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Oztay, Elif Selcan; Aydin Gunbatar, Sevgi; Ekiz Kiran, Betul – Journal of Pedagogical Research, 2022
Integrated Science, Technology, Engineering, and Mathematics (STEM) education has gained popularity worldwide. With the twenty-first century's different economic, political, and societal needs, nations intend to train citizens as better problem solvers. The current integrated STEM movement has influenced science curriculum documents and science…
Descriptors: Needs Assessment, Science Teachers, Chemistry, Expectation
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Planinsic, Gorazd; Etkina, Eugenia – Physics Education, 2019
In this paper we present activities that can help students deepen their understanding of DC circuits and develop practical competences. The students investigate electric properties of commercially available conductive thread and solve a practical design task using the thread. The activities follow the framework of investigative science learning…
Descriptors: Science Instruction, Physics, Engineering, Interdisciplinary Approach
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Perkins Coppola, Matthew; Merz, Alice – Science and Children, 2020
Each fall at harvest time, young students in the authors' part of the Midwest visit apple orchards to learn more about the life cycle of plants. This tradition is one part of a larger unit centered on apples, integrating life science with language arts and social studies. The authors partnered with kindergarten teachers at several schools to…
Descriptors: Plants (Botany), Science Instruction, Language Arts, Social Studies
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Tan, Verily; Crow, Leslie; Gibson, Audrey; Phillips, Cassie; Wray, Lisa; Reck, Cathrine – Science Teacher, 2019
The authors developed a lesson for teachers to integrate chemistry and culinary arts, providing students with an opportunity to participate in three-dimensional learning, engage in science and engineering practices, and apply disciplinary core content and crosscutting concepts (Krajcik et al. 2014). The project involved five classes: three…
Descriptors: Chemistry, Cooking Instruction, Science Education, Engineering
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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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Cook, Kristin; Bush, Sarah; Cox, Richard – Science and Children, 2017
Teaching STEAM (science, technology, engineering, art, and math) in elementary school could be even more promising than teaching STEM. This is due to its ability to cross multiple subject areas and its appeal to multiple types of learners. Intentional integration of the arts in science and engineering lessons has the potential to more deeply…
Descriptors: STEM Education, Art Education, Interdisciplinary Approach, Elementary School Students
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Llewellyn, Douglas; Pray, Sandra; DeRose, Rob; Ottman, William – Science and Children, 2016
This column presents ideas and techniques to enhance science teaching. In this month's issue an upper elementary Science, technology, engineering, and math (STEM) challenge brings an engineer into the classroom while emphasizing cooperation, communication, and creativity. STEM activities come in various shapes and sizes. Some are quite involved…
Descriptors: Science Instruction, Teaching Methods, Elementary School Science, Engineering Technology
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Bode, Claudia; Criss, Mary; Ising, Andrew; McCue, Sharon; Ralph, Shannon; Sharp, Scott; Smith, Val; Sturm, Belinda – Science Teacher, 2014
Every year, high school students hunch over microscopes and peer at a plethora of tiny creatures. Swimming single-celled protists and whirling multicellular rotifers often steal the show, preventing students from noticing the static algae. However, these frequently overlooked, ordinary algae are inspiring research all over the world as scientists…
Descriptors: High School Students, Inquiry, Interdisciplinary Approach, Biology
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Mentzer, Nathan – Journal of STEM Teacher Education, 2011
This study contextualized the use of the engineering design process by providing descriptions of how each element in a design process was integrated in an eleventh grade industry and engineering systems course. The guiding research question for this inquiry was: How do students engage in the engineering design process in a course where technology…
Descriptors: Technology Education, Engineering Education, Instructional Design, Barriers
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Kuhn, Misty L.; Figueroa, Carlos M.; Aleanzi, Mabel; Olsen, Kenneth W.; Iglesias, Alberto A.; Ballicora, Miguel A. – Biochemistry and Molecular Biology Education, 2010
Higher education institutions and scientific funding agencies are emphasizing international projects that involve the integration and synergy between research groups, particularly if different disciplines are involved. Students with an education that reflects these trends will have more tools to succeed in the future, but it is challenging to…
Descriptors: Foreign Countries, Interdisciplinary Approach, Cooperative Learning, Graduate Students
Dziedzic, Mauricio; Tozzi, Marcos; Traghetta, Dinis; Gomes, Julio; Kruger, Claudio – 2000
UnicenP's First Engineering Games took place in October of 1999, and consisted of three tasks designed by engineering faculty which involved all courses taught in first year. Teams were made up of students from all four Engineering programs currently offered by the institution. The games occurred over a period of three days and proved a successful…
Descriptors: Curriculum, Educational Games, Engineering Education, Foreign Countries
Clayfield, Helen; Hyatt, Robyn – 1994
This instructional resource provides teachers with ideas for teaching technology and incorporating it into other areas of the curriculum. The book includes 24 work units that can be adapted for use by any elementary grade. These units allow students to translate their ideas into practice by designing, making, and testing. The information and…
Descriptors: Art Education, Design, Design Crafts, Design Requirements
Wichmann, Sue, Ed. – 1996
This guide was developed to help teachers use the 14th season of NEWTON'S APPLE in their classrooms and contains lessons formatted to follow the National Science Education Standards. The "Overview,""Main Activity," and "Try-This" sections were created with inquiry-based learning in mind. Each lesson page begins with…
Descriptors: Biology, Chemistry, Elementary Secondary Education, Engineering
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Altshuler, Ken – Science Teacher, 1995
Describes a project where students build a motorized car that can perform well in two distinctly different competitions: traveling 20 meters in the shortest time and pulling a 500-gram mass the farthest distance in 20 seconds. Enables students to apply physics principles to a real problem and to discover the importance of teamwork on large…
Descriptors: Cooperative Learning, Engineering, Hands on Science, Interdisciplinary Approach
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Coble, Charles R.; Rice, Dale R. – Science Teacher, 1983
Active involvement in society-related issues can elevate junior high school students' interest not only in the problem being solved but also in related scientific concepts. Examples of how scientific concepts and society-related issues can be taught in the same class are presented, focusing on genetic engineering, water shortage, and others.…
Descriptors: Genetic Engineering, Interdisciplinary Approach, Junior High Schools, Problem Solving
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