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Full-Text Articles in Education

Truth, Success, And Faith: Novice Teachers’ Perceptions Of What's At Risk In Responsive Teaching In Science, Amy D. Robertson, Leslie J. Atkins Elliott Jul 2020

Truth, Success, And Faith: Novice Teachers’ Perceptions Of What's At Risk In Responsive Teaching In Science, Amy D. Robertson, Leslie J. Atkins Elliott

Curriculum, Instruction, and Foundational Studies Faculty Publications and Presentations

Responsive teaching—or teaching that builds from the “seeds of science” in student thinking—is depicted in STEM education literature as both important and challenging. U.S. science education reform has been calling for teachers to enact instruction that attends to and takes up the substance of students’ STEM ideas; however, responsive teaching represents a substantial shift from the current state of affairs in most U.S. classrooms, where content is often presented authoritatively as facts, definitions, and algorithms, with little consideration of student thinking. Drawing on language from literature about sense‐making, this paper identifies some of the “vexation points” that novice science teachers …


Science In The Early Years. Paper 1: Early Years Science And Integration, Christine Rosicka, Gayl O'Connor Jun 2020

Science In The Early Years. Paper 1: Early Years Science And Integration, Christine Rosicka, Gayl O'Connor

Early Childhood Education

This is the first paper in the Science in the early years series that reviews current research into science learning and monitoring in the early years. The aim of this series is to provide early years educators with an insight into current research; highlight how research findings relate to children’s science learning; look at the current understandings about early years science monitoring; and provide examples of how early years educators can incorporate this research into their practices. This series defines ‘early years’ as the two years prior to school and the first three years of primary school, which in Australia …


Science In The Early Years. Paper 2: Science Inquiry Skills, Gayl O'Connor, Christine Rosicka Jun 2020

Science In The Early Years. Paper 2: Science Inquiry Skills, Gayl O'Connor, Christine Rosicka

Early Childhood Education

This is the second paper in the Science in the early years series that reviews current research into science learning and monitoring in the early years. The aim of this series is to provide early years educators with an insight into current research; highlight how research findings relate to children’s science learning; look at the current understandings about early years science monitoring; and provide examples of how early years educators can incorporate this research into their practices. This series defines ‘early years’ as the two years prior to school and the first three years of primary school, which in Australia …


Science In The Early Years. Paper 3: Monitoring Children's Learning, Christine Rosicka, Gayl O'Connor Jun 2020

Science In The Early Years. Paper 3: Monitoring Children's Learning, Christine Rosicka, Gayl O'Connor

Early Childhood Education

This third paper in the Science in the Early Years series continues to review current research into science learning and monitoring in the early years. The aim of this series is to provide early years educators with an insight into current research; highlight how research findings relate to children’s science learning; look at the current understandings about monitoring early years science learning; and provide examples of how early years educators can incorporate this research into their practices. This series defines ‘early years’ as the two years prior to school and the first three years of primary school, which in Australia …


Science In The Early Years. Paper 4: Educator Facilitation, Gayl O'Connor, Christine Rosicka Jun 2020

Science In The Early Years. Paper 4: Educator Facilitation, Gayl O'Connor, Christine Rosicka

Early Childhood Education

This fourth paper in the Science in the Early Years series concludes the review of current research into science learning and monitoring in the early years. The aim of this series is to provide early years educators with an insight into current research; highlight how research findings relate to children’s science learning; look at the current understandings about early years science; and provide examples of how early years educators can incorporate this research into their practices. This series defines ‘early years’ as the two years prior to school and the first three years of primary school, which in Australia generally …


Science In The Early Years: Monitoring Science Understandings: Checklists For Ac Foundation – Year 2, Australian Council For Educational Research Jun 2020

Science In The Early Years: Monitoring Science Understandings: Checklists For Ac Foundation – Year 2, Australian Council For Educational Research

Early Childhood Education

This resource consists of templates of checklists for teachers of Years F to 2. They are tailored to the Australian Curriculum (AC) F–2 learning outcomes and they are to help record evidence of children’s science learning and to monitor this across time. The checklists have been populated with the AC strands (Science Understanding, Science Inquiry Skills, and Science as a Human Endeavour) and outcomes identified for the four teacher resources accompanying Paper 1: Early years science and integration: Plant treasure hunt, Floating and sinking; Paper 2: Science inquiry skills: Light and shadows, Exploring mixtures.


Science In The Early Years: Monitoring Science Understandings. Checklists For Eylf Outcomes, Australian Council For Educational Research Jun 2020

Science In The Early Years: Monitoring Science Understandings. Checklists For Eylf Outcomes, Australian Council For Educational Research

Early Childhood Education

This resource consists of templates of checklists for early years educators, tailored to Early Years Learning Framework (EYLF) learning outcomes. They are to help record evidence of children’s science learning and to monitor this across time. The checklists have been populated with the EYLF outcomes identified for the four educator resources accompanying Paper 1: Early years science and integration: Plant treasure hunt; Floating and sinking; and Paper 2: Science inquiry skills: Light and shadows, Exploring mixtures.


Science In The Early Years: Plant Treasure Hunt. Educator Resource, Australian Council For Educational Research Jun 2020

Science In The Early Years: Plant Treasure Hunt. Educator Resource, Australian Council For Educational Research

Early Childhood Education

This educator resource describes an activity which encourages children to explore ideas about plants in an outdoor environment. They build on their understanding of what a plant is by drawing one and then go outdoors to find examples of plants (a ‘treasure hunt’). This activity allows children to learn about different examples of plants other than flowers, or plants that are grown in a pot. Children often discount other examples of plants such as trees, grass and vegetables. The activity is linked to the Australian Curriculum (Foundation to Year 2) and provides teacher notes about the scientific classification of plants.


Science In The Early Years: Light And Shadows. Educator Resource, Australian Council For Educational Research Jun 2020

Science In The Early Years: Light And Shadows. Educator Resource, Australian Council For Educational Research

Early Childhood Education

This educational resource for early years teachers describes an activity best suited to children in Foundation to Year 2 (F–2) as it addresses the Year 1 Science Understandings outcome as well as addressing Science Inquiry Skills outcomes for F–2. It is also suitable for preschoolers to help overcome common misconceptions about shadow formation. F–2 students should be encouraged to explain why shadows are formed as well as describe them. Preschoolers should be given the opportunity to describe and explain shadows too. This resource provides an explanation of how shadows are formed and guidelines about how to teach these scientific concepts.


Science In The Early Years: Floating And Sinking. Educator Resource, Australian Council For Educational Research Jun 2020

Science In The Early Years: Floating And Sinking. Educator Resource, Australian Council For Educational Research

Early Childhood Education

This teaching resource for early years educators explores the scientific concepts behind floating and sinking. It describes an activity for small groups of children and explains how it links to the Early Years Learning Framework (EYLF) and the Australian Curriculum (Foundation to Year 2).


Science In The Early Years: Exploring Mixtures. Educator Resource, Australian Council For Educational Research Jun 2020

Science In The Early Years: Exploring Mixtures. Educator Resource, Australian Council For Educational Research

Early Childhood Education

This activity is suitable for preschoolers to investigate the behaviour of two common household products (oil and water). The emphasis is on supporting children to develop their inquiry skills to describe what they observe when trying to mix these liquids. Preschoolers should be given the opportunity to communicate (describe and explain) their observations. The activity can be extended to Foundation, Year 1 and Year 2 students who should be encouraged to predict what will happen, communicate (explain) why some of the liquids used do not mix, as well as to describe the changes they observe when mixing materials. All children …


Science In The Early Years: Concept Cartoons As Monitoring Tools. Educator Resource, Australian Council For Educational Research Jun 2020

Science In The Early Years: Concept Cartoons As Monitoring Tools. Educator Resource, Australian Council For Educational Research

Early Childhood Education

Cartoons can be used as a way of monitoring children’s developing understanding of concepts (‘concept cartoons’). Cartoons provide a simple narrative in which two or more characters provide commentary or opinions about a phenomenon. The cartoon format is likely to be familiar to children, so is a non-threatening format to present and elicit their thoughts on the opinions provided by the characters. There are four concept cartoons in this resource. Each concept cartoon provides a monitoring tool for finding out how children’s understanding about science concepts is developing. Each cartoon is customised to one of the activities in the educator …


Critical Factors For Effective And Equitable Ngss Science Teaching Practices, Elizabeth B. Lewis, Lyrica L. Lucas, Amy Tankersley, Elizabeth Hasseler, Brandon Helding Mar 2020

Critical Factors For Effective And Equitable Ngss Science Teaching Practices, Elizabeth B. Lewis, Lyrica L. Lucas, Amy Tankersley, Elizabeth Hasseler, Brandon Helding

Department of Teaching, Learning, and Teacher Education: Posters and Presentations

With the widespread adoption and adaption of the Next Generation Science Standards (NGSS) and its implicit focus on inquiry-based instruction, reformed science teaching practices are critically important to meeting the U.S. vision of scientific literacy for all students. Thus, the role of teacher learning through both teacher preparation and professional development must be well understood and informed through empirical findings. Accordingly, the theme of this NARST conference paper set is to identify effective science teaching practices using the lens of the NGSS science and engineering practices (SEPs), science subject matter knowledge, and equitable teaching practices. We found that inquiry-based instruction …


Preservice Teachers’ Self-Efficacy To Teach Primary Science Based On ‘Science Learner’ Typology, Christina M. Norris, Julia E. Morris, Geoffrey W. Lummis Jan 2018

Preservice Teachers’ Self-Efficacy To Teach Primary Science Based On ‘Science Learner’ Typology, Christina M. Norris, Julia E. Morris, Geoffrey W. Lummis

Research outputs 2014 to 2021

According to international benchmarks [Thomson, S., Wernert, N., O'Grady, E., & Rodrigues, S. (2017). TIMSS 2015: Reporting Australia's results. Retrieved from Camberwell, Victoria: www.acer.edu.au/timss], Australia’s science education is still in decline and so the need for further investigation into preservice teachers is warranted. Utilising data from a broader mixed methods doctoral study [Norris, C. M. (2017). Exploring the impact of postgraduate preservice primary science education on students’ self-efficacy. Retrieved from http://ro.ecu.edu.au/theses/2040], this paper investigates the type of science learner entering into postgraduate preservice primary teacher education and how different learner types influence teacher self-efficacy and their effectiveness to teach science …


Inquiry-Based Learning: Assessing Students' Science Inquiry Skills, Abha Bhagat Jan 2017

Inquiry-Based Learning: Assessing Students' Science Inquiry Skills, Abha Bhagat

Teacher India

Inquiry-based approaches to teaching yield substantial benefits to students, but assessment of students' science inquiry skills indicate more emphasis is needed on the development of inquiry-based teaching and learning in the classroom.


A Teacher's Guide To Pisa Scientific Literacy, Sue Thomson, Kylie Hillman, Lisa De Bortoli Aug 2013

A Teacher's Guide To Pisa Scientific Literacy, Sue Thomson, Kylie Hillman, Lisa De Bortoli

OECD Programme for International Student Assessment (PISA) Australia

This report focuses on Australian students' performance on the PISA items that have been released in Scientific Literacy. It includes an overview of the PISA Scientific Literacy Framework, Australian students' results in the 2006 international assessment, examples of responses and marking guides and the context behind achievement, e.g. attitudes, engagement and motivation, and recognition of environmental issues.


A Reforma Do Ensino De Ciências No Ensino Secundário Brasileiro Nas Décadas De 1960 E 1970 [Science Education Reform In Brazilian Secondary Schools In The 1960s And 1970s], Karl M. Lorenz Jan 2005

A Reforma Do Ensino De Ciências No Ensino Secundário Brasileiro Nas Décadas De 1960 E 1970 [Science Education Reform In Brazilian Secondary Schools In The 1960s And 1970s], Karl M. Lorenz

Education Faculty Publications

Na segunda metade do século dezoito, foi transplantado para o Brasil um paradigma que focalizava no processo da investigação científico no ensino das Ciências Naturais na escola secundária. O paradigma teve origem nos Estados Unidos em resposta às criticas internas referentes ao ensino secundário e aos acontecimentos internacionais. Inicialmente sustentado por subvenções estrangeiras, e mais tarde patrocinado pelo ministério da Educação, um movimento surgiu no Brasil que objetivava a produção e divulgação de materiais didáticos que incorporassem os princípios desse paradigma. Este trabalho descreve a trajetória do paradigma e do movimento reformista do ensino de Ciências, desde sua origem nos …


Teachers’ Conceptions Of The Nature Of Science: A Comparative Study From Pakistan And Uk, Nelofer Halai, Jane Mcnicholl Sep 2004

Teachers’ Conceptions Of The Nature Of Science: A Comparative Study From Pakistan And Uk, Nelofer Halai, Jane Mcnicholl

Institute for Educational Development, Karachi

Curriculum designers in both Pakistan and the UK accept that science education for today’s young people should not just be about learning science, it should also include learning about the nature of science. However, together with other research evidence, this article suggests that for many science teachers, teaching about the nature of science might be problematic as they do not have the necessary understanding of the nature of science themselves. This article also argues that there are benefits in teachers across cultural divides sharing their understandings about the nature of science.


Munazza’S Story: Shedding Light On A Science Teacher’S Conceptions Of The Nature Of Science Through A Life History Study, Nelofer Halai, Derek Hodson Jan 2004

Munazza’S Story: Shedding Light On A Science Teacher’S Conceptions Of The Nature Of Science Through A Life History Study, Nelofer Halai, Derek Hodson

Institute for Educational Development, Karachi

Life history research creates a broader understanding of teaching by providing illustration of the relationships among various aspects of teachers’ lives and their teaching practice, both inside and beyond the classroom. This article focuses on the life history of Munazza, a young science teacher at the Karachi Model Secondary School (KMSS), a private, co‐educational, English‐medium school for children from middle‐income families. Its purpose is to gain insight into a female science teacher's understanding of teaching science in a school in Pakistan, ascertain what aspects of this science teacher's conceptions of the nature of science are explicit in her practice, and …


Inovação Curricular E A Reforma De 1855 De Luiz Pedreira Do Couto Ferraz [Curricular Innovation And The 1855 Reform Of Luiz Pedreira Do Couto Ferraz], Karl M. Lorenz, Ariclê Vechia Jan 1988

Inovação Curricular E A Reforma De 1855 De Luiz Pedreira Do Couto Ferraz [Curricular Innovation And The 1855 Reform Of Luiz Pedreira Do Couto Ferraz], Karl M. Lorenz, Ariclê Vechia

Education Faculty Publications

Several reforms that affected the different levels of instruction were implemented in Brazil during the decade of 1850. With respect to secondary education, the regulations proposed in Decree no. 1556 of February 17, 1855, by minister Couto Ferraz, significantly modified the program of studies of the College Pedro II, the model institution of the Empire, by dividing it into two cycles: the Studies of the First Class and the Studies of the Second Class. This study discusses changes in the curriculum, not only in its organization, but also in its composition and the emphasis given to the various disciplines in …


Reaching Out: Colleges Can Make A Difference, Babu George May 1986

Reaching Out: Colleges Can Make A Difference, Babu George

Chemistry & Physics Faculty Publications

Afternoon institutes and newsletters can help to spread enthusiasm and effective teaching techniques to elementary and secondary science teachers.