many worlds. Data companies face increasing bandwith demands. They develop
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many worlds. Data companies face increasing bandwith demands. They develop
new ways to transmit video. Application developers create fresh tools to compress
their signals. The whole system gets faster. Such co-evolution is common when
linked systems press into one another.?5!
If you look back at biological history, at our planet’s seething life at it’s most
profound moments of transition, you find co-evolution in nearly every case. The
biologists John Maynard Smith and Eors Szathmary, in their masterwork The Major
Transitions in Evolution, chronicle the miraculous march of life towards ever-greater
complexity — from cells to humans to societies - as a story of ceaseless, successful
co-evolution. “Complexity is hard to define or to measure,” they write. “But there is
surely some sense in which elephants and oak trees are more complex than bacteria,
and bacteria than the first replicating molecules.” The essential, facilitating feature
of our biological hop-scotch from mitochondrial snot to Beethoven sonatas has been
an ability to change together, not merely to compete. While we humans tend to
consider evolution in murderous you win/I lose Darwinian terms, the biological
world around us seethes with a more nuanced logic: Cooperation is every bit as
important to survival.
Smith and Szathmary identified eight major transitions in their work - the evolution
from single cell to multiple cell organisms, for instance. And in each case they find a
kind of cooperative, co-evolving logic serving a catalyst to survival. “The
applicability of the concept,” Smith and Szathmary conclude, “extends across the
whole of social and natural sciences.” Inside cells. In ecosystem webs of coral or
rainforest. In traffic management. Successful evolution was, they found, always co-
evolution. “It should need little persuasion to acknowledge that links we make with
others change in time,” they wrote. “That all of us age, that our roles in life evolve,
and that the society we are a part of may itself be subject to transformations ona
global scale. Coevolutionary rules aim to integrate these processes.” The world
changes. I change. You change.
Network age systems, in their effortless bridging of divisions - geographical,
technical, commercial - bounce with a particularly powerful fusion. “It is often
assumed that biological agents are by nature rationally selfish, and that therefore
external circumstances somehow have to compel them to cooperate,” the historians
Nathale Mezza-Garcia, Tom Froese and Nelson Fernadez have written about the
organization of societies over the past millennia. That sense we often have, that
we're one Darwinian instant from some sort of lethal, teeth-baring competition,
doesn’t in fact explain all of human history. 253 Politics is a sort of complex adaptive
251 Such co-evolution: Matjaz Perca, Attila Szolnokib, “Coevolutionary games—A
mini review”, Biosystems 99 (2010) 109-125
253 “It is often assumed”: Nathalie Mezza-Garcia, Tom Froese and Nelson
Fernandez, “Reflections on the Complexity of Ancient Social Heterarchies: Toward
New Models of Social Self-Organization in Pre-Hispanic Colombia” in Journal of
Sociocybernetics 12 (2014), pp. 3 - 17
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