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Llinás, Julia Gil; Macías, Francisco Solano; Márquez, Luis Manuel Tobaja – Research in Science Education, 2020
The aim of the present research was to explore the use of concept maps as an assessment tool. The research question posed was: can concept maps be used to quantitatively assess the learning of a physics topic in an engineering course? This paper describes a new approach to quantifying concept maps. The research was preceded by a pilot project that…
Descriptors: Concept Mapping, Physics, Science Instruction, Evaluation Methods
Ross, Donna L.; Grant, Maria – Science Teacher, 2022
Science is a human endeavor; the way it is taught, applied, and in some cases exclude populations from having access to it, may affect people for generations (NGSS Lead States 2013). Science education continues to be a complex civil rights issue (Tate 2001), but there is hope. Movements to promote just, equitable, and inclusive opportunities to…
Descriptors: Physics, Science Instruction, Teaching Methods, Urban Schools
Iveland, Ashley – ProQuest LLC, 2017
In this study, I sought to identify differences in the views and understandings of engineering design among individuals along the learning-to-teach continuum. To do so, I conducted a comprehensive review of literature to determine the various aspects of engineering design described in the fields of professional engineering and engineering…
Descriptors: Engineering Education, Design, Internship Programs, Science Instruction
Martinez, Guadalupe; Perez, Angel Luis; Suero, Maria Isabel; Pardo, Pedro J. – Journal of Science Education and Technology, 2013
A study was conducted to quantify the effectiveness of concept maps in learning physics in engineering degrees. The following research question was posed: What was the difference in learning results from the use of concept maps to study a particular topic in an engineering course? The study design was quasi-experimental and used a post-test as a…
Descriptors: Homogeneous Grouping, Physics, Evaluation, Teaching Methods
Smith, Karl A. – Engineering Education, 1987
Differentiates between learning efficiency (enhancing the rate of learning) and learning effectiveness (enhancing the mastery and retention of facts, concepts, and relationships). Discusses some of the contributions of knowledge engineering to metalearning. Provides a concept map for constructing knowledge bases, along with some possible…
Descriptors: Artificial Intelligence, College Science, Concept Formation, Concept Mapping

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