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Derek Raine; Sarah Gretton – New Directions in the Teaching of Natural Sciences, 2025
We address the extent to which students developed expert attitudes in the individual disciplines of biology, chemistry and physics during their degree programme. By attitudes we mean the way students think about the sciences compared to discipline experts. We used the standard CLASS survey instrument to compare student attitudes to biology,…
Descriptors: Student Attitudes, Undergraduate Students, Scientific Attitudes, Interdisciplinary Approach
Ika Wardani; Murni Sapta Sari; S. Sulisetijono; Abdul Gofur; Zainudin bin Hassan; M. Arsyad – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2025
Entrepreneurship project-based learning model on the problem-solving skills of Biology Education study. This study aims to describe the structural correlation construction of creative thinking skills, problem-solving skills, and entrepreneurial self-efficacy among biology education students in East Java. The population in this study was…
Descriptors: Student Projects, Problem Based Learning, Creative Thinking, Thinking Skills
Mona Jarrah; Bethlehem Girmay; Obidimma Ezezika – Journal of Problem Based Learning in Higher Education, 2023
This case study piloted an interdisciplinary Problem-Based Learning course, utilizing Hung's (2006) 3C3R model. We explain the course design, curriculum, and implementation. We collected qualitative written questionnaires from students who participated in the course to investigate their learning experiences. As a result, students shed light on…
Descriptors: Health Education, Teaching Methods, Interdisciplinary Approach, Problem Based Learning
Maria B. Lazebnik; Le Chang – American Biology Teacher, 2025
Small-group activities play a crucial role in biology education, fostering active learning, teamwork, and critical thinking. While their benefits are well-documented, there is a need for innovative classroom exercises that provide students with a real-world perspective on biotechnology and pharmaceutical industries. This paper introduces a…
Descriptors: Science Education, Science Instruction, Teaching Methods, Biology
Webster, Audrey; Metcalf, Alana; Kelly, Lauren; Bisesi, Ave; Marnik-Said, Miranda; Colbeck, Carol; Marine, Robert; Vinces, Marcelo; Campbell, Amy; Allen, Taylor – Advances in Physiology Education, 2022
Recommendations for enhancing scientific literacy, inclusivity, and the ecosystem for innovation call for transitioning from teacher-centered to learner-centered science classrooms, particularly at the introductory undergraduate level. Yet little is documented about the challenges that undergraduates perceive in such classrooms and the students'…
Descriptors: Undergraduate Students, Student Experience, Active Learning, Student Projects
Angraini, Erni; Zubaidah, Siti; Susanto, Hendra – Pegem Journal of Education and Instruction, 2023
Active learning is centered on students and encourages them to participate in various classroom activities, with the teacher as a facilitator. Students are expected to develop multiple 21st-century skills through an active learning process, including digital and scientific literacies. Numerous studies demonstrate that students lack digital and…
Descriptors: Active Learning, Technological Literacy, Pedagogical Content Knowledge, Scientific Literacy
Bates, Holly E.; Lowes, Shanna; West, Sarah L. – Advances in Physiology Education, 2021
Undergraduate research experiences are important for the development of scientific identity, appreciation of authentic research, and improvement of persistence toward science careers. We identified a gap in experiential research opportunities for undergraduate Biology students who were seeking a formal yet small-scale research experience that was…
Descriptors: Physiology, STEM Education, Research Training, Science Careers
Maryuningsih, Yuyun; Hidayat, Topik; Riand, R.; Rustaman, Nuryani Y. – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2022
Genetics is a subject that is quite difficult according to students. Various strategies and methods are used to understand genetics in learning to have genetic literacy. One way of increasing genetic literacy in students is to apply genetic problems based on an online discussion in genetics lectures. The research was conducted to determine the…
Descriptors: Genetics, Scientific Literacy, Problem Based Learning, Teaching Methods
Tatner, Mary; Tierney, Anne – Journal of Biological Education, 2016
The development and evaluation of a two-week laboratory class, based on the diagnosis of human infectious diseases, is described. It can be easily scaled up or down, to suit class sizes from 50 to 600 and completed in a shorter time scale, and to different audiences as desired. Students employ a range of techniques to solve a real-life and…
Descriptors: Biology, College Science, Problem Based Learning, Science Laboratories
Dopico, Eduardo; Linde, Ana R.; Garcia-Vazquez, Eva – Journal of Biological Education, 2014
Introducing research in undergraduate biology studies may contribute to creating research vocations and generate the idea that science may influence all aspects of common life. However, laboratory practices are too often disconnected from current investigations and rarely address real-life questions that are really interesting for students.…
Descriptors: Science Experiments, Laboratory Experiments, Cytology, Biology
Garrill, Ashley – CBE - Life Sciences Education, 2011
This article describes an undergraduate lab exercise that demonstrates the importance of students thinking critically about what they see through a microscope. The students are given growth data from tip-growing organisms that suggest the cells grow in a pulsatile manner. The students then critique this data in several exercises that incorporate…
Descriptors: Problem Based Learning, Criticism, Laboratory Equipment, Teaching Methods
Kolber, Benedict J. – Journal of College Science Teaching, 2011
This article describes a model of extended problem-based learning that instructed upper-level undergraduate students to focus on a single biological problem while improving their critical thinking, presentation, and scientific-writing skills. This course was developed in response to students' requests for formal training in oral presentation…
Descriptors: Expertise, Undergraduate Students, Library Research, Action Research
Bledsoe, Karen E. – Bioscience Education, 2011
Problem-based learning can enhance reasoning and concept development among undergraduate college students by presenting content within authentic contexts. However, large lecture sections present problems and barriers to implementing PBL. This article discusses approaches used by the author to infuse PBL into large biology lecture sections, and…
Descriptors: Problem Based Learning, Concept Formation, Lecture Method, Undergraduate Students
Diederich, Kirsten Bakke – ProQuest LLC, 2010
In response to the declining number of students in the United States entering into the STEM (science, technology, engineering, and math) disciplines, there has been an attempt to retain student interest in the sciences through the implementation of more active learning in the classroom. Active learning is defined as any instructional method that…
Descriptors: Active Learning, Lecture Method, Problem Based Learning, Case Method (Teaching Technique)
Armbruster, Peter; Patel, Maya; Johnson, Erika; Weiss, Martha – CBE - Life Sciences Education, 2009
We describe the development and implementation of an instructional design that focused on bringing multiple forms of active learning and student-centered pedagogies to a one-semester, undergraduate introductory biology course for both majors and nonmajors. Our course redesign consisted of three major elements: 1) reordering the presentation of the…
Descriptors: Instructional Design, Student Attitudes, Problem Based Learning, Student Surveys
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