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Vaidya, Ashwin – Journal of College Science Teaching, 2015
In this article, the authors describe a project that was developed for an introductory-level physics course. The aim of the project was to encourage the creative process in science, as science is seldom mentioned in discussions about creativity. They sought to engage students in the creative process by posing a collective challenge to the class.…
Descriptors: Creativity, Teamwork, Science Education, Active Learning
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Wallace, Maria F. G.; Webb, Angela W. – Journal of College Science Teaching, 2016
In the engineering field, problem- and project-based learning, both of which are often referred to as PBL, are the dominant instructional models called for by accreditation agencies. The aim of this qualitative case study is to analyze and capture a holistic perspective of PBL course design and its implementation in two communication-intensive…
Descriptors: Undergraduate Study, STEM Education, Active Learning, Student Projects
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Coleman, Jill S. M.; Mitchell, Melissa – Journal of College Science Teaching, 2014
This article describes the implementation of high-altitude balloon (HAB) research into a variety of undergraduate atmospheric science classes as a means of increasing active student engagement in real-world, problem-solving events. Because high-altitude balloons are capable of reaching heights of 80,000-100,000 ft (24-30 km), they provide a…
Descriptors: Active Learning, Undergraduate Students, Program Implementation, Problem Based Learning
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Field, Patrick – Journal of College Science Teaching, 2006
The National Inquiry Standard for Science Education Preparation requires science teachers to introduce students to scientific inquiry to solve problems by various methods, including active learning in a collaborative environment. In order for science teachers to comply with this inquiry standard, activities must be designed for students to…
Descriptors: Teaching Methods, Science Teachers, Problem Based Learning, Physiology
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Jones-Wilson, T. Michelle – Journal of College Science Teaching, 2005
In traditional science teaching, teachers expect the average student to implicitly learn and apply subtle concepts and to connect seemingly disjointed information. Teachers expect them to actively assemble the building blocks of critical thinking, often without example (Meyers 1986). The critical analysis of issues and problems is second nature to…
Descriptors: Course Content, Problem Solving, Teaching Methods, Science Instruction