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Stern, Florian; Kampourakis, Kostas; Müller, Andreas – Journal of Research in Science Teaching, 2023
Biology education research has shown that deeply rooted intuitions can influence students' understanding of biological phenomena. One example is design teleology, the intuition that organisms' traits were designed to fulfill a goal. Another example is psychological essentialism, the intuition that organisms have fixed essences. Past research has…
Descriptors: Biology, Science Education, Genetics, Scientific Concepts
Hanisch, Susan; Eirdosh, Dustin – American Biology Teacher, 2021
Evolutionary anthropologists commonly describe humans as a highly cooperative species, based on our evolved socio-cognitive capacities. However, students and the general public may not necessarily share this view about our species. At the same time, fostering our ability to cooperate is considered a key foundation for achieving sustainable…
Descriptors: Cooperation, Biology, Science Instruction, Sustainable Development
Emmons, Natalie; Lees, Kristin; Kelemen, Deborah – Journal of Research in Science Teaching, 2018
Misconceptions about adaptation by natural selection are widespread among adults and likely stem, in part, from cognitive biases and intuitive theories observable in early childhood. Current educational guidelines that recommend delaying comprehensive instruction on the topic of adaptation until adolescence, therefore, raise concerns because…
Descriptors: Young Children, Evolution, Kindergarten, Grade 2
Borgerding, Lisa A.; Kaya, F. – International Journal of Science Education, 2019
The U.S. Next Generation Science Standards treat biological adaptation as a disciplinary core idea, but various science educators recommend its introduction at different ages. The concept of biological adaptation elicits children's reasoning about organisms, their environments, and the relationship between organisms and their environments. The…
Descriptors: Preschool Children, Summer Programs, Day Camp Programs, Science Education
To, Cheryl; Tenenbaum, Harriet R.; Hogh, Henriette – Journal of Research in Science Teaching, 2017
This study examined age differences in young people's understanding of evolution theory in secondary school. A second aim of this study was to propose a new coding scheme that more accurately described students' conceptual understanding about evolutionary theory. We argue that coding schemes adopted in previous research may have overestimated…
Descriptors: Secondary School Students, Thinking Skills, Evolution, Science Instruction
Shtulman, Andrew; Neal, Cara; Lindquist, Gabrielle – Early Education and Development, 2016
Research Findings: Evolution by natural selection is often relegated to the high school curriculum on the assumption that younger students cannot grasp its complexity. We sought to test that assumption by teaching children ages 4-12 (n = 96) a selection-based explanation for biological adaptation and comparing their success to that of adults…
Descriptors: Evolution, Biology, Cognitive Ability, Age Differences
Mpeta, M.; de Villiers, J. J. R.; Fraser, W. J. – Journal of Biological Education, 2015
One of the major causes of the problems affecting evolution education is a lack of acceptance of this concept, particularly by some people who have strongly entrenched religious beliefs. This paper reports on a section of a study which explored the influence of the beliefs of learners in some secondary schools from the Vhembe District in the…
Descriptors: Foreign Countries, Secondary School Students, Secondary School Science, Science Instruction
Legare, Cristine H.; Lane, Jonathan D.; Evans, E. Margaret – Merrill-Palmer Quarterly: Journal of Developmental Psychology, 2013
Despite the ubiquitous use of anthropomorphic language to describe biological change in both educational settings and popular science, little is known about how anthropomorphic language influences children's understanding of evolutionary concepts. In an experimental study, we assessed whether the language used to convey evolutionary concepts…
Descriptors: Evolution, Biology, Change, Scientific Concepts
Herrmann, Patricia A.; French, Jason A.; DeHart, Ganie B.; Rosengren, Karl S. – Merrill-Palmer Quarterly: Journal of Developmental Psychology, 2013
Biological kinds undergo a variety of changes during their life span, and these changes vary in degree by organism. Understanding that an organism, such as a caterpillar, maintains category identity over its life span despite dramatic changes is a key concept in biological reasoning. At present, we know little about the developmental trajectory of…
Descriptors: Logical Thinking, Knowledge Level, Age Differences, Biology
Legare, Cristine H.; Evans, E. Margaret; Rosengren, Karl S.; Harris, Paul L. – Child Development, 2012
Although often conceptualized in contradictory terms, the common assumption that natural and supernatural explanations are incompatible is psychologically inaccurate. Instead, there is considerable evidence that the same individuals use both natural and supernatural explanations to interpret the very same events and that there are multiple ways in…
Descriptors: Evidence, Evolution, Cognitive Development, Cultural Context
Peer reviewedByers, John A. – Child Development, 1998
Maintains that the "getting into shape" hypothesis of explaining the inverted-U distribution of exercise play across age is likely incorrect. Argues that the biological study of human physical activity play, as recommended by Pellegrini and Smith (1998), will reveal whether physical activity play represents an example of…
Descriptors: Age Differences, Behavior Development, Behavior Patterns, Biological Influences
Chan, Carol; Bereiter, Carl – 1992
This study examined students' active roles in constructing knowledge when learning new information in the domain of biological evolution. A computer-based connectionist methodology was developed to provide a way to present students with new information while the experimenter provides probe statements congruent with or contradictory to the…
Descriptors: Age Differences, Beliefs, Biology, Cognitive Processes

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