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Lau, Kwok-chi – American Biology Teacher, 2013
This article presents a tangible model used to help students tackle some misconceptions about enzyme actions, particularly the induced-fit model, enzyme-substrate complementarity, and enzyme inhibition. The model can simulate how substrates induce a change in the shape of the active site and the role of attraction force during enzyme-substrate…
Descriptors: Models, Biochemistry, Misconceptions, Scientific Methodology
Smith, Robert; Peethambaran, Bela; Pontiggia, Laura; Blumberg, Phyllis – Journal of Biological Education, 2013
Guided instruction is an approach that fully explains the concepts and procedures that students are required to learn. It seems intuitive that this approach should increase student learning; however, there is evidence in the literature that this may not always be the case. We wanted to assess the effectiveness of our own repeated…
Descriptors: Teaching Methods, Molecular Biology, Science Education, Science Instruction
Steegen, An; Hasendonckx, Femke; De Cock, Mieke – Review of International Geographical Education Online, 2018
It is well-known that misconceptions exist on a range of topics. The origin of these misconceptions can be very different, but some of them can be understood by students struggling with the application of physics concepts in real life situations or in the context of another school subject, e.g. geography. In this paper, different strategies to…
Descriptors: Educational Technology, Technology Uses in Education, Handheld Devices, Telecommunications
Türkmen, Hakan – European Journal of Physics Education, 2015
The purpose of study is to investigate the fifth graders' understandings of the basic astronomy concept and, if they have, to define their misconceptions and then to determine what reason/s behind them. For this purpose, two hundred seventy fifth grade students from 6 different schools participated. Randomly selected 45 students performing under…
Descriptors: Astronomy, Elementary School Students, Grade 5, Misconceptions
Alston, Geleana Drew; Ellis-Hervey, Nina – Learning, Media and Technology, 2015
This study examined how "YouTube" creates a unique, nonformal cyberspace for Black females to vlog about natural hair. Specifically, we utilized qualitative video data analysis techniques to understand how using "YouTube" as a facilitation tool has the ability to collectively capture and maintain an audience of more than a…
Descriptors: Adult Educators, Informal Education, Teaching Methods, Video Technology
Hitt, Austin Manning; Townsend, J. Scott – Science Activities: Classroom Projects and Curriculum Ideas, 2015
Elementary, middle-level, and high school science teachers commonly find their students have misconceptions about heat and temperature. Unfortunately, student misconceptions are difficult to modify or change and can prevent students from learning the accurate scientific explanation. In order to improve our students' understanding of heat and…
Descriptors: Science Instruction, Scientific Concepts, Misconceptions, Heat
Davies, Tony – Primary Science, 2014
Teaching children about circuits and the way electricity works is a "tricky business" because it is invisible. Just imagine all eyes are on the teacher as he or she produces for the class what looks like a ping-pong ball and then, with a wave of their hand, the incredible happens! This wonderful white sphere begins to glow red and a…
Descriptors: Science Instruction, Elementary School Science, Electronics, Scientific Concepts
Roe, Seán M.; Johnson, Christopher D.; Tansey, Etain A. – Advances in Physiology Education, 2014
The measurement and representation of the electrical activity of muscles [electromyography (EMG)] have a long history from the Victorian Era until today. Currently, EMG has uses both as a research tool, in noninvasively recording muscle activation, and clinically in the diagnosis and assessment of nerve and muscle disease and injury as well as in…
Descriptors: Physiology, Laboratories, Learning Activities, Human Body
Tasker, Roy – Teaching Science, 2014
Why is chemistry so difficult? A seminal paper by Johnstone (1982) offered an explanation for why science in general, and chemistry in particular, is so difficult to learn. He proposed that an expert in chemistry thinks at three levels; the macro (referred to as the observational level in this article), the sub-micro (referred to as the molecular…
Descriptors: Chemistry, Visualization, Molecular Structure, Theory Practice Relationship
Mueller, Mary; Yankelewitz, Dina – Kappa Delta Pi Record, 2014
Gain a new perspective on the sharing of erroneous solutions in classroom discussions. Based on their research in grades four and six, the authors reveal how student-to-student correction of errors promotes mathematical reasoning and understanding. Tips for teachers include strategies for using students' errors to encourage reasoning during…
Descriptors: Teaching Methods, Error Correction, Mathematics Instruction, Elementary School Mathematics
Gaze, Catherine M. – Journal of the Scholarship of Teaching and Learning, 2014
The present study investigates the frequency and confidence with which college students endorse popular psychological myths, contrasting introductory psychology students (at the beginning and end of the course) with upper-level psychology majors and students who have never taken Introduction to Psychology. This study builds on the existing…
Descriptors: Student Attitudes, Comparative Analysis, Majors (Students), Intellectual Disciplines
Yin, Yue – Science Scope, 2012
Misconceptions about sinking and floating phenomena are some of the most challenging to overcome (Yin 2005), possibly because explaining sinking and floating requires students to understand challenging topics such as density, force, and motion. Two scientific principles are typically used in U.S. science curricula to explain sinking and floating:…
Descriptors: Science Education, Misconceptions, Scientific Principles, Physics
Taylan, Rukiye Didem; da Ponte, João Pedro – REDIMAT - Journal of Research in Mathematics Education, 2016
This article investigates the pedagogical content knowledge (PCK) of a teacher educator who teaches 5th-grade mathematics in a school in the context of a university-school partnership project. PCK is analyzed in a qualitative way through video-taped classroom episodes with focus on interactions between the teacher and the students as well as the…
Descriptors: Pedagogical Content Knowledge, Mathematics Instruction, Mathematics Education, Mathematics Teachers
Charalambous, Charalambos Y. – Journal of Teacher Education, 2016
Central in the frameworks proposed to capture the knowledge needed for teaching mathematics is the assumption that teachers need more than pure subject-matter knowledge. Validation studies exploring this assumption by recruiting contrasting populations are relatively scarce. Drawing on a sample of 644 Greek-Cypriots preservice and inservice…
Descriptors: Knowledge Base for Teaching, Foreign Countries, Knowledge Level, Preservice Teachers
Alkis Küçükaydin, Mensure; Uluçinar Sagir, Safak – International Electronic Journal of Elementary Education, 2016
In this study, the pedagogical content knowledge (PCK) of four experienced primary school teachers was investigated within the "Let's Solve the Riddle of Our Body Unit". The PCK investigation adopted a learning approach based on inquiry, content representation and pedagogical and professional-experience repertoires (PaP-eRs), and…
Descriptors: Pedagogical Content Knowledge, Elementary School Teachers, Human Body, Science Instruction

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