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Johnson, Claudia; Boon, Helen; Dinan Thompson, Maree – Research in Science Education, 2022
Learning objectives outline the knowledge and skills to be taught in a subject, thus signaling what is worth learning and what type of thinking is valued. The aim of this syllabus analysis is to determine the cognitive demand of learning objectives in the recently reformed Queensland physics, chemistry and biology syllabus and to analyse whether…
Descriptors: Physics, Chemistry, Biology, Science Curriculum
Vincent, Antony T.; Bourbonnais, Yves; Brouard, Jean-Simon; Deveau, Hélène; Droit, Arnaud; Gagné, Stéphane M.; Guertin, Michel; Lemieux, Claude; Rathier, Louis; Charette, Steve J.; Lagüe, Patrick – Biochemistry and Molecular Biology Education, 2018
A recent scientific discipline, bioinformatics, defined as using informatics for the study of biological problems, is now a requirement for the study of biological sciences. Bioinformatics has become such a powerful and popular discipline that several academic institutions have created programs in this field, allowing students to become…
Descriptors: Biology, Information Science, Web Based Instruction, Introductory Courses
Kromidas, Maria – Curriculum Inquiry, 2019
Sylvia Wynter's wide-ranging intellectual contributions contain a poetics of being and becoming human that serve to counter the hegemony of developmental psychology and its articulation of the child in teacher education. In this article, I use Wynter's insights to unsettle the universality of this child figure to reveal the child of Man, a…
Descriptors: Teacher Education Programs, Child Development, Preservice Teachers, Whites
Crowder, R. M.; Zauner, K.-P. – IEEE Transactions on Education, 2013
The design of any robotic system requires input from engineers from a variety of technical fields. This paper describes a project-based module, "Biologically-Inspired Robotics," that is offered to Electronics and Computer Science students at the University of Southampton, U.K. The overall objective of the module is for student groups to…
Descriptors: Robotics, Engineering Education, Computer Science Education, Biology
Taylor, Jared L.; Smith, Karen M.; van Stolk, Adrian P.; Spiegelman, George B. – CBE - Life Sciences Education, 2010
Invention activities challenge students to tackle problems that superficially appear unrelated to the course material but illustrate underlying fundamental concepts that are fundamental to material that will be presented. During our invention activities in a first-year biology class, students were presented with problems that are parallel to those…
Descriptors: Fundamental Concepts, Problem Solving, Biology, Teaching Methods
Nowacki, Amy S. – Journal of Statistics Education, 2011
The study presents and applies the 4MAT theoretical framework to educational planning to transform a biostatistics course into a problem-based learning experience. Using a four-question approach, described are specific activities/materials utilized at both the class and course levels. Two web-based instruments collected data regarding student…
Descriptors: Educational Planning, Problem Based Learning, Learning Experience, Teaching Methods
Rutledge, Michael L. – Bioscene: Journal of College Biology Teaching, 2008
Students enrolled in a large-lecture, non-majors biology course employing a diversified instructional approach featuring both instructor-centered and student-centered techniques evaluated the effectiveness of each approach in fostering course goals. Students perceived both approaches to be effective to some extent. Students indicated that the…
Descriptors: Scientific Principles, Biology, Introductory Courses, Large Group Instruction

Kelley, Colleen; Gaither, Katy K. – Journal of College Science Teaching, 2001
Uses an interdisciplinary approach in an organic chemistry course which integrates a pharmacology framework to incorporate meaningful connections between biology and chemistry. (YDS)
Descriptors: Biology, Course Descriptions, Higher Education, Interdisciplinary Approach

Parisi, Thomas – Teaching of Psychology, 1985
A college level introductory psychology course taught in conjunction with introductory biology and philosophy is described. This triad arrangement allows for an interdisciplinary treatment of various issues without diluting the presentation of content specific to the individual disciplines. Information on evaluation of the course is also…
Descriptors: Biology, Course Descriptions, Course Evaluation, Higher Education
Wright, Robin L. – Cell Biology Education, 2005
"Points of View" addresses issues faced by many people within the life sciences educational realm. This issue addresses the question "What should a biology student know?" The author argues for focusing on skill over content when teaching nonmajors biology, with the foundation of his argument being that literacy in any field…
Descriptors: Undergraduate Study, Biology, Nonmajors, Course Content

Groccia, James E.; Miller, Judith E. – Innovative Higher Education, 1996
Experienced undergraduate students served as Peer Learning Assistants (PLAs) to facilitate group process and dynamics in cooperative learning groups. Use of this model in large classes (150 students) resulted in significant improvement in group performance and satisfaction with group experience. PLAs defused conflict within groups, and faculty…
Descriptors: Biology, Classroom Environment, Classroom Techniques, College Students

Demastes, Sherry; Wandersee, James H. – Bioscience, 1992
Examines the proposed definition of biological literacy as the understanding of a small number of pervasive biological principles appropriate to making informed personal and societal decisions. Utilizes the content of a major daily newspaper to adjust biology instruction to focus on this notion of biological literacy. Discusses benefits and…
Descriptors: Biology, Classroom Techniques, Cognitive Style, Concept Formation
Beauchamp, Wilbur L. – Office of Education, United States Department of the Interior, 1932
This investigation of the teaching of science in secondary schools is based upon the analysis of 58 courses in general science, 45 courses in biology, 27 courses in physics, and 30 courses in chemistry. The courses were obtained from schools in response to a request from the Office of Education for courses which had been revised since 1925. Some…
Descriptors: Educational History, National Surveys, School Statistics, Secondary Education