic Chemistry, College Science, Science Instruction
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Amy E. Kulesza; Susan L. D'Agostino; Lucía B. Chacón-Díaz – Journal of College Science Teaching, 2024
Due to the COVID-19 pandemic, Biology Teaching Assistants (TAs) were tasked with transitioning and adapting their instruction to an online environment by quickly implementing Emergency Remote Teaching (ERT) practices. Effective online and in-person teaching requires student-centered approaches to support undergraduate student learning. Using…
Descriptors: College Faculty, College Students, Biology, Science Instruction
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Theresa A. Halligan; Cinzia Cervato; Ulrike Genschel – Journal of College Science Teaching, 2024
This study summarizes the comparison of interactive lecturing and technology-supported student-centered pedagogy across six semesters of an introductory physical geology course. A multiple linear regression analysis of 967 student scores shows that absent raw exam scores, homework, and in-class attendance, performance on the first exam (score…
Descriptors: Undergraduate Students, Geology, College Faculty, Science Instruction
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Wanmei Li; Yani Ouyang; Jun Xu; Pengfei Zhang – Journal of Chemical Education, 2022
Medicinal chemistry, as the core curriculum of the pharmaceutical engineering major, contains complex knowledge systems and scattered knowledge points. A medicinal chemistry course covers more than 50kinds of drugs divided into 11 categories including antibiotics, antiparasitic drugs, anesthetics, nonsteroidal anti-inflammatory drugs, and nervous…
Descriptors: Student Centered Learning, Cooperative Learning, Teamwork, Science Instruction
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Nicolette M. Maggiore; Kataleeya P. Powers; Krystal L. Lwanga; Ira Caspari-Gnann – International Journal of STEM Education, 2024
Background: Learning assistants (LAs) in undergraduate STEM lectures facilitate discussions between students in small groups. In this research study, we investigate the impact of LA facilitation on student learning as it occurs during LA-student interactions. To do so, our work builds on two sociocultural frameworks focused on LA facilitation and…
Descriptors: Undergraduate Students, STEM Education, Video Technology, Chemistry
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Kraft, Annika; Popova, Maia; Erdmann, Robert M.; Harshman, Jordan; Stains, Marilyne – Chemistry Education Research and Practice, 2023
Content coverage is frequently identified by faculty as a barrier to the implementation of student-centered instructional strategies. This need to cover content may be a personal belief faculty hold and/or an external requirement imposed (or perceived to be) on them ("e.g.," by their department, institution, accreditors,…
Descriptors: College Faculty, Science Teachers, Science Instruction, Chemistry
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Yesilyurt, Ezgi – Journal of College Science Teaching, 2022
To inform teacher education programs, it is imperative to uncover preservice teachers' (PSTs) implicit and tacit beliefs about teaching and learning science. The study of teachers' beliefs requires a range of methodological approaches to unearth their tacit beliefs. In that regard, this study used metaphor construction in conjunction with drawing…
Descriptors: Preservice Teachers, Beliefs, Science Instruction, Elementary School Teachers
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Alison Page; Jennifer Blue – Journal of College Science Teaching, 2024
A study was done at a mid-sized public university in the Midwest of the United States. At this university, there are three large classes taught in Student-Centered Active Learning Environment with Upside-down Pedagogies (SCALE-UP) classrooms: algebra-based introductory physics, calculus-based introductory physics, and introductory statistics.…
Descriptors: STEM Education, Student Centered Learning, Peer Relationship, College Students
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Jesús Erubiel Miguel-Gómez; Dennise Salazar; Miguel Reina – Journal of Chemical Education, 2023
Ludic-didactic material has systematically been proven to be a useful tool that enhances teaching and learning processes, at practically any educational level by reducing the stress level of students and creating a feeling of team spirit and trust. In chemistry courses, significant efforts have been made to improve the learning of intermolecular…
Descriptors: Chemistry, Science Education, Science Instruction, Teaching Methods
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Archila, Pablo Antonio; Truscott de Mejía, Anne-Marie; Restrepo, Silvia – Online Learning, 2022
As we begin the third decade of the twenty-first century, argument and debate are not habitual practices of university science education. This can be explained by the hegemony of instructor-centered traditional approaches in many of these practices. The COVID-19 pandemic has not only pushed university education online but also seems to provide an…
Descriptors: Persuasive Discourse, Verbal Communication, Online Courses, Science Instruction
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Sarvary, Mark A.; Castelli, Frank R.; Asgari, Mitra – Journal of Microbiology & Biology Education, 2022
Biology laboratory courses with hands-on activities faced many challenges when switched to online instruction during the COVID-19 pandemic. The transition back to in-person instruction presents an opportunity to redesign courses with greater student input. Undergraduates in an [approximately]350-student laboratory course were surveyed about their…
Descriptors: Biology, Science Instruction, Science Laboratories, Student Centered Learning
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