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Ross, Pauline M.; Mercer-Mapstone, Lucy; Pozza, Liana E.; Poronnik, Philip; Hinton, Tina; Field, Damien J. – Biochemistry and Molecular Biology Education, 2022
While biomedical and life science research have embraced interdisciplinarity as the means to solving pressing 21st century complex challenges, interdisciplinarity in undergraduate education has been more difficult to implement. As a consequence, disciplinary rather than interdisciplinary capstones have become ubiquitous. Disciplinary capstones are…
Descriptors: Interdisciplinary Approach, Capstone Experiences, Biomedicine, Biological Sciences
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Mageswary Karpudewan; Noor Haslina Daman Huri – Journal of Chemical Education, 2023
Transforming the chemistry curriculum to an interdisciplinary perspective is essential for preparing students to meet interdisciplinary career demands and to brace themselves for the challenges of complex environmental and health issues. The study introduces four interdisciplinary electrochemistry STEM-lab activities as an alternative to the…
Descriptors: Interdisciplinary Approach, Science Instruction, Teaching Methods, Chemistry
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Hamilton, Nicholas B.; Remington, Jacob M.; Schneebeli, Severin T.; Li, Jianing – Journal of Chemical Education, 2022
We reported a redesign of a physical chemistry laboratory course (CHEM 166) for our chemistry majors at the University of Vermont carried out during the COVID-19 pandemic. We started to teach this course after a curriculum reform, which split an upper-division undergraduate laboratory course into physical and analytical chemistry laboratories. To…
Descriptors: Outcome Based Education, Chemistry, Science Laboratories, Science Curriculum
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Gilchrist, Pamela O.; Alexander, Alonzo B.; Green, Adrian J.; Sanders, Frieda E.; Hooker, Ashley Q.; Reif, David M. – Education Sciences, 2021
Computational thinking is an essential skill in the modern global workforce. The current public health crisis has highlighted the need for students and educators to have a deeper understanding of epidemiology. While existing STEM curricula has addressed these topics in the past, current events present an opportunity for new curricula that can be…
Descriptors: Science Education, Science Curriculum, STEM Education, Informal Education
Hipkins, Rosemary; Tolbert, Sara; Cowie, Bronwen; Waiti, Pauline – New Zealand Council for Educational Research, 2022
Science education has an important role to play in supporting our young people to meet the complex challenges of the modern age. Students need a curriculum that can prepare them to work collaboratively, competently and confidently to address the wicked "glocal" problems of our time. Rangatahi themselves recognise this - those involved in…
Descriptors: Instructional Design, Curriculum Design, Science Education, Science Curriculum
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Schnittka, Christine; Richards, Larry – Science Teacher, 2016
Solar energy is clean, free, and abundant worldwide. The challenge, however, is to convert it to useful forms that can reduce our reliance on fossil fuels. This article presents an activity for physical science classes in which students learn firsthand how solar energy can be used to produce electricity specifically for transportation. The…
Descriptors: Energy, Fuels, Science Instruction, Teaching Methods
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Prinster, Andrew J.; Hoskins, Josephina L.; Strode, Paul K. – American Biology Teacher, 2019
Students learning the skills of science benefit from opportunities to move between the scientific problems and questions they confront and the mathematical tools available to answer the questions and solve the problems. Indeed, students learn science best when they are actively engaged in pursuing answers to authentic and relevant questions. We…
Descriptors: Science Education, Science Process Skills, Problem Solving, Statistical Analysis
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Biernacki, J. J. – Chemical Engineering Education, 2016
The degrees of freedom (DOF) concept is a powerful tool that has been taught since at least the '70s in undergraduate curriculum, typically introduced in the context of a first course on material and energy balances. The concept, however, has not been widely applied beyond the material balance domain and in general is not taught as a unified…
Descriptors: Concept Teaching, Scientific Concepts, Teaching Methods, Instructional Effectiveness
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Reed, Kelynne E.; Aiello, David P.; Barton, Lance F.; Gould, Stephanie L.; McCain, Karla S.; Richardson, John M. – Journal of College Science Teaching, 2016
This article discusses the STEM (science, technology, engineering, and mathematics) Teaching and Research (STAR) Leadership Program, developed at Austin College, which engages students in activities integrated into undergraduate STEM courses that promote the development of leadership behaviors. Students focus on interpersonal communication,…
Descriptors: Leadership Training, Integrated Curriculum, Science Curriculum, Undergraduate Study
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Hilton, Annette; Hilton, Geoff – Teaching Science, 2016
In many scientific contexts, students need to be able to use mathematical knowledge in order to engage in scientific reasoning and problem-solving, and their understanding of scientific concepts relies heavily on their ability to understand and use mathematics in often new or unfamiliar contexts. Not only do science students need high levels of…
Descriptors: Science Instruction, Mathematics Skills, Mathematical Concepts, Problem Solving
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Lesseig, Kristin; Slavit, David; Nelson, Tamara Holmlund – Middle School Journal, 2017
Given the current emphasis on science, technology, engineering, and math (STEM) education and its key attributes, middle school is an optimal time to implement STEM-based curricula. However, the interdisciplinary and open-ended nature of STEM projects often makes implementation difficult. In this article, we describe a professional development…
Descriptors: STEM Education, Middle School Students, Middle School Teachers, Interdisciplinary Approach
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Guron, Marta; Paul, Jared J.; Roeder, Margaret H. – Journal of Chemical Education, 2016
Although much of the scientific community concerns itself with ideas of a sustainable future, very little of this interest and motivation has reached the classroom experience of the average chemistry major, and therefore, it is imperative to expose students to these ideas early in their careers. The focus of most undergraduate chemistry curricula…
Descriptors: Chemistry, Science Instruction, Majors (Students), Sustainability
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Gonczi, Amanda L.; Bergman, Brenda G.; Huntoon, Jackie; Allen, Robin; McIntyre, Barb; Turner, Sheri; Davis, Jen; Handler, Rob – Science Activities: Classroom Projects and Curriculum Ideas, 2017
Decision matrices are valuable engineering tools. They allow engineers to objectively examine solution options. Decision matrices can be incorporated in K-12 classrooms to support authentic engineering instruction. In this article we provide examples of how decision matrices have been incorporated into 6th and 7th grade classrooms as part of an…
Descriptors: Decision Making, Matrices, Teaching Methods, Middle School Students
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Anderson, Elsa; Dryden, Lisa; Garza, Esther; Robles-Goodwin, Patsy J. – English in Texas, 2017
This article describes an instructional model for integrating children's literature and language arts into the elementary school science curriculum. This science-literacy instructional model is an adaptation from the original 5E model of scientific inquiry. The model demonstrates how reading, writing, listening, and speaking can be incorporated…
Descriptors: Models, Teaching Methods, Childrens Literature, Language Arts
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Boesdorfer, Sarah; Greenhalgh, Scott – Science Teacher, 2014
The "Next Generation Science Standards" (NGSS Lead States 2013) urge science teachers to include engineering practices and ideas in their already full science curriculum, but many teachers do not know where to start. Only 7% of high school science teachers report feeling "very well prepared" to teach engineering. The…
Descriptors: Science Curriculum, Science Instruction, Science Teachers, Engineering
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