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Billingsley, Berry; Arias, Andrea Ramos – School Science Review, 2017
The boundaries between subject disciplines in secondary education today make it difficult for students to see their subjects in context. However, examining the secondary curriculum in England shows that there are a wealth of opportunities for making links and helping to develop students' epistemic insight and scholarly thought. This article…
Descriptors: Epistemology, Secondary School Curriculum, Interdisciplinary Approach, Science Course Improvement Projects
Hoachlander, Gary – Educational Leadership, 2015
In too many K-12 schools, notes Hoachlander, science, math, and technology are still taught in isolation from one another--and engineering is barely taught at all. Even when STEM content and skills are presented in an integrated fashion, they are rarely linked to the rest of the academic subjects or to real-world work in STEM fields. Hoachlander…
Descriptors: Integrated Activities, Integrated Curriculum, STEM Education, State Standards
Ang, Eng-Tat; Sugand, Kapil; Hartman, Mikael; Seow, Choon-Sheong; Bay, Boon-Huat; Abrahams, Peter – Anatomical Sciences Education, 2012
The disciplines of anatomy and surgery are not dichotomous since one is dependent on the other. Traditionally, surgeons predominantly taught gross and clinical anatomy. In this review, we examine the context of how human anatomy is taught nowadays. In essence, we discovered that there are certain discernable trends consistently observable between…
Descriptors: Medical Schools, Surgery, Anatomy, Foreign Countries
Feser, Jason; Vasaly, Helen; Herrera, Jose – CBE - Life Sciences Education, 2013
In this paper, the authors describe how two institutions are helping their undergraduate biology students build quantitative competencies. Incorporation of quantitative skills and reasoning in biology are framed through a discussion of two cases that both concern introductory biology courses, but differ in the complexity of the mathematics and the…
Descriptors: Biology, Data Analysis, Mathematical Concepts, Skill Development
Van Wylen, David G. L.; Abdella, Beth R. J.; Dickinson, Shelly D.; Engbrecht, Jason J.; Vandiver, Rebecca – CBE - Life Sciences Education, 2013
Twenty-first-century biology is inherently interdisciplinary. Every aspect of biology, from molecules to organisms to ecosystems, is richly informed by the physical, mathematical, and computational sciences. It is both an exciting and daunting time for biology educators--exciting because of the vast opportunity for important new discoveries that…
Descriptors: Interdisciplinary Approach, Biology, Unified Studies Curriculum, Case Studies
Pellegrini, John J.; Jansen, Elizabeth – Journal of College Science Teaching, 2013
The Mayo Innovation Scholars Program introduces undergraduates to technology transfer in biomedical sciences by having teams of students from multiple disciplines (e.g., biology, chemistry, economics, and business) analyze inventions in development at the Mayo Clinic. Over 6 months, teams consult with inventors, intellectual property experts, and…
Descriptors: Innovation, Technology Transfer, Undergraduate Students, Biological Sciences
Goos, Merrilyn – Mathematics Education Research Group of Australasia, 2015
This paper reports on a project that aims to foster interdisciplinary collaboration between mathematicians and mathematics educators in pre-service teacher education. The project involves 23 investigators from six universities. Interviews were conducted with selected project participants to identify conditions that enable or hinder collaboration,…
Descriptors: Interdisciplinary Approach, Preservice Teacher Education, Teacher Educators, Mathematics
Lega, Joceline C.; Buxner, Sanlyn; Blonder, Benjamin; Tama, Florence – Journal of College Science Teaching, 2014
We describe a third-year undergraduate course that focuses on multiscale modeling and protein folding and has as its primary goal the encouragement of students to integrate thinking across and beyond disciplinary boundaries. The ability to perform innovative and successful research work in STEM (science, technology, engineering, and mathematics)…
Descriptors: Integrated Activities, Science Activities, Science Education, Undergraduate Students
Wynn, Toni; Harris, Juliette – Art Education, 2012
The acronym STEM--the teaching of science, technology, engineering, and math--now a familiar term in education, is evolving into STEAM--STEM plus "A" for art. Educational researcher Martin Storksdieck's studies have shown that infusing art into STEM allows for "a different way of perceiving and knowing and dealing with the world, as a means to…
Descriptors: Innovation, Art Education, Science Instruction, STEM Education
Straub, Jeremy; Whalen, David – Education Sciences, 2013
This paper analyzes the educational impact of the OpenOrbiter Small Spacecraft Development Initiative, a CubeSat development program underway at the University of North Dakota. OpenOrbiter includes traditional STEM activities (e.g., spacecraft engineering, software development); it also incorporates students from non-STEM disciplines not generally…
Descriptors: Educational Benefits, Space Sciences, STEM Education, Science Course Improvement Projects
Everingham, Yvette; Gyuris, Emma; Sexton, Justin – International Journal of Mathematical Education in Science and Technology, 2013
Today's scientist is faced with complex problems that require interdisciplinary solutions. Consequently, tertiary science educators have had to develop and deliver interdisciplinary science courses to equip students with the skills required to solve the evolving real-world challenges of today and tomorrow. There are few reported studies of the…
Descriptors: Student Attitudes, Feedback (Response), Mathematics Skills, Self Efficacy
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
Jungck, John R.; Gaff, Holly D.; Fagen, Adam P.; Labov, Jay B. – CBE - Life Sciences Education, 2010
In this article, the authors report on an important symposium, Beyond BIO2010: Celebration and Opportunities, which was held at the National Academy of Sciences (NAS) in Washington, D.C. on May 21-22, 2010. This symposium was organized to assess what progress has been made in addressing the challenges and recommendations in the National Research…
Descriptors: Conferences (Gatherings), Undergraduate Study, Biological Sciences, Interdisciplinary Approach
Anderson, James – Tech Directions, 2010
Project-based learning and academic integration are integral parts of the automotive technology program at Greenville High School. This Ohio comprehensive school has used both of these strategies for the past 15 years and their success is reflected in nine state SkillsUSA gold medals and one bronze, in addition to eight gold medals earned at the…
Descriptors: Student Projects, Active Learning, Success, Problem Based Learning
Darling, Gerald – Science Scope, 2012
In eighth grade, students usually learn about forces in science class and linear relationships in math class, crucial topics that form the foundation for further study in science and engineering. An activity that links these two fundamental concepts involves measuring the distance a spring stretches as a function of how much weight is suspended…
Descriptors: Mathematics Instruction, Fundamental Concepts, Grade 8, Motion