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Yonai, Ella; Blonder, Ron – Physical Review Physics Education Research, 2020
The goal of this research is to provide a rich set of connections between two fields: (i) Nanoscale science and technology (NST) and (ii) topics from a common middle school physics curriculum. NST is emerging as one of the most promising new fields of the 21st century, which is one of the many arguments for including NST topics in secondary…
Descriptors: Secondary School Science, Science Instruction, Physics, Molecular Structure
Seibert, Johann; Kay, Christopher W. M.; Huwer, Johannes – Journal of Chemical Education, 2019
Given that students are constantly communicating and documenting special experiences in their social and private lives with digital devices, we suggest that this behavior could be used to record and deepen learning experiences-such as visualizing reactions at the molecular level-in a chemistry class. An example would be the creation of stop-motion…
Descriptors: Science Instruction, Chemistry, Science Experiments, Educational Technology
Philippof, Joanna; Seraphin, Kanesa Duncan; Seki, Jennifer; Kaupp, Lauren – Science Teacher, 2015
The periodic table does more than provide information about the elements. The periodic table also helps us make predictions about how the elements behave. Understanding the atomic structure of matter and periodic properties of the elements, as shown in the periodic table, is fundamental to many scientific disciplines. Unfortunately, high school…
Descriptors: Chemistry, Science Instruction, Secondary School Science, High School Students
Ozkan, Gulbin; Sezgin Selcuk, Gamze – Asia-Pacific Forum on Science Learning and Teaching, 2013
Misconceptions are the number one factor leading students to failure when studying physics. To teach physics effectively, misconceptions must be spotted and overcome. Conceptual change texts are of great use in identifying and dealing with fallacies. Such texts can help physics teachers diagnose student misconceptions and the reasons for these,…
Descriptors: Misconceptions, Science Instruction, Physics, Scientific Concepts
Stevenson, Anne – Science and Children, 2013
"I Wonder" boards are a teaching strategy that can be used in the classroom, as well as during science learning opportunities in nonformal settings, such as after-school science programs or summer camps.This simple strategy has led to deeper science exploration in 4-H, as young people learn alongside program staff, teachers, or…
Descriptors: Science Instruction, Inquiry, Teaching Methods, Nonformal Education
Tarhan, Leman; Ayar-Kayali, Hulya; Urek, Raziye Ozturk; Acar, Burcin – Research in Science Education, 2008
This research study aims to examine the effectiveness of a problem-based learning (PBL) on 9th grade students' understanding of intermolecular forces (dipole-dipole forces, London dispersion forces and hydrogen bonding). The student's alternate conceptions about intermolecular bonding and their beliefs about PBL were also measured. Seventy-eight…
Descriptors: Problem Based Learning, Chemistry, Measures (Individuals), Grade 9
Roberg, Ezra – Science Teacher, 2004
The "Central Dogma" of genetics states that one gene, located in a DNA molecule, is ultimately translated into one protein. As important as this idea is, many teachers shy away from teaching the actual mechanism of gene translation, and many students find the concepts abstract and inaccessible. This article describes a unit, called Genetics…
Descriptors: Plastics, Genetics, Secondary School Science, High School Students