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Koblischka, Michael R.; Koblischka-Veneva, Anjela – Physics Education, 2022
Several properties of Earth's magnetic field (field vectors, time dependence) are measured in various locations using a smartphone/tablet magnetic sensor. To enable a proper use of the magnetic sensor as a classroom tool, the exact location of the sensor in the device and its resolution must be identified in a first step. Then, students may…
Descriptors: High School Students, Physics, Science Curriculum, Experiments
Skamp, Keith; Green, Jodie – Teaching Science, 2022
This paper, the third in a series on Earth System Science Education, describes various pedagogical ways forward when science teachers are addressing the curriculum implications of the recent interdisciplinary field of Earth System Science (ESS). Parts I and II introduced the key ideas of ESS and the implications for the Australian Curriculum:…
Descriptors: Earth Science, Science Curriculum, Evidence Based Practice, Sustainability
Sisk-Hilton, Stephanie; Ferner, Sarah Davies – Science and Children, 2022
The inclusion of engineering in the Next Generation Science Standards (NGSS) as a key component of K-12 science learning has provided both opportunities and challenges for elementary teachers. One challenge is integrating the design thinking processes that undergird engineering with core science concepts and current issues facing scientists and…
Descriptors: Engineering Education, Science Education, National Standards, Elementary School Teachers
Sahingöz, Selçuk – Review of International Geographical Education, 2021
Today, individuals need a solid understanding of how earth as a system works in order to understand and develop solutions for science-based issues affecting societies on a global scale such as natural disasters, global warming or COVID-19 pandemic. Humans also deliberate space investigations, such as interplanetary travels and life in space.…
Descriptors: Spatial Ability, Earth Science, Problem Solving, Skill Development
Barker, James; Pope, Deborah – Primary Science, 2016
The "working scientifically" strand of the new primary science curriculum for England has re-emphasised the importance of children having opportunities to carry out different types of enquiries to answer their scientific questions. To promote this as an ongoing aim of primary science education, it is equally important for trainee primary…
Descriptors: Science Instruction, Elementary School Science, Science Curriculum, Inquiry
McGee, Christy – Gifted Child Today, 2018
Tomlinson's explanation of Artful Teaching and her 2017 expansion of this concept The Five Key Elements of Differentiation provide the theoretical framework of this examination of the need for science investigations in elementary schools. The Artful Teaching framework uses an equilateral triangle with vertices labeled The Teacher, The Student, and…
Descriptors: Teaching Methods, Science Instruction, Science Experiments, Elementary School Students
Zhang, Meilan; Parker, Joyce; Koehler, Matthew J.; Eberhardt, Jan – Journal of Science Teacher Education, 2015
Prior research has mainly focused on what makes professional development effective from the program design perspective. However, there is a lack of understanding about what teachers need for improvement in the context of educational reforms and curricular changes. This study used the pedagogical content knowledge framework to examine teachers'…
Descriptors: Science Teachers, Science Instruction, Physics, Earth Science
Bush, Drew; Sieber, Renee; Seiler, Gale; Chandler, Mark – Journal of Geoscience Education, 2016
A gap has existed between the tools and processes of scientists working on anthropogenic global climate change (AGCC) and the technologies and curricula available to educators teaching the subject through student inquiry. Designing realistic scientific inquiry into AGCC poses a challenge because research on it relies on complex computer models,…
Descriptors: Climate, Earth Science, Curriculum Design, Science Curriculum
King, Chris – Primary Science, 2013
Readers of the draft new English primary science curriculum (DfE, 2012) might be concerned to see that there is much more detail on the Earth science content than previously in the United Kingdom. In this article, Chris King, a professor of Earth Science Education at Keele University and Director of the Earth Science Education Unit (ESEU),…
Descriptors: Science Instruction, Earth Science, Elementary School Science, Science Curriculum
Donovan, Deborah A.; Borda, Emily J.; Hanley, Daniel M.; Landel, Carolyn C. – Journal of Science Teacher Education, 2015
Despite significant pressure to reform science teaching and learning in K12 schools, and a concurrent call to reform undergraduate courses, higher education science content courses have remained relatively static. Higher education science faculty have few opportunities to explore research on how people learn, examine state or national science…
Descriptors: Curriculum Development, Science Teachers, Elementary School Science, Secondary School Science
Gagnon, Valoree; Bradway, Heather – Science Scope, 2012
For many years, Earth science concepts have been taught as thematic units with lessons in nice, neat chapter packages complete with labs and notes. But compartmentalized Earth science no longer exists, and implementing teaching methods that support student development of holistic understandings can be a time-consuming and difficult task. While…
Descriptors: Teaching Methods, Earth Science, Current Events, Science Instruction
Pallant, Amy; Pryputniewicz, Sarah; Lee, Hee-Sun – Science Teacher, 2012
Scientists, and science in general, move from the unknown to increasing levels of certainty. Teaching students about science means encouraging them to embrace and investigate the unknown, make reliable scientific claims, justify those claims with evidence, and evaluate the quality of the evidence. In all areas of science--and especially in…
Descriptors: Science Education, Space Sciences, Secondary School Science, High Schools
Wysession, Michael E. – Science and Children, 2013
In this article, Michael E. Wysession comments on the "Next Generation Science Standards" (NGSS), which are based on the recommendations of the National Research Council and represent a revolutionary step toward establishing modern, national K-12 science education standards. The NGSS involves significant changes from traditional…
Descriptors: Science Education, Earth Science, Space Sciences, Academic Standards
Nam, Younkyeong – Cultural Studies of Science Education, 2012
This review explores Ben-Zvi Assaraf, Eshach, Orion, and Alamour's paper titled "Cultural Differences and Students' Spontaneous Models of the Water Cycle: A Case Study of Jewish and Bedouin Children in Israel" by examining how the authors use the concept of spontaneous mental models to explain cultural knowledge source of Bedouin…
Descriptors: Constructivism (Learning), Water, Jews, Cultural Differences
Esteves, Helena; Ferreira, Paulo; Vasconcelos, Clara; Fernandes, Isabel – Journal of Geoscience Education, 2013
Recognizing the relevance that fieldwork and field trips have in the teaching of geosciences and related learning processes, this study presents two geological fieldwork studies that were established with Portuguese secondary school students. Both studies were focused on geoscience content knowledge, and attempted to increase environmental…
Descriptors: Secondary School Students, Mixed Methods Research, Foreign Countries, Learning Processes