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Mason, Andrew J.; Bertram, Charles A. – Physical Review Physics Education Research, 2018
When considering performing an Introductory Physics for Life Sciences course transformation for one's own institution, life science majors' achievement goals are a necessary consideration to ensure the pedagogical transformation will be effective. However, achievement goals are rarely an explicit consideration in physics education research topics…
Descriptors: Biological Sciences, Physics, Science Instruction, Majors (Students)
Doidge, Megan; Lelliott, Anthony – Journal of Biological Education, 2017
The choice of which language strategies to use in schools in Africa is the subject of much debate. In the Life Sciences, cultural issues associated with the use of biological terminology add to this debate. In our study, we examined the language choices made by Grade 7 Natural Sciences teachers in South Africa during their teaching of human…
Descriptors: Biological Sciences, Science Instruction, Teaching Methods, Language of Instruction
Reydon, Thomas A. C. – Science & Education, 2013
Classification is a central endeavor in every scientific field of work. Classification in biology, however, is distinct from classification in other fields of science in a number of ways. Thus, understanding how biological classification works is an important element in understanding the nature of biological science. In the present paper, I…
Descriptors: Classification, Biodiversity, Science Education, Science Instruction
Freitas, Maria João; Silva, Joana Vieira; Korrodi-Gregório, Luís; Fardilha, Margarida – Biochemistry and Molecular Biology Education, 2016
At the Portuguese universities, practical classes of life sciences are usually professor-centered 2-hour classes. This approach results in students underprepared for a real work environment in a research/clinical laboratory. To provide students with a real-life laboratory environment, the Non-Stop Lab Week (NSLW) was created in the Molecular…
Descriptors: Foreign Countries, Science Instruction, College Science, Biological Sciences
Aldahmash, Abdulwali H.; Mansour, Nasser S.; Alshamrani, Saeed M.; Almohi, Saeed – Research in Science Education, 2016
This study examines Saudi Arabian middle school science textbooks' coverage of the essential features of scientific inquiry. All activities in the middle school science textbooks and workbooks were analyzed by using the scientific inquiry "essential features" rubric. The results indicated that the essential features are included in about…
Descriptors: Science Activities, Foreign Countries, Middle School Students, Textbooks
McConnell, Tom; Parker, Joyce; Eberhardt, Janet – NSTA Press, 2016
"Problem-Based Learning in the Life Science Classroom, K-12" offers a great new way to ignite your creativity. Authors Tom McConnell, Joyce Parker, and Janet Eberhardt show you how to engage students with scenarios that represent real-world science in all its messy, thought-provoking glory. The scenarios prompt K-12 learners to immerse…
Descriptors: Problem Based Learning, Biological Sciences, Science Education, Elementary Secondary Education
Smith, P. Sean; Torsiglieri, Jennifer A.; Esch, R. Keith; Pasley, Joan D. – International Journal of Science Education, 2017
The tension between mandated curricula and students' interests is evident throughout the history of science education. Societal expectations for student learning often lead to standards and curricula that leave little room for students to explore their own individual interests. Occasionally, however, an event can capture the interest of so many…
Descriptors: Decision Making, Secondary School Teachers, Science Teachers, Student Interests
Spitznagel, Benjamin; Pritchett, Paige R.; Messina, Troy C.; Goadrich, Mark; Rodriguez, Juan – Biochemistry and Molecular Biology Education, 2016
Vision and Change [AAAS, 2011] outlines a blueprint for modernizing biology education by addressing conceptual understanding of key concepts, such as the relationship between structure and function. The document also highlights skills necessary for student success in 21st century Biology, such as the use of modeling and simulation. Here we…
Descriptors: Science Instruction, Biology, Undergraduate Study, Science Laboratories
Morante, Silvia; Rossi, Giancarlo – Science & Education, 2016
The purpose of this work is to reconsider and critically discuss the conceptual foundations of modern biology and bio-sciences in general, and provide an epistemological guideline to help framing the teaching of these disciplines and enhancing the quality of their presentation in High School, Master and Ph.D. courses. After discussing the…
Descriptors: Biology, Biological Sciences, Scientific Concepts, Guides
Wachsmuth, Lucas P.; Runyon, Christopher R.; Drake, John M.; Dolan, Erin L. – CBE - Life Sciences Education, 2017
Undergraduate life science majors are reputed to have negative emotions toward mathematics, yet little empirical evidence supports this. We sought to compare emotions of majors in the life sciences versus other natural sciences and math. We adapted the Attitudes toward the Subject of Chemistry Inventory to create an Attitudes toward the Subject of…
Descriptors: Biology, Science Instruction, Mathematics Anxiety, Student Attitudes
Fraser, William J. – Turkish Online Journal of Distance Education, 2017
This article focuses on the dilemmas science educators face when having to introduce Pedagogical Content Knowledge (PCK) to science student teachers in a predominantly paper-based distance learning environment. It draws on the premise that science education is bound by the Nature of Science (NOS), and by the Nature of Scientific Inquiry (NOSI).…
Descriptors: Science Teachers, Science Instruction, Pedagogical Content Knowledge, Communities of Practice
Liu, Dennis W. C. – CBE - Life Sciences Education, 2014
Plants are a huge and diverse group of organisms, ranging from microscopic marine phytoplankton to enormous terrestrial trees epitomized by the giant sequoia: 300 feet tall, living 3000 years, and weighing as much as 3000 tons. For this plant issue of "CBE-Life Sciences Education," the author focuses on a botanical topic that most…
Descriptors: Plants (Botany), Biological Sciences, Science Instruction, Botany
Sabel, Jaime L.; Forbes, Cory T.; Zangori, Laura – Journal of Science Teacher Education, 2015
To support elementary students' learning of core, standards-based life science concepts highlighted in the "Next Generation Science Standards," prospective elementary teachers should develop an understanding of life science concepts and learn to apply their content knowledge in instructional practice to craft elementary science learning…
Descriptors: Preservice Teachers, Preservice Teacher Education, Elementary School Teachers, Formative Evaluation
Kim, Youngshin; Lim, Soo-Min; Lee, Il-Sun – American Biology Teacher, 2013
Cultivation of microorganisms such as fungi and bacteria is often not included in scientific inquiries conducted in school because of the difficulty of manufacturing a suitable medium. A method using dry rehydratable film to reduce the need to manufacture a suitable medium and shorten incubation time was developed as an efficient microbial testing…
Descriptors: Biological Sciences, Science Activities, Science Instruction, Inquiry
Xu, Dongchen; Chi, Michelene T. H. – Universal Journal of Educational Research, 2016
Students often have misconceptions about natural selection as they misuse a direct causal schema to explain the process. Natural selection is in fact an emergent process where random interactions lead to changes in a population. The misconceptions stem from students' lack of emergent schema for natural selection. In order to help students…
Descriptors: Science Education, Science Instruction, Scientific Concepts, Evolution