Western science and much of our modern existence are built upon linear thinking and reductionism. This has been a very successful method for scientific discovery, while propelling our species into advanced technological status, but it only shines a light on a small part of reality. The future of great scientific discoveries and innovation may lie within the burgeoning interdisciplinary field of Complex Systems Science.
Our world, and ultimately the entire cosmos, is filled with countless interacting, interdependent components. In complex systems, such as neural, socio-economic and information networks, as well as Earth systems, ecology and large-scale cosmological structures, phenomena surface that cannot be understood by the methods of reductionism. These include, but are not limited to, emergence and self-organization; order and chaos; synchrony and scale-independent patterns; phase transitions and feedback loops; resilience and adaptation; and nonlinear dynamics.
Complexity takes a holistic approach to interconnected nonlinear systems and can be informed by both modern science and traditional worldviews. Viewing, researching and understanding the integrated whole as greater than the sum of its parts – as many Indigenous and traditional cultures do – may hold the key to addressing some of our most urgent and foundational challenges and questions. These range from climate change and the collapse of ecosystems, to understanding the emergence of consciousness, life, and the origins of our universe.