Anticipating whether
Waiting on the weather
[Verse 1]
More uncertainty
In predictability
The practicality
Of reality
[Chorus]
Waiting on the weather
Anticipating whether
Today’s a day
To go out and play
[Bridge]
Making music in the rain
Is a strain
Electrifying
Terrifying
[Instrumental, Guitar Solo, Bass]
[Verse 2]
Less certainty
In reliability
The practicality
Of reality
[Chorus]
Waiting on the weather
Anticipating whether
Today’s a day
To go out and play
[Bridge]
Making music in the rain
Is a strain
Electrifying
Terrifying
[Instrumental, Saxophone Solo, Bass]
[Bridge]
Electrifying
Terrifying
Making music in the rain
Turns insane
Refrain from dancing in the rain
Taking a chance
To dance
Risks your chance
To remain
[Instrumental, Guitar Solo, Drum Fills]
[Chorus]
Waiting on the weather
Anticipating whether
Today’s a day
To go out and play
[Outro]
Refrain from dancing in the rain
Taking a chance
To dance
Risks your chance
To remain
A SCIENCE NOTE
Climate change makes weather forecasting more difficult through several mechanisms that increase the complexity and variability of weather patterns. Here are some of the key challenges:
Climate change introduces new variables and amplifies existing uncertainties in the weather forecasting process, making it more difficult to provide accurate and reliable predictions. Meteorologists and climate scientists are continually working to improve models and incorporate new data to better understand and forecast weather in a changing climate.
Global warming is caused by an increase in thermal energy in the climate system. The Earth is a climate system. Many subsystems make up our climate. Chaos theory emphasizes the complexity and nonlinearity of dynamic systems, and this complexity is inherent in the interactions between soil, atmosphere, and oceans in the Earth’s climate system.
Atmospheric circulation together with ocean circulation is how thermal energy is redistributed throughout the world. Chaos theory offers insights into the complex, nonlinear dynamics of climate systems role in the redistribution of thermal energy. The Earth’s climate is a highly complex and dynamic system, influenced by various factors such as ocean currents, atmospheric circulation, and feedback loops.
General Circulation Models for the earth climate are nonlinear and teleconnected. That means a small change in temperature or pressure or humidity in one small area on the globe can cause _large_ changes in conditions _anywhere_ on the globe. This is sometimes called the Butterfly effect. The complexity of these models can lead to chaotic behaviour. Climate science must grapple with these models and extract results in spite of the mathematical difficulties, and there have been remarkable successes in some cases and sad failures in others. Nevertheless we must proceed.
Conclusion
Humans are making the Earth hotter. The cool water from the melting ice at the poles is being drawn toward the center of the Earth and getting warmed to record high temperatures. The warm, moist air is circulating and moving over land. The average time moisture stays in the air is 9 days before it turns into precipitation. The warmer the air becomes, the more rain the atmosphere holds and dumps; therefore, violent rain events are increasing in frequency and intensity.
* Our climate model employs chaos theory to comprehensively consider human impacts and projects a potential global average temperature increase of 9℃ above pre-industrial levels.
From the album “Incoming” by The Beatless Sense MongersMegaEpix EnormousA song about The Human Induced Climate Change Experiment