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Chloe Wasendorf; Joshua W. Reid; Rebecca Seipelt-Thiemann; Z. T. Grimes; Brock Couch; Nick T. Peters; Julia Massimelli Sewall; Audrey L. McCombs; Patrick I. Armstrong; Nancy Boury – Journal of Biological Education, 2024
Most biology undergraduates learn about mutations in multiple classrooms throughout their college career. Understanding personalised genome test results, genome editing controversies, and the appearance of new variants of viruses or antibiotic resistant bacteria all require foundational knowledge about mutations. However, the abstract nature of…
Descriptors: Test Construction, Test Validity, Criterion Referenced Tests, Biology
Devard, Sirjana – ProQuest LLC, 2022
Sixth-grade science students at Gauger-Cobbs Middle School in Newark, DE, had misconceptions about how heat energy moves in the hydrosphere through conduction, convection, and radiation. As a result, students struggled to develop and connect ideas that correctly and completely explained heat transfer in the hydrosphere at the end of the lesson…
Descriptors: Formative Evaluation, Heat, Thermodynamics, Misconceptions
Hollylynne S. Lee; Hamid Sanei; Lisa Famularo; Jessica Masters; Laine Bradshaw; Madeline Schellman – Grantee Submission, 2023
Assessing students' conceptions related to independence of events and determining probabilities from a sample space has been the focus of research in probability education for over 40 years. While we know a lot from past studies about predictable ways students may reason with well-known tasks, developing a diagnostic assessment that can be used by…
Descriptors: Probability, Concept Formation, Validity, Misconceptions
Grimes, Zachary T.; Boury, Nancy M.; Wasendorf, Chloe; McCombs, Audrey L.; Reid, Joshua W.; James, Olena; Couch, Brock; Armstrong, Patrick I.; Seipelt-Thiemann, Rebecca L. – American Biology Teacher, 2022
Genetics plays an increasing role in modern life as evidenced by the development of revolutionary techniques such as CRISPR-based genome editing and the rise of personalized genome services. However, genetics is difficult to learn; known issues include its abstract nature, different scales, and technical language. Pedigree analysis is a…
Descriptors: Student Attitudes, Biology, Science Instruction, Student Centered Learning
Barton, Craig – American Educator, 2018
In this article, the author asserts that asking and responding to diagnostic questions is the single most important part of teaching secondary school mathematics. He notes the importance of formative assessment and recommends a formative assessment strategy that requires students to be public about their answers to questions, displaying their…
Descriptors: Mathematics Instruction, Formative Evaluation, Student Evaluation, Evaluation Methods
Dani, Danielle; Hallman-Thrasher, Allyson; Litchfield, Erin – Science Teacher, 2018
One way to probe students' misconceptions about science during instruction is by using formative assessments. Described as assessments "for" learning rather than assessments "of" learning (Black and Wiliam 1998), they provide teachers with information about student understanding during instruction. Examples of formative…
Descriptors: Cues, Writing (Composition), Teaching Methods, Scientific Concepts
Wiliam, Dylan – Educational Leadership, 2014
According to Dylan Wiliam, the traditional classroom practice in which a teacher asks a question, students raise their hands, and the teacher calls on a volunteer does not actually provide much useful information--and it may even impede learning. When teachers ask questions in this way, they're only engaging the most confident students in the…
Descriptors: Teaching Methods, Questioning Techniques, Teacher Role, Student Role
Copeland Solas, Eddia; Wilson, Kenesha – Journal of Turkish Science Education, 2017
Student-generated annotated concept sketches provide an alternative approach for instructors to formatively assess students' understanding of environmental topics, such as photochemical smog and ozone layer depletion. The sketches are external representations of students' cognitive models. Results obtained from a group of 150 female students using…
Descriptors: Formative Evaluation, Scientific Concepts, Concept Formation, Misconceptions
Hutchison, Paul – Science and Children, 2013
Children understand the natural world in ways that make sense to them before they learn any science in school. This column provides ideas and techniques to enhance science teaching. This month's issue helps students connect scientifically correct ideas to what makes sense to them.
Descriptors: Science Instruction, Scientific Concepts, Relevance (Education), Misconceptions
Wilder, Sandra – Clearing House: A Journal of Educational Strategies, Issues and Ideas, 2015
This article aims to describe a type of formative assessment, MAP Classroom Challenge, which has been introduced in mathematics classrooms in recent years. MAP, or the Mathematics Assessment Project Classroom Challenges (formerly known as Formative Assessment Lessons), are developed by teams of math educators from the Shell Centre for Mathematical…
Descriptors: Formative Evaluation, Mathematics Instruction, Mathematics Teachers, College Faculty
Prilliman, Stephen G. – Journal of Chemical Education, 2014
The College Board's recently revised curriculum for advanced placement (AP) chemistry places a strong emphasis on conceptual understanding, including representations of particle phenomena. This change in emphasis is informed by years of research showing that students could perform algorithmic calculations but not explain those calculations…
Descriptors: Science Instruction, Secondary School Science, High Schools, College Science
Gardner, Kimberly – Teaching Statistics: An International Journal for Teachers, 2013
Statistics is an integral part of the K-12 mathematics curriculum (age 5-18). Naturally, students construct misconceptions of what they learn. This article discusses The Bop It[C]Challenge, a review activity assesses student understanding and reveals their misunderstandings of statistical concepts. (Contains 3 figures and 1 table.)
Descriptors: Statistics, Mathematics Instruction, Misconceptions, Mathematical Concepts
Hanyak, Michael E., Jr. – Advances in Engineering Education, 2015
In an introductory chemical engineering course, the conceptual framework of a holistic problem-solving methodology in conjunction with a problem-based learning approach has been shown to create a learning environment that nurtures deep learning rather than surface learning. Based on exam scores, student grades are either the same or better than…
Descriptors: Chemical Engineering, Problem Solving, Teaching Methods, Problem Based Learning
Hodgen, Jeremy; Foster, Colin; Marks, Rachel; Brown, Margaret – Education Endowment Foundation, 2018
This document presents a review of evidence commissioned by the Education Endowment Foundation to inform the guidance document "Improving Mathematics in Key Stages Two and Three" (Education Endowment Foundation, 2017). The review draws on a substantial parallel study by the same research team, funded by the Nuffield Foundation, which…
Descriptors: Mathematics Instruction, Foreign Countries, Mathematics Skills, Feedback (Response)
Daehler, Kirsten; Shinohara, Mayumi; Folsom, Jennifer – WestEd, 2011
Proven through more than a decade of rigorous research to be effective with both teachers and students, "Making Sense of SCIENCE" helps teachers gain a deep and enduring understanding of tricky science topics, think and reason scientifically, and support content literacy in science, thereby increasing student achievement. The materials…
Descriptors: Science Education, Scientific Concepts, Misconceptions, Concept Formation
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