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Sara Tolbert; Helen Mora; Matiu Ratima; Mel Tainui – set: Research Information for Teachers, 2023
In this article we share how developing and following tikanga was integral to our enactment of mana orite in the local curriculum as we (tangata whenua and tangata Tiriti) collaborated on a Year 7 science unit: Plants, Place, and People. Our initial thinking as we approached this unit had been to look for connections between matauranga Maori, the…
Descriptors: Ethnic Groups, Pacific Islanders, Science Curriculum, Scientific and Technical Information
Muhammad Zulfadhli Kamarudin; Mohd Syafiq Aiman Mat Noor; Romarzila Omar – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2024
The use of digital technologies as teaching and learning materials supports and enhances science learning, encouraging students to develop valuable inquiry skills and knowledge. In response, this paper seeks to explore digital inquiry-based learning as a useful aid for teaching the elementary school science curriculum on plants in Malaysia. There…
Descriptors: Foreign Countries, Plants (Botany), Science Education, Electronic Learning
Romesburg, H. Charles – American Biology Teacher, 2019
A classroom exercise is described in which college students take part in creating and supporting an evolutionary hypothesis that explains effort grunting. The exercise holds their interest throughout and readies them to understand hypotheses of animal and plant evolution. It informs them about the dependence of cultural evolution upon biological…
Descriptors: Evolution, Genetics, Science Instruction, Biology
Jenkins, Dan; Goodger, Beverley – School Science Review, 2017
This article reviews the practical plant biology workshops presented by Science and Plants for Schools (SAPS) at the Association for Science Education Annual Conference 2017. The well-received workshops enabled attendees to try out SAPS practical investigations, with the support of experienced "experts" and colleagues. The resources…
Descriptors: Biology, Plants (Botany), Science Instruction, Workshops
Caroli, Dorena – History of Education, 2019
The purpose of this article is to outline the evolution of biology education in Soviet schools in the 1920s and 1930s. After some introductory consideration of the ideological changes taking place in the field of genetics that impacted on the teaching of science and led to botany being favoured over biology in schools, the first part outlines the…
Descriptors: Social Systems, Educational History, Botany, Science Instruction
Hainsworth, Mark – Primary Science, 2018
As well as providing a valuable and enjoyable experience for pupils, outdoor learning also enhances and contextualises learning in science by helping pupils understand science concepts. Teachers' lack of confidence in which aspects of the science curriculum they can actually teach outdoors deters them from venturing outside the classroom for…
Descriptors: Outdoor Education, Science Instruction, Science Curriculum, Scientific Concepts
Mpofu, Vongai; Otulaja, Femi S.; Mushayikwa, Emmanuel – Cultural Studies of Science Education, 2014
A theoretical framework is an important component of a research study. It grounds the study and guides the methodological design. It also forms a reference point for the interpretation of the research findings. This paper conceptually examines the process of constructing a multi-focal theoretical lens for guiding studies that aim to accommodate…
Descriptors: Indigenous Knowledge, Science Instruction, Culturally Relevant Education, Science Curriculum
Preston, Christine – Teaching Science, 2016
Young children love to draw, and should be encouraged to explore drawing as a communication tool. Drawing is a means by which children can express their thoughts, interests and feelings, long before they learn to write. We know that: "children's drawings are vehicles for expression and communication" (Chang, 2012, p. 187). This form of…
Descriptors: Early Childhood Education, Young Children, Science Education, Science Instruction
Dennis, Mike; Duggan, Adrienne; McGregor, Deb – Primary Science, 2014
Evolution and inheritance appear in the new National Science Curriculum for England, which comes into effect from September 2014. In the curriculum documents, it is expected that pupils in year 6 (ages 10-11) should be taught to: (1) recognise that living things have changed over time; (2) recognise that living things produce offspring of the same…
Descriptors: Science Instruction, Evolution, Science Curriculum, Grade 6
Suwa, Tomomi; Williamson, Brad – American Biology Teacher, 2014
We present a guided-inquiry biology lesson, using the plant-rhizobium symbiosis as a model system. This system provides a rich environment for developing connections between the big ideas in biology as outlined in the College Board's new AP Biology Curriculum. Students gain experience with the practice of scientific investigation, from…
Descriptors: Science Instruction, Biology, College Science, Science Experiments
Razzouk, Rabieh; Dyehouse, Melissa; Santone, Adam; Carr, Ronald – Science Teacher, 2014
Teachers typically teach subjects separately, but integrated science, technology, engineering, and mathematics (STEM) curriculums that focus on real-world practices are gaining momentum (NAE and NRC 2009). Before release of the "Next Generation of Science Standards" ("NGSS") (NGSS Lead States 2013), 36 states already had a…
Descriptors: Plants (Botany), Pollution, Science Instruction, Standards
Ruggirello, Rachel M.; Balcerzak, Phyllis; May, Victoria L.; Blankenship, Robert E. – Biochemistry and Molecular Biology Education, 2012
The process of photosynthesis is central to science curriculum at all levels. This article describes an inquiry-based laboratory investigation developed to explore the impact of light quality on photosynthesis and to connect this process to current research on harvesting solar energy, including bioenergy, artificial photosynthesis, and solar…
Descriptors: Botany, Scientific Research, Learning Experience, Science Teachers
Marquard, Robert D.; Steinback, Rebecca – American Biology Teacher, 2009
Major advances in fundamental science are developed using model systems. Classic examples of model systems include Mendel's work with the common garden pea ("Pisium sativa"), classic inheritance work by Morgan with the fruit fly ("Drosophila"), developmental studies with the nematode ("C. elegans"), and transposable elements in maize ("Zea…
Descriptors: Biology, Biochemistry, Science Curriculum, Plants (Botany)
White, James D.; Carpenter, Jenna P. – PRIMUS, 2008
Louisiana Tech University has an integrated science curriculum for its mathematics, chemistry, physics, computer science, biology-research track and secondary mathematics and science education majors. The curriculum focuses on the calculus sequence and introductory labs in biology, physics, and chemistry. In the introductory biology laboratory…
Descriptors: Education Majors, Laboratory Experiments, Laboratory Safety, Physics
Ray, Andrew M.; Beardsley, Paul M. – Science Activities: Classroom Projects and Curriculum Ideas, 2008
Even though photosynthesis is an obligatory part of the science curriculum, research has shown that students often have a poor understanding of it. The authors advocate that classroom coverage of the topic of photosynthesis should include not only its biochemical properties but also the role of photosynthesis or photosynthetic organisms in matter…
Descriptors: Teaching Styles, Environmental Education, Hypothesis Testing, Plants (Botany)