Climate Sys-dumb

LYRICS
If ever there has been
If ever there will be
Then…
It isn’t destiny
Can’t be a victim
Of a climate system
When we’re to blame
For cheatin’ the game
Tried to learn a lesson
Pissing into the wind
Comes back to where it’s been
Mother Nature ain’t messin’
No doubt could start a drought
Followed by a bout
Of torrential rain
… put a strain on the drain
A bout about our downspout
Victim?
It’s our climate sys-dumb

Chords: F Db / Db Eb / Eb Bb Db F / Ab Bb F / F C F Bb F; Part II @ 88 Beats Per Minute
Instrumentation: Vocals (TC-Helicon VOICELIVE and MiniNova Vocorder), Ibanez Acoustic Guitar (AW54CE), Ibanez Electric RG-270 (Boss Digital Delay), Fender Jazz Bass (Boss Digital Delay), Keyboards (Korg PS60, Casio WK-3500, Yamaha PSR-740, MiniNova, MicroKorg)

ABOUT THE SONG

Unfortunately, even scientists are failing to see, let alone forecast, the rapid acceleration in climate change. Due to their complexity, the impacts of the Domino Effect are being underestimated. The Domino Effect is also known as “tipping cascades” in climate science. Cascading impacts in relation to tipping points include cascading impacts across biogeophysical and social systems. Until recently, scientist have been drastically underestimating the social-ecological systems.

The Earth is a climate system. Many subsystems make up our climate. Perhaps the most important factor impacting our climate is us. The biggest influence on climate change is the increase in greenhouse gas concentrations in the Earth’s atmosphere, primarily driven by human activities. The largest drivers of human induced climate change include: burning of fossil fuels, deforestation and land use, industrial processes, agriculture, waste management, and use of fluorinated gases. Human induced climate change is an exponential component of an unordered system (chaos theory). Chaos theory plays a role in understanding the dynamics and potential unpredictability of social-ecological systems’ impact on climate change. Social-ecological systems encompass the interconnectedness of human societies and the ecosystems they are part of, and their behavior is influenced by a myriad of factors, including human activities, policies, resource use, and environmental changes. Chaos theory contributes insights into the complexity, sensitivity to initial conditions, and potential nonlinearities within these systems.

Incorporating chaos theory into forecasting models for social-ecological systems helps researchers and policymakers recognize the limitations of linear thinking and deterministic approaches. Embracing complexity and uncertainty can lead to more robust and adaptive strategies for addressing the multifaceted challenges posed by climate change within the context of human societies and ecosystems.

Our model attempts to adequately account for humans and forecasts a global average temperature increase of 9 degrees Celsius above pre-industrial levels.

A song about The Human Induced Climate Change Experiment

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