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Canan Mesutoglu; Durdane Bayram-Jacobs; Johanna Vennix; Anne Limburg; Birgit Pepin – Research in Science & Technological Education, 2024
Background: In responding to the global problems facing humankind, there is great value in equipping science and engineering students with skills to function well in multidisciplinary teams. Little attention has been paid into the factors that influence multidisciplinary collaboration and teamwork of science and engineering students. Purpose: This…
Descriptors: Teamwork, Physics, Engineering Education, Problem Based Learning
Santiani; Fine Reffiane; Winarto – Journal of Education and Learning (EduLearn), 2024
The formation of environmental literacy in the education system through education for sustainable development (EfSD) experiences many obstacles. The aim of the research is to analyze the impact of interdisciplinary science learning for interdisciplinary oriented education for sustainable development to improve interdisciplinary thinking and…
Descriptors: Science Instruction, Interdisciplinary Approach, Thinking Skills, Multiple Literacies
Joseph M. Furner – International Journal of Education in Mathematics, Science and Technology, 2024
This paper will provide several examples of science and mathematics integration: navigation/map-reading, ecology/ecosystems/population growth, and chemistry/molecular structures. This paper underscores integrating STEM subjects with problem-based learning with technology such as video/computer simulations/programming/coding and the dynamic free…
Descriptors: Problem Based Learning, Mathematics Instruction, Educational Technology, Geometry
Davidson, Ashley B.; Addison, Christopher J.; Charbonneau, James – Teaching & Learning Inquiry, 2022
Universities are recognizing the need to prepare graduates to think conceptually and have the ability to take on complex, real-world problems. Strategies to assess conceptual knowledge are limited and often require more time and effort to complete than is accessible for most undergraduate courses. Card sorting is a very broad technique for…
Descriptors: Problem Based Learning, Task Analysis, College Freshmen, Scientific Concepts
Aoki, Emily; Rastede, Elizabeth; Gupta, Anisha – Journal of Chemical Education, 2022
This article examines the intersection of environmental justice and undergraduate chemistry education through a review of existing publications that highlight successful strategies for chemistry educators interested in incorporating environmental justice into their classrooms. It emphasizes the key roles of racial and social justice in the…
Descriptors: Chemistry, College Science, Science Instruction, Undergraduate Study
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
Eronen, Lasse; Kokko, Sirpa; Sormunen, Kari – Curriculum Journal, 2019
In 2014, the Finnish National Board of Education launched a new core curriculum with the aim of meeting the skills and competence requirements of the 21st century. The purpose of this case study was to find out what transversal competencies Finnish eighth graders developed and how they experienced studying in a problem-based transdisciplinary…
Descriptors: Foreign Countries, Interdisciplinary Approach, 21st Century Skills, Core Curriculum
Cowden, Chapel D.; Santiago, Manuel F. – Journal of Chemical Education, 2016
Interdisciplinary approaches to research in the sciences have become increasingly important in solving a wide range of pressing problems at both global and local levels. It is imperative then that science majors in higher education understand the need for exploring information from a wide array of disciplines. With this in mind, interdisciplinary…
Descriptors: Critical Thinking, Problem Based Learning, Biochemistry, Science Instruction
Kjeldsen, Tinne Hoff; Lützen, Jesper – Science & Education, 2015
In this paper, we discuss the history of the concept of function and emphasize in particular how problems in physics have led to essential changes in its definition and application in mathematical practices. Euler defined a function as an analytic expression, whereas Dirichlet defined it as a variable that depends in an arbitrary manner on another…
Descriptors: Mathematics Instruction, Science Instruction, Physics, Interdisciplinary Approach
Rangachari, P. K.; Rangachari, Usha – Advances in Physiology Education, 2015
Taste perception was the focus of an undergraduate course in the health sciences that bridged the sciences and humanities. A problem-based learning approach was used to study the biological issues, whereas the cultural transmutations of these molecular mechanisms were explored using a variety of resources (novels, cookbooks, and films). Multiple…
Descriptors: Physiology, Humanities, Perception, Health Sciences
Jimenez-Silva, Margarita; Merritt, Joi; Rillero, Peter; Kelley, Michael – Electronic Journal of Science Education, 2016
This qualitative study examines the change in a preserve program as our faculty members systematically work together to change the culture of our college to one in which everyone assists future teachers to work with ELLs. The iTeach ELL Systems Framework has promoted understanding of the interconnected nature of student learning, which includes:…
Descriptors: Preservice Teacher Education, English Language Learners, Teacher Competencies, Teacher Education Programs
Holubova, Renata – Universal Journal of Educational Research, 2015
The main issue of this paper is the discussion around the question "How can we teach and motivate the why-generation learners and the generation Z learners?". The aim of our project was to find out teaching and learning methods that teachers and learners can use in 21st century classroom. Strategies how to engage gen Y and gen Z learners…
Descriptors: Student Motivation, Physics, Science Instruction, Problem Based Learning
Strimel, Greg – Technology and Engineering Teacher, 2014
Students are seldom given an authentic experience within school that allows them the opportunity to solve real-life complex engineering design problems that have meaning to their lives and/ or the greater society. They are often confined to learning environments that are limited by the restrictions set by course content for assessment purposes and…
Descriptors: STEM Education, Problem Based Learning, Engineering Education, Design
Cavalli, G.; Hamerton, I.; Lygo-Baker, S. – Chemistry Education Research and Practice, 2015
Following collaboration between two chemistry lecturers and an academic developer an attempt was made to enhance the learning of students within a chemistry module through the adaptation of the delivery of content material. This paper reports a piece of practitioner led research which considered how effective the approach developed was upon the…
Descriptors: Chemistry, Science Instruction, Plastics, Interdisciplinary Approach
Lawless, Kimberly A.; Brown, Scott W. – Curriculum Journal, 2015
GlobalEd 2 (GE2) is a set of technology-mediated, problem-based learning (PBL) simulations for middle-grade students, that capitalises on the multidisciplinary nature of the social sciences as an expanded curricular space for students to learn and apply scientific literacies and concepts, while simultaneously also enriching their understanding of…
Descriptors: Scientific Literacy, Technology Uses in Education, Skill Development, Interdisciplinary Approach