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Cavadas, Bento; Rézio, Sofia; Nogueira, João Robert; Branco, Neusa – Canadian Journal of Science, Mathematics and Technology Education, 2022
Integration is an important, albeit difficult, goal of science and mathematics education. This paper presents a framework and a research design proposal to identify preservice teachers' (PSTs) integration performance of science and mathematics (IPoSM). It also presents the classification of PSTs' level of integration in each phase of a…
Descriptors: Preservice Teachers, Preservice Teacher Education, Problem Based Learning, Science Instruction
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
Kossybayeva, Umitzhan; Shaldykova, Bagit; Akhmanova, Danna; Kulanina, Svetlana – Education and Information Technologies, 2022
The study describes an innovative methodology for teaching natural and mathematical sciences in the context of distance learning using modern technological solutions and based on the concepts of active social learning that involves constructivist, problem-oriented, project and research approaches. The proposed methodology was tested on 80 students…
Descriptors: Instructional Improvement, Natural Sciences, Mathematics Instruction, 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
Woolcott, Geoff; Whannell, Robert; Pfeiffer, Linda; Yeigh, Tony; Donnelly, James; Scott, Amanda – International Journal of Learning and Change, 2017
Motivated and well-trained science and mathematics teachers are a requirement for sustaining an industrialised economy. The Australian government has funded several projects to satisfy this requirement designed to improve pre-service teacher (PST) education in regional and rural Australia. One such project uses a collaboration nexus model with…
Descriptors: Science Teachers, Mathematics Teachers, Teacher Education, Qualitative Research
Rillero, Peter; Koerner, Mari; Jimenez-Silva, Margarita; Merrit, Joi; Farr, Wendy J. – Interdisciplinary Journal of Problem-based Learning, 2017
Teachers need to be able to design and implement problem-based learning (PBL) experiences to help students master the content and the processes in new mathematics and science education standards. Due to the changed population of learners within schools, it is also critically important that teachers in the elementary grades have the abilities to…
Descriptors: Problem Based Learning, Teaching Methods, Language Minorities, Mathematics Instruction
Fatokun, J. O.; Fatokun, K. V. F. – Educational Research and Reviews, 2013
In this paper, we present the concept of problem-based learning as a tool for learning Mathematics and Chemistry, and in fact, all sciences, using life situations or simulated scenario. The methodology involves some level of brain storming. Here, active learning takes place and knowledge gained by students either way through a collaborative…
Descriptors: Problem Based Learning, Mathematics Instruction, Science Instruction, Chemistry
Miles, Rhea; Slagter van Tryon, Patricia J.; Mensah, Felicia Moore – Science Educator, 2015
TechMath is a professional development program that forms collaborations among businesses, colleges, and schools for the purpose of promoting Science, Technology, Engineering, and Mathematics (STEM) careers. TechMath has provided strategies for creating highquality professional development by bringing together teachers, students, and business…
Descriptors: Mathematics Instruction, Science Instruction, Mathematics Teachers, Science Teachers
Knisley, Jeff; Behravesh, Esfandiar – CBE - Life Sciences Education, 2010
Because quantitative biology requires skills and concepts from a disparate collection of different disciplines, the scientists of the near future will increasingly need to rely on collaborations to produce results. Correspondingly, students in disciplines impacted by quantitative biology will need to be taught how to create and engage in such…
Descriptors: Biomedicine, Biology, Interdisciplinary Approach, Curriculum Development
Brown, Danielle Bairrington; Alford, Beverly L.; Rollins, Kayla Braziel; Stillisano, Jacqueline R.; Waxman, Hersh C. – Professional Development in Education, 2013
The purpose of this mixed-methods study was to evaluate the efficacy of 14 Mathematics, Science and Technology Teacher Preparation (MSTTP) academies located across the state of Texas. The aim of the academies was to increase the number of highly qualified mathematics, science and technology teachers, while also improving the quality of certified…
Descriptors: Mixed Methods Research, Mathematics Instruction, Science Instruction, Technology Education
Hunt, Emily M.; Lockwood-Cooke, Pamela; Kelley, Judy – American Journal of Engineering Education, 2010
Problem-Based Learning (PBL) is a problem-centered teaching method with exciting potential in engineering education for motivating and enhancing student learning. Implementation of PBL in engineering education has the potential to bridge the gap between theory and practice. Two common problems are encountered when attempting to integrate PBL into…
Descriptors: Problem Based Learning, Engineering Education, Mathematics Instruction, Science Instruction
Christensen, Ole Ravn – Teaching Mathematics and Its Applications: An International Journal of the IMA, 2008
A common problem in learning mathematics concerns the gap between, on the one hand, doing the formalisms and calculations of abstract mathematics and, on the other hand, applying these in a specific contextualized setting for example the engineering world. The skills acquired through problem-based learning (PBL), in the special model used at…
Descriptors: Student Projects, Problem Based Learning, Engineering Education, Foreign Countries
Ye, Lei; Walker, Andrew; Recker, Mimi; Leary, Heather; Robertshaw, M. Brooke; Sellers, Linda – Online Submission, 2012
Despite of much focus on professional development aimed specifically at developing teachers' technology integration skills, rigorous studies of effective PD (professional development) are lacking. Evidence is also lacking on how these skills can best be integrated with pedagogical and content knowledge to improve student learning. The purpose of…
Descriptors: Electronic Learning, Technology Integration, Problem Based Learning, Rating Scales
Malouff, John M.; Schutte, Nicola S. – Online Submission, 2008
This article explains the need for comprehensive education in problem solving in primary and secondary schools. The article then describes strategies for providing comprehensive education in problem solving. These strategies include embedding problem solving training in classes across the curriculum and making minor adjustments to current efforts…
Descriptors: Elementary Schools, Teaching Methods, Mathematics Instruction, Science Instruction
Waterman, Sheryn Spencer – Eye on Education, 2010
For middle and high school teachers of mathematics and science, this book is filled with examples of instructional strategies that address students' readiness levels, interests, and learning preferences. It shows teachers how to formatively assess their students by addressing differentiated learning targets. Included are detailed examples of…
Descriptors: Educational Strategies, Student Evaluation, Formative Evaluation, Secondary School Teachers
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