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Showing all 8 results
Stamovlasis, Dimitrios; Tsaparlis, Georgios – Science Education, 2012
In this study, we test an information-processing model (IPM) of problem solving in science education, namely the working memory overload model, by applying catastrophe theory. Changes in students' achievement were modeled as discontinuities within a cusp catastrophe model, where working memory capacity was implemented as asymmetry and the degree…
Descriptors: Predictor Variables, High School Students, Logical Thinking, Science Education
Dohn, Niels Bonderup – Science Education, 2011
The purpose of this study was to investigate how situational interest of high school students was triggered during a field trip to an aquarium. Although the role of museums in stimulating interest among students has been acknowledged for some time, empirical evidence about how the specific variable of a museum setting might trigger situational…
Descriptors: Field Trips, Student Motivation, High School Students, Teaching Methods
McNeill, Katherine L.; Pimentel, Diane Silva – Science Education, 2010
Argumentation is a core practice of science and has recently been advocated as an essential goal of science education. Our research focuses on the discourse in urban high school science classrooms in which the teachers used the same global climate change curriculum. We analyzed transcripts from three teachers' classrooms examining both the…
Descriptors: Constructivism (Learning), Persuasive Discourse, Classrooms, Climate
Pozzer-Ardenghi, Lilian; Roth, Wolff-Michael – Science Education, 2007
When lecturing, teachers make use of both verbal and nonverbal communication. What is called teaching, therefore, involves not only the words and sentences a teacher utters and writes on the board during a lesson, but also all the hands/arms gestures, body movements, and facial expressions a teacher "performs" in the classroom. All of these…
Descriptors: Position Papers, Human Body, Nonverbal Communication, Lecture Method
Anderson, David; Nashon, Samson – Science Education, 2007
It is recognized widely that learning is a dynamic and idiosyncratic process of construction and reconstruction of concepts in response to new experiences. It is influenced by the learner's prior knowledge, motivation, and sociocultural context. This study investigated how year 11 and 12 physics students' metacognition influences the development…
Descriptors: Prior Learning, Physics, Figurative Language, Metacognition
Liu, Xiufeng; Lesniak, Kathleen M. – Science Education, 2005
Using the US national sample from the Third International Mathematics and Science Study (TIMSS) and the Rasch modeling method, this study identified the conceptual progression sequence of various matter concept aspects, and compared students' latent abilities against the sequence. We found that the four matter aspects, i.e. conservation, physical…
Descriptors: Scientific Concepts, Elementary Secondary Education, Models, Conservation (Concept)
Dodick, Jeff; Orion, Nir – Science Education, 2003
There have been few discoveries in geology more important than "deep time"--the understanding that the universe has existed for countless millennia, such that man's existence is confined to the last milliseconds of the metaphorical geological clock. The influence of deep time is felt in a variety of sciences including geology, cosmology, and…
Descriptors: Majors (Students), High School Students, Grade 11, Grade 12
Dori, Yehudit J.; Tal, Revital T.; Tsaushu, Masha – Science Education, 2003
Teaching nonscience majors topics in biotechnology through case studies is the focus of this research. Our "Biotechnology, Environment, and Related Issues" module, developed within the "Science for All" framework, is aimed at elevating the level of students' scientific and technological literacy and their higher order thinking skills. The research…
Descriptors: Case Studies, Biotechnology, Technological Literacy, Thinking Skills

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