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Babaian, Caryn; Kumar, Sudhir – American Biology Teacher, 2020
Evolutionary evidence is important scientific background for appreciating the theory of evolution. We describe a STEAM-based lesson plan that uses paleontological drawings and a modern evolutionary database to explore and understand fossil, morphological, and molecular evidence. Together, with a focus on arthropods and the Cambrian explosion,…
Descriptors: Molecular Biology, Science Instruction, Teaching Methods, Evolution
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Janssen, F. J. J. M.; van Berkel, B. – Science & Education, 2015
Philosophy of science education can play a vital role in the preparation and professional development of science teachers. In order to fulfill this role a philosophy of science education should be made practical for teachers. First, multiple and inherently incomplete philosophies on the teacher and teaching on what, how and why should be…
Descriptors: Scientific Principles, Science Instruction, Science Teachers, Educational Philosophy
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Vhurumuku, Elaosi; Chikochi, Andrew – African Journal of Research in Mathematics, Science and Technology Education, 2017
This paper reports the results of a study that compared two approaches to developing in-service teachers' subject matter knowledge and strategies for teaching nature of science. A treatment post-test only quasi-experimental research design was used. One group of in-service teachers (n = 15) was taught using what is called a capsular approach. In…
Descriptors: Scientific Principles, Teaching Methods, Teacher Competencies, Pedagogical Content Knowledge
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Hwang, Seyoung – Journal of Biological Education, 2015
In this article, the educative value of scientific biographies will be explored, especially for non-science major college students. During the "Scientist's life and thought" course, 66 college students read nine scientific biographies including five biologists, covering the canonical scientific achievements in Western scientific history.…
Descriptors: Biographies, Science Achievement, Scientific Principles, Story Telling
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Duschl, Richard A.; Grandy, Richard – Science & Education, 2013
Our focus is on the effects that dated ideas about the nature of science (NOS) have on curriculum, instruction and assessments. First we examine historical developments in teaching about NOS, beginning with the seminal ideas of James Conant. Next we provide an overview of recent developments in philosophy and cognitive sciences that have shifted…
Descriptors: Scientific Principles, Direct Instruction, Science Instruction, Educational History
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Maeyer, Jenine; Talanquer, Vicente – Science Education, 2010
The characterization of students' cognitive biases is of central importance in the development of curriculum and teaching strategies that better support student learning in science. In particular, the identification of shortcut reasoning procedures (heuristics) used by students to reduce cognitive load can help us devise strategies to foster the…
Descriptors: Methods Research, Heuristics, Chemistry, Teaching Methods
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Keys, Carolyn W.; Hand, Brian; Prain, Vaughn; Collins, Susan – Journal of Research in Science Teaching, 1999
Discusses preliminary research on a new heuristic tool for learning from laboratory activities in secondary science. Finds that use of the science writing heuristic facilitated students in generating meaning from data; making connections among procedures, data, evidence, and claims; and engaging in metacognition. (Contains 29 references.)…
Descriptors: Heuristics, Laboratory Experiments, Learning Processes, Science Activities
Tan, Kim Chwee Daniel; Taber, Keith S. – Journal of Science and Mathematics Education in Southeast Asia, 2005
Previous research has shown that students' existing conceptions are critical to subsequent learning because there is interaction between the new knowledge that the students encounter and their existing knowledge from previous lessons. Taber (1999a) found A-level students in the UK had difficulty in understanding the principles determining the…
Descriptors: Foreign Countries, Teaching Methods, Chemistry, Scientific Principles