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Kontomaris, S. V.; Malamou, A.; Balogiannis, G.; Antonopoulou, N. – Physics Education, 2020
Electromagnetic radiation can be classified into two major types depending on its ability to detach electrons from atoms: ionising and non-ionising. The aforementioned categorization is significant due to the effects of ionising radiation on human tissue (e.g. carcinogenesis). However, many students around the globe cannot distinguish these two…
Descriptors: Science Instruction, Energy, Magnets, Scientific Concepts
Sharma, R. K.; Yadav, Subham; Gupta, Radhika; Arora, Gunjan – Journal of Chemical Education, 2019
Systems thinking is highly desirable for re-imagining chemistry education, which will help in the development of an integrated and sustainable approach that takes into account the interdependence of a system under study with other components of the ecosystem rather than practicing a fragmented approach. Thus, to develop a systems' perspective into…
Descriptors: Science Instruction, Science Experiments, Sustainability, Science Laboratories
Das, Arijit – Online Submission, 2017
In this chapter text-based learning approaches have been highlighted by innovative and time economic way to enhance the interest of students who belong to the paranoia zone in Electronic Structure of Atoms and Molecules beneath Inorganic Chemistry of chemical science. In this pedagogical survey, I have tried to hub two (02) time economic…
Descriptors: Science Instruction, Molecular Structure, Inorganic Chemistry, Teaching Methods
Chakraborty, Maharudra; Mukhopadhyay, Subrata; Das, Ranendu Sekhar – Journal of Chemical Education, 2014
A quite simple and inexpensive technique is described here to represent the approximate shapes of atomic orbitals and the molecular orbitals formed by them following the principles of the linear combination of atomic orbitals (LCAO) method. Molecular orbitals of a few simple molecules can also be pictorially represented. Instructors can employ the…
Descriptors: Magnets, Demonstrations (Educational), Molecular Structure, Scientific Concepts
de la Vega-Herna´ndez, Karen; Antuch, Manuel – Journal of Chemical Education, 2015
A vectorial representation of the full sequence of events occurring during the 2D-NMR heteronuclear single-quantum correlation (HSQC) experiment is presented. The proposed vectorial representation conveys an understanding of the magnetization evolution during the HSQC pulse sequence for those who have little or no quantum mechanical background.…
Descriptors: Correlation, Quantum Mechanics, Science Experiments, Magnets
Kao, Jacqueline Y.; Yang, Min-Han; Lee, Chi-Young – Journal of Chemical Education, 2015
Neo magnets are neodymium magnet beads that have been marketed as a desktop toy. We proposed using neo magnets as an alternative building block to traditional ball-and-stick models to construct carbon allotropes, such as fullerene and various nanocone structures. Due to the lack of predetermined physical connections, the versatility of carbon…
Descriptors: Science Activities, Magnets, Demonstrations (Educational), Undergraduate Students
Pritchard, Benjamin P.; Simpson, Scott; Zurek, Eva; Autschbach, Jochen – Journal of Chemical Education, 2014
A computational experiment investigating the [superscript 1]H and [superscript 13]C nuclear magnetic resonance (NMR) chemical shifts of molecules with unpaired electrons has been developed and implemented. This experiment is appropriate for an upper-level undergraduate laboratory course in computational, physical, or inorganic chemistry. The…
Descriptors: Science Instruction, College Science, Undergraduate Study, Molecular Structure
Cheng, Meng-Fei; Cheng, Yufang; Hung, Shuo-Hsien – Teaching Science, 2014
Based on our experience of teaching physics in middle and senior secondary school, we have found that students have difficulty in reasoning at the microscopic level. Their reasoning is limited to the observational level so they have problems in developing scientific models of magnetism. Here, we suggest several practical activities and the use of…
Descriptors: Thinking Skills, Magnets, Science Education, Computer Simulation
Flener-Lovitt, Charity – Journal of Chemical Education, 2014
A thematic course called "Climate Change: Chemistry and Controversy" was developed for upper-level non-STEM students. This course used the socioscientific context of climate change to teach chemical principles and the nature of science. Students used principles of agnotology (direct study of misinformation) to debunk climate change…
Descriptors: Science Instruction, College Science, Undergraduate Study, Teaching Methods
Cid-Vidal, Xabier; Cid, Ramon – Physics Education, 2011
Proton beams have been colliding at 7 TeV in the Large Hadron Collider (LHC) since 30 March 2010, meaning that the LHC research programme is underway. Particle physicists around the world are looking forward to using the data from these collisions, as the LHC is running at an energy three and a half times higher than previously achieved at any…
Descriptors: Physics, Astronomy, Science Instruction, Energy

Gilbert, George L., Ed. – Journal of Chemical Education, 1989
Discusses three broad classes of magnetic behavior: diamagnetic, paramagnetic, and ferromagnetic. Presents a simple lecture demonstration using an overhead projector to synthesize triiron tetraoxide and to show its interaction with a magnetic field and comparing it to a paramagnetic material. (MVL)
Descriptors: Chemical Bonding, Chemical Reactions, Chemistry, College Science

Gabel, Dorothy; And Others – Science Teacher, 1992
Chemistry can be described on three levels: sensory, molecular, and symbolic. Proposes a particle approach to teaching chemistry that uses magnets to aid students construct molecular models and solve particle problems. Includes examples of Johnstone's model of chemistry phenomena, a problem worksheet, and a student concept mastery sheet. (MDH)
Descriptors: Chemistry, Cognitive Development, Concept Formation, Magnets