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Moore-Anderson, Christian – Journal of Biological Education, 2023
Systems thinking is a powerful concept in biology which can help students understand how the diversity of contexts in the biology curriculum all have similar underlying characteristics. However, it is not currently a common feature in secondary education as it is not part of the National Curriculum of England. Research on systems thinking has…
Descriptors: Curriculum Design, Secondary School Curriculum, Systems Approach, Secondary School Science
Dennis, Jeremy K. – Online Submission, 2020
In interdisciplinary studies, multiple definitions and practices proliferate. Interdisciplinarians such as William H. Newell claim that complex systems theory provides the rationale that we need to guide reform. However, complex systems theory alone cannot rationalize interdisciplinarity and inform what Ernest Boyer calls the scholarship of…
Descriptors: Interdisciplinary Approach, Systems Approach, Educational Change, Educational Philosophy
Bankole Awuzie; Peter McDermott – Qualitative Research Journal, 2017
Purpose: Qualitative researchers are often confronted with a dilemma of selecting an appropriate approach within which to situate their research. This has led to successive attempts by qualitative researchers in the built environment (BE) to combine two dominant approaches -- deductive and inductive; in the conduct of their inquiry. Such attempts…
Descriptors: Physical Environment, Qualitative Research, Research Methodology, Epistemology
Lira, Matthew E.; Gardner, Stephanie M. – Advances in Physiology Education, 2017
Physiology demands systems thinking: reasoning within and between levels of biological organization and across different organ systems. Many physiological mechanisms explain how structures and their properties interact at one level of organization to produce emergent functions at a higher level of organization. Current physiology principles, such…
Descriptors: Physiology, Systems Approach, Undergraduate Students, Science Instruction
Stroup, Walter M.; Wilensky, Uri – Technology, Knowledge and Learning, 2014
Placed in the larger context of broadening the engagement with systems dynamics and complexity theory in school-aged learning and teaching, this paper is intended to introduce, situate, and illustrate--with results from the use of network supported participatory simulations in classrooms--a stance we call "embedded complementarity" as an…
Descriptors: Systems Approach, Logical Thinking, STEM Education, Learning
Page, Robert A.; Andoh, Samuel K.; Smith, Robert A. – Administrative Issues Journal: Connecting Education, Practice, and Research, 2017
Professors bemoan the great difficulty students have understanding the complexity of their disciplines or functional specializations. Many non-traditional students have work and family commitments that limit the time needed to reflect professionally and to master these concepts. This disconnect has persisted despite decades of work developing more…
Descriptors: Undergraduate Students, Business Administration Education, Classical Literature, Interdisciplinary Approach
Preskill, Hallie – New Directions for Evaluation, 2009
The chapters in this volume set a rich context for understanding the challenges that environmental evaluators face in their everyday work. In particular, the authors highlight the need for responsive, contextual, flexible, adaptive, multidisciplinary, and mixed-methods evaluation approaches. In this chapter, I reinforce their call and further…
Descriptors: Environment, Program Evaluation, Systems Approach, Change