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Risk-of-Locking-In-0.mp3
[Intro]
[Verse 1]
[Bridge]
[Chorus]
[Verse 2]
[Bridge]
[Chorus]
[Outro]
A SCIENCE NOTE
If emissions stay high, we will permanently lock in warming beyond 1.5°C.
The real danger is that if we delay action, crossing 1.5°C even temporarily triggers irreversible climate feedbacks, making it impossible to return to safer levels.
Complex Feedback Loops:
Tipping points are Critical Milestones that directly impact the rate of acceleration in climate change by multiplying the number and intensity of feedback loops. Identifying and understanding these tipping points is crucial for climate science and policymaking. Crossing multiple tipping points has led to a domino effect, resulting in a much more rapid and severe climate change than currently projected.
* Our climate model employs chaos theory to comprehensively consider human impacts and projects a potential global average temperature increase of 9°C above pre-industrial levels.
Risk-of-Locking-In-0.mp3
[Intro]
[Verse 1]
[Bridge]
[Chorus]
[Verse 2]
[Bridge]
[Chorus]
[Outro]
A SCIENCE NOTE
If emissions stay high, we will permanently lock in warming beyond 1.5°C.
The real danger is that if we delay action, crossing 1.5°C even temporarily triggers irreversible climate feedbacks, making it impossible to return to safer levels.
Complex Feedback Loops:
Tipping points are Critical Milestones that directly impact the rate of acceleration in climate change by multiplying the number and intensity of feedback loops. Identifying and understanding these tipping points is crucial for climate science and policymaking. Crossing multiple tipping points has led to a domino effect, resulting in a much more rapid and severe climate change than currently projected.
* Our climate model employs chaos theory to comprehensively consider human impacts and projects a potential global average temperature increase of 9°C above pre-industrial levels.