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Zhan, Qinglong; Chen, Xiaoyu; Retnawati, Elva – Education and Information Technologies, 2022
Makerspaces aim to revolutionize the current higher education by providing a means for students to be directly involved in many scientific projects and develop various kinds of skills. While researchers have made progress in understanding different makerspaces and the increase of making in education, the reality is that a specific makerspace may…
Descriptors: Shared Resources and Services, Universities, Science Projects, Foreign Countries
Wegner, Claas; Weber, Phillip; Ohlberger, Stephanie – Themes in Science and Technology Education, 2014
In order to improve one's teaching in the long run, reflection on the lessons makes up an integral part in the process of developing a sufficient reflection competence. The problem, however, is how this reflection competence can be established in student teachers already and if that concept is compatible with current systems of teacher education…
Descriptors: Science Projects, Reflective Teaching, Preservice Teacher Education, Check Lists
Chanchaichaovivat, Arun; Panijpan, Bhinyo; Ruenwongsa, Pintip – Journal of Biological Education, 2008
An experiment on the action of the yeast, "Saccharomyces cerevisiae", against a fungal plant disease is proposed for secondary students (Grade 11) to support their study of organism interrelationship. This biocontrol experiment serves as the basis for discussing relationships among three organisms (red chilli fruit, "Saccharomyces cerevisiae," and…
Descriptors: Plants (Botany), Science Projects, Diseases, Biology
Huffman, Tanner; Burke, Barry – Technology and Engineering Teacher, 2015
Engineering byDesign™ (EbD) provides teachers and students with reflective, formative, and comprehensive summative assessment tools throughout the curriculum. Each lesson, unit, and course is created with a list of essential questions that are meant to guide students to a deeper understanding of national standards across the STEM domains (STL,…
Descriptors: Technological Literacy, Engineering Education, Student Evaluation, Evaluation Methods
Pallant, Amy; Lee, Hee-Sun; Pryputniewicz, Sara – Science Teacher, 2012
Systems thinking suggests that one can best understand a complex system by studying the interrelationships of its component parts rather than looking at the individual parts in isolation. With ongoing concern about the effects of climate change, using innovative materials to help students understand how Earth's systems connect with each other is…
Descriptors: Climate, Teaching Methods, Computer Simulation, Electronic Learning

Ramos, Maria Joao; Fernandes, Pedro Alexandrino; Melo, Andre – Journal of Chemical Education, 2004
An extensive description of the Modeling Chemical and Biological Systems study organized in different practical projects is presented. The course has a highly favorable effect on students, who make perfect presentations, and it also encourages more students to join the course.
Descriptors: Teaching Methods, Chemistry, Biology, Science Instruction
Chapman, Georgina; Langley, Mark; Skilling, Gus; Walker, John – Education in Science, 2011
The national network of Science Learning Centres is a co-ordinating partner in the Getting Practical--Improving Practical Work in Science programme. The principle of training provision for the "Getting Practical" programme is a cascade model. Regional trainers employed by the national network of Science Learning Centres trained the cohort of local…
Descriptors: Partnerships in Education, Training Methods, Training Objectives, Science Course Improvement Projects
Kim, Minkee; Aktan, Tugba – EURASIA Journal of Mathematics, Science & Technology Education, 2014
Studies have not yet consented whether integrating mathematics into science would enhance students' learning or confuse their understanding of abstract mathematical concepts. In spite of the social need for solving social-scientific problems with multiple facets, there has not been a holistic integration model of the disciplines. Hence, this study…
Descriptors: Delphi Technique, Integrated Curriculum, Mathematics Curriculum, Science Curriculum
Roberts, Ed; Gonzalez-Espada, Wilson J. – Tech Directions, 2006
The current paradigm in science education calls for greater emphasis on guiding students in active and extended scientific inquiry. This is supported by research suggesting that using a hands-on approach to learning fosters ownership in the learning process and allows students to gain greater appreciation for the design and implementation of…
Descriptors: Motor Vehicles, Science Projects, Physics, Science Education
Lavonen, Jari; Autio, Ossi; Meisalo, Veijo – Journal of Technology Studies, 2004
In this article, the Creative Technology Education Project (CTEP) is presented, and phases of problem-solving processes in which the participating primary school student teachers generate alternatives and evaluate ideas are analyzed. The aims of this project were to introduce technology education goals and contents to these students, as well as to…
Descriptors: Student Teachers, Creativity, Problem Solving, Technology Education
Business-Higher Education Forum, 2013
This report shows how insights gained from system dynamics modeling and the U.S. STEM Undergraduate Model® can help inform the Navy's strategy to grow a robust civilian workforce that is strongly invested with Navy-relevant STEM skills and ready to contribute to the next generation of Naval innovation. This work positions the Navy to serve a…
Descriptors: STEM Education, Undergraduate Students, Models, Systems Approach
Harms, Henry; Janosz, David A., Jr.; Maietta, Steve – Technology Teacher, 2010
This article describes the Systems and Global Engineering (SAGE) Project in which students collaborate with others from around the world to model solutions to some of today's most significant global problems. Stevens Institute of Technology and the New Jersey Technology Education Association (NJTEA) have teamed up to develop innovative…
Descriptors: Water Quality, Instructional Materials, Technology Education, Material Development
Koksal, Mustafa Serdar – Asia-Pacific Forum on Science Learning and Teaching, 2009
The "explicit-reflective-embedded" approach is an effective way of teaching nature of science (NOS). But, the studies have not provided a clear or explicit definition of the approach in terms of an instructional design framework. The approach has two sides including embedding into content knowledge and purposively teaching the NOS aspects as a…
Descriptors: Delphi Technique, Instructional Design, Scientific Principles, Biology
Cullinane, Jenna – Institute for Higher Education Policy, 2009
In 2006, the National Science Foundation (NSF) began funding the Model Replication Institutions (MRI) program, which sought to improve the quality, availability, and diversity of science, technology, engineering, and mathematics (STEM) education. Faced with pressing national priorities in the STEM fields and chronic gaps in postsecondary…
Descriptors: Science Course Improvement Projects, Science Education, Outreach Programs, Educational Improvement
Wang, Jianjun – Grantee Submission, 2013
On September 22, 2012, NSF announced its decision to fund a three-year project, "Models for Information Assurance Education and Outreach" (MIAEO). In the first year of grant operation, MIAEO has invited 18 high school students, two K-12 teachers, and two CSUB student assistants to conduct research explorations in the fields of…
Descriptors: Information Security, Computer Science Education, Improvement Programs, Program Effectiveness
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