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James Deehan; Amy MacDonald; Christopher Morris – Studies in Science Education, 2024
Effective science education is crucial for developing a scientifically literate citizenry, and for many, foundational primary science education experiences play a significant role in defining their long-term science trajectories. However, primary science education has been limited by a dissonance between the poor science trajectories for…
Descriptors: Intervention, Science Education, Science Instruction, Instructional Effectiveness
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
Neil Sabine; Jill Schweitzer – Journal of College Science Teaching, 2025
A comparison of student performance in an introductory biology class that used a lecture-based approach (N = 15 classes; 462 students) with those that had a no-lecture approach (N = 9 classes; 238 students). All classes were taught by the principal researcher. In the no- lecture environment, shifts in student perceptions of science were…
Descriptors: Student Centered Learning, Biology, Science Instruction, Teaching Methods
Kit Ying Rebecca Lee; Yat Nam Bernard Ng; Minghui Daisy Chen – Journal of Chemical Education, 2024
Metabolism is always a challenging topic in biochemistry. In our project, a courseware called "Metabolism Metro" was developed. "Metabolism Metro" is a self-learning tool which aims to facilitate students learning of metabolic pathways in an interactive and easy-to-understand manner. The courseware includes both pre-class and…
Descriptors: Courseware, Biochemistry, Metabolism, Science Education
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
Gidele Gito Gizaw; Solomon Sorsa Sota – Science Education International, 2023
This paper aims to review and assess the strategies available in literature to improve the practices of science process skills (SPS) among students. SPS encompasses the mental and physical activities of students in collecting and organizing information and then using the information to make predictions, explain phenomena, solve problems,…
Descriptors: Student Improvement, Science Process Skills, Science Instruction, Scientific Attitudes
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
Katrina Prendergast; Mihye Won; David Treagust – Teaching Science, 2023
In this paper, we discuss what creativity may look like in the science classroom and what we learnt from teaching with student-generated diagrams to promote creativity in Year 7 Science lessons. As a result of this study, most students were able to communicate a deeper understanding of complex phenomena and were able to apply this knowledge both…
Descriptors: Student Centered Learning, Instructional Design, Teaching Methods, Science Instruction
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
Juliane Fleissner-Martin; Jürgen Paul; Franz X. Bogner – Research in Science Education, 2025
This study analyses the coherent integration of creativity into science education modules for eighth-grade students to enhance competence development. The learning modules' content covered a basic ecological unit about forests, applied as digital or analog lesson. By utilizing the creativity subscales 'Act' and 'Flow' its analysis resulted in a…
Descriptors: Creativity, Science Education, Middle School Students, Cognitive Development
Ozden Sengul – European Journal of Physics Education, 2023
This paper describes a student-centered approach to teaching and learning physics in a high school classroom. The teacher designs and uses a 5E learning cycle to teach series and parallel electric circuits. This article provides an example of the implementation of 5E model for a physics lesson to address three-dimensional learning-science and…
Descriptors: Physics, Science Instruction, Electronics, Teaching Methods
Serkan Dinçer – Journal of Turkish Science Education, 2024
This study investigates science teachers' perceptions of their level of Technological Pedagogical Content Knowledge (TPACK) and the challenges they face in integrating technology into the classroom. Using a case study approach, data were collected through the TPACK scale and semi-structured interviews with 102 science teachers. The results reveal…
Descriptors: Science Teachers, Faculty Development, Pedagogical Content Knowledge, Technological Literacy
Sam Ramaila; Syamthanda Mpilwenhle Zondi; Lydia Mavuru – Journal of Teaching and Learning, 2025
This study explored the pedagogical strategies employed by grade 12, life-sciences teachers in township schools to teach complex concepts, such as genetics and meiosis, using improvised teaching resources. Resource constraints in South African township schools often limit learners' access to traditional teaching materials and technologies. In…
Descriptors: Genetics, Teaching Methods, Science Instruction, Grade 12
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
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