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Eagle-Malone, Rebecca S. – American Biology Teacher, 2021
Biomimicry, the process of using nature to guide innovative thinking and development, can be useful in helping students grasp scientific concepts. Teachers interested in incorporating biomimicry into lesson plans might find that experiential learning at informal science institutions (ISIs) with natural models and artifacts is a valuable tool to…
Descriptors: Science Instruction, Teaching Methods, Experiential Learning, Exhibits
Özdemir, Selçuk – International Electronic Journal of Elementary Education, 2019
The history of innovation is constructed by solo thinkers and collaborative makers. The word innovation here comprises changes on technology, art and science. This article aims to reflect the way successful inventors, artists and scientists followed to do whatever they succeeded so that the coming generations can learn from predecessors' positive…
Descriptors: Entrepreneurship, Cooperation, Innovation, Thinking Skills
Díaz Pérez, Wendy; Fields, Donna Lee; Marsh, David – Theory Into Practice, 2018
The continued emergence of content and language integrated learning (CLIL) is linked to how it creates, adopts, and leads to the design of innovative didactic processes. In systems, theory emergence occurs when features of smaller entities are brought together through interaction to form a larger ecosystem, one that acquires qualities not readily…
Descriptors: Second Language Learning, Second Language Instruction, Innovation, Barriers
Fouché, Jaunine; Crowley, Joel – Educational Leadership, 2017
Elementary students at the Milton Hershey School in Hershey, Pennsylvania, don't just learn knowledge and skills; they put it to work. The school's Innovation Lab for grades K-4 offers students hands-on opportunities to use design thinking to solve problems. In this article, two of the school's educators describe how 2nd graders used design…
Descriptors: Elementary School Students, Experiential Learning, Problem Solving, Grade 2
Schepker, Nicole – New England Journal of Higher Education, 2014
The field of manufacturing typically conjures images of dimly lit dirty and dangerous factories crowded with workers, the kind seen in photos of New York City's garment district in the early 1900s and in some developing countries today. Because of advances in technology, however, the field of manufacturing--what is made, how it is made, where and…
Descriptors: Industrial Education, Industrial Training, Manufacturing, Manufacturing Industry
Fielding, Randall – Education Canada, 2012
Two recent peer-reviewed studies support the need to update the traditional school design model that has remained fundamentally unchanged for over a century. In a 2011 study published by the American Educational Research Journal, entitled "Problem-Based Learning in K-12 Education," Clarice Wirkala and Deanna Kuhn document a 200-500…
Descriptors: Active Learning, Problem Based Learning, Innovation, Cooperation
Coxon, Steve V. – Gifted Child Today, 2012
Spatial and creative abilities are important for innovations in science, technology, engineering, and math (STEM) fields, but talents are rarely developed from these abilities by schools, including among gifted children and adolescents who have a high potential to become STEM innovators. This article provides an overview of each ability and makes…
Descriptors: Gifted, State Standards, Creativity, Programming
Larsen, Peter Gorm; Fernandes, Joao M.; Habel, Jacek; Lehrskov, Hanne; Vos, Richard J. C.; Wallington, Oliver; Zidek, Jan – European Journal of Engineering Education, 2009
Most university-level engineering studies produce technically skilled engineers. However, typically students face several difficulties when working in multidisciplinary teams when they initiate their industrial careers. In a globalised world, it becomes increasingly important that engineers are capable of collaborating across disciplinary…
Descriptors: Summer Schools, Engineering Education, Interdisciplinary Approach, School Business Relationship
Dunlap, Joanna C. – 1997
In a climate of rapid change, increasing innovation, and proliferating knowledge, lifelong learning is an important educational objective. Lifelong learning skills need to be developed if educators intend for their students to stay current in their fields. Staying abreast of new innovations, research, techniques, and information is a prerequisite…
Descriptors: Cooperation, Decision Making, Futures (of Society), Higher Education

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