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Borda, Emily; Haskell, Todd; Todd, Andrew – Journal of College Science Teaching, 2022
We propose cross-disciplinary learning as a construct that can guide instruction and assessment in programs that feature sequential learning across multiple science disciplines. Crossdisciplinary learning combines insights from interdisciplinary learning, transfer, and resources frameworks and highlights the processes of resource activation,…
Descriptors: Interdisciplinary Approach, Multiple Choice Tests, Protocol Analysis, Evaluation Methods
Bintz, Jody; Wickler, Nicole I. Z. – Learning Professional, 2020
One of the challenges leaders face is how to help teachers examine their classroom practice. The use of video technology as a tool for teacher self-reflection, peer collaboration, and coaching has been gaining in popularity for just this purpose. In this article, the authors share how teachers benefit from using a Lesson Analysis Protocol to…
Descriptors: Video Technology, Interaction, Faculty Development, Self Evaluation (Individuals)
Oversby, John – Education in Science, 2014
Education research is an academic activity, and is often carried out by teachers (see, for example, Lavonen & Reinikainen, 2014). Lavonen and Reinikainen report that Finnish teachers are required to have a Masters degree involving education research. In the UK, the PGCE and its equivalent, from a schools-HEI partnership, usually carries…
Descriptors: Science Instruction, Teaching Methods, Visual Aids, Protocol Analysis
Coleman, Julianne; McTigue, Erin – Science and Children, 2013
This article reports on the usage of Interactive read-alouds to help students decode science diagrams and other visual information. Three short vignettes are featured from a second-grade teacher, illustrating the research-based recommendations for introducing students to the graphics of science within an authentic classroom activity--the…
Descriptors: Science Instruction, Vignettes, Grade 2, Elementary School Science
Hasse, Sascha; Joachim, Cora; Bögeholz, Susanne; Hammann, Marcus – International Journal of Education in Mathematics, Science and Technology, 2014
In Germany, science education standards for students at the end of grade nine have been in existance since 2005. Some of these standards are dedicated to scientific inquiry (e.g. experimentation). They describe which abilities learners are expected to possess at the end of grade nine. In the USA, several documents describe standards for…
Descriptors: Foreign Countries, Preservice Teachers, Biology, Science Instruction
Hasse, Sascha; Joachim, Cora; Bögeholz, Susanne; Hammann, Marcus – Online Submission, 2014
In Germany, science education standards for students at the end of grade nine have been in existence since 2005. Some of these standards are dedicated to scientific inquiry (e.g. experimentation). They describe which abilities learners are expected to possess at the end of grade nine. In the USA, several documents describe standards for…
Descriptors: Foreign Countries, Preservice Teachers, Biology, Science Instruction
MacQuarrie, Sarah; Howe, Christine; Boyle, James – Cambridge Journal of Education, 2012
Studies of primary education within the UK have shown that small groups can feature within classrooms; however, equivalent research within secondary education remains scarce. Research has established effective group work approaches, yet secondary teachers may encounter difficulties employing approaches tied to parameters embedded within primary…
Descriptors: Teaching Methods, Foreign Countries, Observation, Classroom Environment
Harlen, Wynne – Primary Science Review, 2004
When thinking about talk and discussion in primary science, the author often returns to the little gem of a book by Douglas Barnes--"From communication to curriculum" (1976). Barnes used observations of science lessons to make cogent points about the value of talk for both thinking and communication. A useful distinction that he…
Descriptors: Foreign Countries, Science Education, Science Instruction, Science Curriculum

Pizzini, Edward L.; And Others – Science Teacher, 1988
Describes a model that teaches a problem-solving process and provides students with the opportunity to practice, develop, and enhance their thinking skills. States that applying learning to real problems is needed to increase a student's thinking ability. Provides diagrams of the problem-solving cycle and levels of thinking. (RT)
Descriptors: Cognitive Processes, Critical Thinking, Learning Processes, Learning Strategies