NotesFAQContact Us
Collection
Advanced
Search Tips
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Showing 1 to 15 of 61 results Save | Export
Peer reviewed Peer reviewed
Direct linkDirect link
Shakeel Mohammad Cassam Atchia; Dhavini Chummun; Saheel Luckho – Journal of Biological Education, 2024
This study uses a case study methodology to showcase the use of the DTSICM (Design thinking Strategy to Identify and Clear Misconceptions) model, which provides a design thinking approach to identify and clear a common misconception on photosynthesis, held by a sample of 27 A-level students. As a first stage, data collected through the…
Descriptors: Design, Thinking Skills, Scientific Concepts, Misconceptions
Peer reviewed Peer reviewed
PDF on ERIC Download full text
Bakopoulou, Athanasia; Antonarakou, Assimina; Zambetakis-Lekkas, Alexandra – Education Sciences, 2021
This paper studies Greek junior high school students' alternative ideas, both initial and synthetic, on geodynamic phenomena. It comments in detail on students' concepts on Earth structure, earthquake occurrence, volcano formation, and relief change. Additionally, it attempts to trace and interpret how and why these ideas form (concept…
Descriptors: Junior High School Students, Early Adolescents, Public Schools, Scientific Concepts
Peer reviewed Peer reviewed
Direct linkDirect link
Slater, E. V.; Morris, J. E.; McKinnon, D. – International Journal of Science Education, 2018
Alternative conceptions in astronomy are a road block to new learning. Astronomy content is included in the Australian Curriculum (AC) from Year 3 and then intermittently in Year 5, Year 7 and Year 10. In accepting that science is socio-culturally constructed, it is important for teachers to have a clear understanding of the alternative…
Descriptors: Foreign Countries, Astronomy, Science Instruction, Scientific Concepts
Peer reviewed Peer reviewed
Direct linkDirect link
Prud'homme-Généreux, Annie – Journal of College Science Teaching, 2017
Misconceptions are sometimes called "alternative conceptions" in acknowledgement of the fact that although these concepts are inaccurate, they are congruent with prior experiences. The idea that misconceptions must be addressed to improve learning is helpful to remember when developing a case study. Students will bring their existing…
Descriptors: Case Studies, Misconceptions, Science Instruction, Science Curriculum
Peer reviewed Peer reviewed
PDF on ERIC Download full text
Mercer-Mapstone, Lucy; Bajan, Sarah; Banas, Kasia; Morphett, Arthur – Teaching & Learning Inquiry, 2021
The need to make higher education curricula gender-inclusive is increasingly pressing as student cohorts diversify. We adopted a student-staff partnership approach to design, integrate, and evaluate a module that taught first-year science students the difference between biological sex, gender identity, gender expression, and sexual orientation in…
Descriptors: College Science, Biology, Sex, Sexual Identity
Peer reviewed Peer reviewed
Direct linkDirect link
Kaur, Gurjeet – Contemporary Education Dialogue, 2017
Despite its familiarity and the fact that it becomes a formal area of study in early upper primary grades, optics remains a cognitive challenge for young as well as advanced learners, not only because much of it is counter-intuitive but also because its conceptual comprehension involves negotiating the vocabulary and graphical symbolism involved…
Descriptors: Preservice Teachers, Optics, Comprehension, Science Education
Peer reviewed Peer reviewed
Direct linkDirect link
Adadan, Emine; Yavuzkaya, Merve Nur – International Journal of Science Education, 2018
This cross-sectional study examined how the progression and consistency of students' understanding of thermal concepts in everyday contexts changes across the grade levels. A total of 656 Turkish students from Grade 8 (age 13-14), Grade 10 (age 15-16), and the first year of college (age 19-20) participated in the study. The data were analysed…
Descriptors: Concept Formation, Heat, Scientific Concepts, Science Instruction
Peer reviewed Peer reviewed
PDF on ERIC Download full text
Herrmann-Abell, Cari F.; Koppal, Mary; Roseman, Jo Ellen – CBE - Life Sciences Education, 2016
Modern biology has become increasingly molecular in nature, requiring students to understand basic chemical concepts. Studies show, however, that many students fail to grasp ideas about atom rearrangement and conservation during chemical reactions or the application of these ideas to biological systems. To help provide students with a better…
Descriptors: Biology, Secondary School Science, Middle School Students, High Schools
Heredia, Keily – ProQuest LLC, 2013
This work describes three case studies conducted to address two major problems in the area of chemistry education research, the lack of reported psychometrics regarding instrument scores, and the need for well-characterized assessments to evaluate college chemistry curricula. The first case study describes a psychometric evaluation of the Colorado…
Descriptors: Case Studies, Chemistry, Science Education, Educational Research
Peer reviewed Peer reviewed
Direct linkDirect link
Bouwma-Gearhart, Jana; Stewart, James; Brown, Keffrelyn – International Journal of Science Education, 2009
Understanding the particulate nature of matter (PNM) is vital for participating in many areas of science. We assessed 11 students' atomic/molecular-level explanations of real-world phenomena after their participation in a modelling-based PNM unit. All 11 students offered a scientifically acceptable model regarding atomic/molecular behaviour in…
Descriptors: Science Activities, Causal Models, Heat, Science Instruction
Peer reviewed Peer reviewed
Goh, Ngoh-Khang; And Others – Australian Science Teachers Journal, 1993
Presents the results of a study that identifies misconceptions in chemistry by means of a two-tier diagnostic instrument. Data indicate that similar misconceptions are held by both Singaporean and Australian populations. Focuses on covalent bonding and structure. (DDR)
Descriptors: Chemistry, Concept Formation, Educational Strategies, Knowledge Representation
Peer reviewed Peer reviewed
Barak, Judith; Gorodetsky, Malka; Chipman, David – International Journal of Science Education, 1997
Addresses the possible connection between misconceptions of energy in biological phenomena and adherence to scientifically oriented conceptions of biology. Makes recommendations for basing the biology curriculum on the second law of thermodynamics. Contains 31 references. (DDR)
Descriptors: Biology, Concept Formation, Energy, Higher Education
Basca, Belinda B.; Grotzer, Tina A. – 2001
Although pressure forms the basis for understanding topics such as the internal structure of the earth, weather cycles, rock formation, Bernoulli's principle, and plate tectonics, the presence of this concept in the school curriculum is at a minimal level. This paper suggests that the ideas, misconceptions, and perceptions of students have to do…
Descriptors: Concept Formation, Force, Junior High Schools, Misconceptions
Peer reviewed Peer reviewed
Krnel, D.; Watson, R.; Glazar, S. A. – International Journal of Science Education, 1998
Presents a survey and analysis of research related to the development of concepts of matter. Proposes that the clarity with which students understand the distinction between matter and objects influences their explanations. Contains 111 references. (DDR)
Descriptors: Chemistry, Concept Formation, Elementary Secondary Education, Foreign Countries
Peer reviewed Peer reviewed
Ozay, Esra; Oztas, Haydar – Journal of Biological Education, 2003
Studies misconceptions held by grade 9 students (14-15-years old) in Turkey about photosynthesis and plant nutrition. Uses a questionnaire to test students' conceptions and reports conflicting and often incorrect ideas about photosynthesis, respiration, and energy flow in plants. Suggests that there are difficulties in changing students' prior…
Descriptors: Biology, Concept Formation, Foreign Countries, Misconceptions
Previous Page | Next Page »
Pages: 1  |  2  |  3  |  4  |  5