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Bethany B. Stone; Katy Guthrie – American Biology Teacher, 2024
Many K-16 educators agree that active learning is a key component for student success in life sciences. At the same time, some instructors are frustrated by inconsistent student participation in these activities and may revert to traditional teaching strategies. Horse caregivers face a similar frustration when they lead a horse to water and it…
Descriptors: Active Learning, Learner Engagement, Biology, Science Instruction
Sintje Liline; Anensiana Tomhisa; Dominggus Rumahlatu; Kristin Sangur – Journal of Turkish Science Education, 2024
In this industrial revolution era, university-level education emphasises higher-order thinking skills. This research aims to analyse the effect of implementing the PjB-HOTS learning model on cognitive learning, creative thinking skills, analytical thinking skills, and metacognitive skills of the students studying osmoregulation concepts in Animal…
Descriptors: Thinking Skills, Biology, Metacognition, Science Instruction
Hayat Hokayem; Ihsan Ghazal; Savannah R. Graham – Science Education International, 2023
This study explored elementary students' reasoning about the life cycles of various organisms, including insects and amphibians. The study took place in a private school in Lebanon with 24 fifth-grade students. Students participated in a life cycle unit with pre and post-written assessments about what they learned and interviews to help determine…
Descriptors: Elementary School Students, Elementary School Science, Biology, Science Education
Aisya, Naafi; Ibrohim, I.; Mahanal, Susriyati; Maghfiroh, Hidayati – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2023
Although the empowerment of critical thinking (CT) has become an international concern that needs to be developed in the biology learning process for high school students, there still needs to be more relevant research literature. This study aimed to compare the effectiveness of implementing reading, questioning, and answering strategies…
Descriptors: Creativity, Critical Thinking, Problem Solving, Biology
Cardace, Amy; Wilson, Mark; Metz, Kathleen E. – Education Sciences, 2021
This paper gives an example of how to address the challenge of designing a learning progression that describes student thinking, with the necessary specificity to align instructional opportunities and assessment tools. We describe the Conceptual Underpinnings of Evolution project and the iterative process of developing a novel learning progression…
Descriptors: Evolution, Science Instruction, Elementary School Science, Elementary School Students
David, Opanga; Venuste, Nsengimana – EURASIA Journal of Mathematics, Science and Technology Education, 2021
Teaching and learning of invertebrate systematic require effective pedagogical language strategies since the terms used are most in English and Latin. The Tanzania education policy specifies that the medium language of instruction in primary must be Kiswahili, while English has to be used in post-primary education. Consequently, secondary school…
Descriptors: Teaching Methods, Educational Policy, Secondary School Students, Language of Instruction
Monteira, Sabela F.; Jiménez-Aleixandre, María Pilar – Journal of Research in Science Teaching, 2016
This article examines kindergarten children's (5-6 years old) engagement in scientific practices, with a focus on generating and using evidence to support claims, during a 5-month project about snails. The research questions are as follows: (1) what meanings do kindergarteners construct for what constitutes evidence? How are those meanings…
Descriptors: Evidence, Kindergarten, Observation, Young Children
Robischon, Marcel – American Biology Teacher, 2015
Genetic drift is a concept of population genetics that is central to understanding evolutionary processes and aspects of conservation biology. It is frequently taught using rather abstract representations. I introduce three real-life zoological examples, based on historical and recent color morphs of tigers, tapirs, and ravens, that can complement…
Descriptors: Genetics, Animals, Science Instruction, Teaching Methods
Barrett, H. Clark; Peterson, Christopher D.; Frankenhuis, Willem E. – Child Development, 2016
Cultural transmission is often viewed as a domain-general process. However, a growing literature suggests that learnability is influenced by content and context. The idea of a learnability landscape is introduced as a way of representing the effects of interacting factors on how easily information is acquired. Extending prior work (Barrett &…
Descriptors: Cultural Influences, Urban Areas, Cross Cultural Studies, Children
Meyer, Annika; Klingenberg, Konstantin; Wilde, Matthias – Research in Science Education, 2016
Contact with living animals is an exceptional possibility within biology education to facilitate an intense immersion into the study topic and even allow for a flow experience (Csikszentmihalyi 2000). Further, it might affect the perceptions of the students' basic needs for autonomy and competence and thereby their quality of motivation (Deci and…
Descriptors: Elementary School Students, Elementary School Science, Grade 5, Biology
Zars, Troy – Learning & Memory, 2010
In a dynamic environment, there is an adaptive value in the ability of animals to acquire and express memories. That both simple and complex animals can learn is therefore not surprising. How animals have solved this problem genetically and anatomically probably lies somewhere in a range between a single molecular/anatomical mechanism that applies…
Descriptors: Animals, Anatomy, Short Term Memory, Genetics
Knudsen, Daniel P.; Gentner, Timothy Q. – Brain and Language, 2010
Songbirds share a number of parallels with humans that make them an attractive model system for studying the behavioral and neurobiological mechanisms that underlie the learning and processing of vocal communication signals. Here we review the perceptual and cognitive mechanisms of audition in birds, and emphasize the behavioral and neural basis…
Descriptors: Singing, Auditory Perception, Animals, Learning Processes
Orlander, Auli Arvola; Wickman, Per-Olof – Cultural Studies of Science Education, 2011
This is a study of teaching about the human body. It is based on transcribed material from interviews with 15-year-old students and teachers about their experiences of sex education and from recordings of classroom interactions during a dissection. The analysis is focused on the relationship between what students are supposed to learn about the…
Descriptors: Sex Education, Biology, Learning Processes, Human Body
Yuan, Qi; Mutoh, Hiroki; Debarbieux, Franck; Knopfel, Thomas – Learning & Memory, 2004
Synapses formed by the olfactory nerve (ON) provide the source of excitatory synaptic input onto mitral cells (MC) in the olfactory bulb. These synapses, which relay odor-specific inputs, are confined to the distally tufted single primary dendrites of MCs, the first stage of central olfactory processing. Beta-adrenergic modulation of electrical…
Descriptors: Animals, Biology, Brain Hemisphere Functions, Biochemistry
Peer reviewedLangford, Glenn – Journal of Philosophy of Education, 1978
Author critically comments on D.W. Hamlyn's work on human learning which borrows from the classical philosophies of rationalism and empiricism. These lack a proper biological perspective for man and an adequate appreciation of man's social nature. The author discusses animal-like instinctive behavior and specifically social learning. For journal…
Descriptors: Animal Behavior, Biology, Comparative Analysis, Comparative Education
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