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Introduction to the Modeling and Analysis of Complex Systems
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Introduction to the Modeling and Analysis of Complex Systems introduces students to mathematical/computational modeling and analysis developed in the emerging interdisciplinary field of Complex Systems Science. Complex systems are systems made of a large number of microscopic components interacting with each other in nontrivial ways. Many real-world systems can be understood as complex systems, where critically important information resides in the relationships between the parts and not necessarily within the parts themselves. This textbook offers an accessible yet technically-oriented introduction to the modeling and analysis of complex systems. The topics covered include: fundamentals of modeling, basics of dynamical systems, discrete-time models, continuous-time models, bifurcations, chaos, cellular automata, continuous field models, static networks, dynamic networks, and agent-based models. Most of these topics are discussed in two chapters, one focusing on computational modeling and the other on mathematical analysis. This unique approach provides a comprehensive view of related concepts and techniques, and allows readers and instructors to flexibly choose relevant materials based on their objectives and needs. Python sample codes are provided for each modeling example.

Author:
Hiroki Sayama, Binghamton University, State University of New York.
Kitty Konundrum: The Environmental Impact of Feral Cat Reproduction
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This lesson is an interdisciplinary approach to understanding the feral cat issue in Hawaii. It incorporates problem-based learning to estimate cat reproduction, research the environmental impact of feral cats, and compose research-based arguments for solutions

Plant Cycles: Photosynthesis & Transpiration
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What do plants need? Students examine the effects of light and air on green plants, learning the processes of photosynthesis and transpiration. Student teams plant seeds, placing some in sunlight and others in darkness. They make predictions about the outcomes and record ongoing observations of the condition of the stems, leaves and roots. Then, several healthy plants are placed in glass jars with lids overnight. Condensation forms, illustrating the process of transpiration, or the release of moisture to the atmosphere by plants.

Author:
Christopher Valenti
Malinda Schaefer Zarske
Integrated Teaching and Learning Program,
Denise W. Carlson
Planting Thoughts
Read the Fine Print
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Students gain an understanding of the parts of a plant, plant types and how they produce their own food from sunlight through photosynthesis. They also learn about transpiration, the process by which plants release moisture to the atmosphere. With this understanding, students test the effects of photosynthesis and transpiration by growing a plant from seed. They learn how plants play an important part in maintaining a balanced environment in which the living organisms of the Earth survive. This lesson is part of a series of six lessons in which students use their evolving understanding of various environments and the engineering design process, to design and create their own model biodome ecosystems.

Subject:
Applied Science
Botany
Engineering
Life Science
Material Type:
Activity/Lab
Lesson Plan
Author:
Christopher Valenti
Denise W. Carlson
Integrated Teaching and Learning Program,
Malinda Schaefer Zarske
Date Added:
09/18/2014
بيئة STEM التعليمية - د. ناصر العويشق
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بيئة STEM التعليمية للدكتور ناصر العويشق
ملتقيات STEM العلمية أحد مبادرات برنامج ⁧#التحول_الوطني_2030 جدة 6 مارس 2018

Author:
ناصر اللحياني - الفيزياء