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Sternberg, Robert J.; Ehsan, Hoda; Ghahremani, Mehdi – Roeper Review, 2022
In this article, we present a hierarchical model for teaching scientific thinking to gifted students. This article follows up on an article published 40 years ago in this journal. The problem now, as 40 years ago, is that gifted students often are taught science courses at a more intensive level, but without their truly learning how to think…
Descriptors: Academically Gifted, Gifted Education, Science Education, Knowledge Level
Grieger, Krystal; Leontyev, Alexey – Journal of College Science Teaching, 2023
This article describes the implementation of a student-generated open educational resource project into a majors' organic chemistry laboratory. This scaffolded semester-long project was organized into six phases and designed to promote the goals of teaching students about both green chemistry and real-life applications of the reactions covered in…
Descriptors: Chemistry, Conservation (Environment), Science Instruction, Organic Chemistry
Kuhn, Deanna – Science Education, 2016
Have the Next Generation Science Standards fulfilled a goal of specifying the objectives of precollege science education in clear and exact enough terms to make them readily implementable? Using students' understanding of the concept of a variable as a case in point, the author suggests that the standards, despite their seeming precision and…
Descriptors: Science Instruction, Scientific Concepts, Elementary Secondary Education, Concept Formation
Gorin, David J.; Jamieson, Elizabeth R.; Queeney, K. T.; Shea, Kevin M.; Spray, Carrie G. Read – Journal of Chemical Education, 2016
Numerous options exist to assess student performance using standardized, multiple-choice exams at the course and department levels. This paper describes the development and implementation of an alternative department-level assessment for graduating chemistry majors. The assessment detailed here evaluates students' ability to transfer chemical…
Descriptors: Majors (Students), Chemistry, Student Evaluation, Evaluation Methods
Haglund, Jesper – Science & Education, 2017
Entropy is often introduced to students through the use of the disorder metaphor. However, many weaknesses and limitations of this metaphor have been identified, and it has therefore been argued that it is more harmful than useful in teaching. For instance, under the influence of the disorder metaphor, students tend to focus on spatial…
Descriptors: Scientific Concepts, Figurative Language, Language Usage, Misconceptions
McDowall, Sue; Hipkins, Rosemary – New Zealand Council for Educational Research, 2018
This is one of two papers developed for a Ministry of Education (MOE)-funded project, Competencies in New Zealand Council for Educational Research (NZC). The first paper draws on archived policy discussion papers to document the provenance of the NZC key competencies. This second paper analyses a series of research projects to describe how…
Descriptors: Foreign Countries, Competence, National Curriculum, Curriculum Development
Jackson, Charlotte – Primary Science, 2016
In her current role as an adviser with Herts for Learning, the author finds that most of the support primary schools across the county have been asking for centres around assessment and ideas for making the new curriculum practical and "hands on". In this article, she outlines how she created resources to support assessment in science…
Descriptors: Science Instruction, Elementary School Science, Hands on Science, Elementary School Teachers
Donegan-Ritter, Mary – Young Exceptional Children, 2017
Early childhood STEM activities are part of developmentally appropriate practices that are the foundation of quality preschool experiences for all young children (Copple & Bredekamp, 2009). However, young children with developmental delays or disabilities require planning and specialized practices that allow them to participate and engage…
Descriptors: Early Childhood Education, Preschool Teachers, STEM Education, Learner Engagement
Antonenko, Pavlo D.; Jahanzad, Farzaneh; Greenwood, Carmen – Journal of College Science Teaching, 2014
Collaborative problem solving is an essential component of any 21st century science career. Scientists are hired, retained, and promoted for solving problems in dynamic and interdisciplinary teams. They discuss issues, explain and justify their opinions, debate, elaborate, and reflect on their collective knowledge. At the same time, both…
Descriptors: Problem Solving, Cooperative Learning, Science Instruction, Scaffolding (Teaching Technique)
Kelley, Todd R. – Technology and Engineering Teacher, 2014
It is evident that there is a need for assessment instruments that measure design and engineering design skills, knowledge, and ways of design thinking. These student assessments must be authentic to engineering design practices and measure key elements of the engineering design process. Kelley (2011) presented a rationale to include…
Descriptors: Engineering Education, Design, Skill Analysis, Needs Assessment
Resistance and the Development of Scientific Practice: Designing the Mangle into Science Instruction
Manz, Eve – Cognition and Instruction, 2015
This article addresses how we can develop learning environments that establish a need for scientific practices and provide a context for developing content knowledge through practice. It argues that Pickering's (1995) notion of "The Mangle of Practice" informs these efforts by focusing our attention on how resistance, or push-back from…
Descriptors: Science Process Skills, Knowledge Level, Science Instruction, Elementary School Science
Timme, Nicholas; Baird, Michael; Bennett, Jake; Fry, Jason; Garrison, Lance; Maltese, Adam – Physics Teacher, 2013
For the past two years, the Foundations in Physics and Mathematics (FPM)
summer program has been held at Indiana University in order to fulfill two goals: provide additional physics and mathematics instruction at the high school level, and provide physics graduate students with experience and autonomy in designing curricula and teaching courses.…
Descriptors: Science Instruction, High Schools, Secondary School Science, Physics
Mc Goldrick, Niamh B.; Marzec, Bartosz; Scully, P. Noelle; Draper, Sylvia M. – Journal of Chemical Education, 2013
Since 2002, a multidisciplinary program has been used to encourage science students to build on their chemical knowledge and to appreciate how it applies to the world around them. The program is interactive and instills a new set of core learning skills that are often underrepresented in undergraduate curricula, namely, cooperative learning,…
Descriptors: Interdisciplinary Approach, College Science, Undergraduate Study, Chemistry
Wightman, Bruce; Hark, Amy T. – Biochemistry and Molecular Biology Education, 2012
The development of fields such as bioinformatics and genomics has created new challenges and opportunities for undergraduate biology curricula. Students preparing for careers in science, technology, and medicine need more intensive study of bioinformatics and more sophisticated training in the mathematics on which this field is based. In this…
Descriptors: Teaching Methods, Curriculum Design, Biology, Mathematics Skills
Durbin, Diana J.; Pickett, Linda H.; Powell, Tenisha L. – Science Activities: Classroom Projects and Curriculum Ideas, 2011
In this science unit, kindergarten students participate in engaging and developmentally appropriate activities as they learn about the science behind rainbows. The authors include descriptions of the standards and skills addressed by the unit, a synopsis of scientifically accurate content knowledge concerning rainbows, relevant children's…
Descriptors: Kindergarten, Science Instruction, Elementary School Science, Developmentally Appropriate Practices
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