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submitted 4 months ago by silence7@slrpnk.net to c/climate@slrpnk.net
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[-] rayyy@piefed.social 5 points 4 months ago

It's just warming up. Wait until it really gets hot - like dying hot.

[-] Apocalypteroid@anarchist.nexus 6 points 4 months ago* (last edited 4 months ago)

It's already over dying hot. It's the humidity that is the important factor. Scientifically it's known as "wet bulb temperature", which makes the teenager in me snigger, but the adult which I am terrified.

As I understand it, it's the temperature/humidity combination at which the human body can no longer regulate using natural mechanisms, eg sweating. Healthy human body temperature is normally ~37C, so being somewhere which is 99% air humidity and a temperature of 40C is effectively like being in a bath of 40C water. No matter how much you sweat, the humidity overrides the cooling effect of sweat evaporating. A high fever temperature is >38C, so our bodies are incredibly temperature sensitive and any significant amount of time spent at temperatures higher than this will start to cause serious health issues and eventually death.

Thanks you for listening to my Ted talk. Sweet dreams.

[-] boonhet@sopuli.xyz 4 points 3 months ago

It doesn't override the cooling effect of sweat evaporating, it literally prevents sweat from evaporating altogether once you're at 100% humidity. On the way to 100% the rate of evaporation starts slowing.

[-] Apocalypteroid@anarchist.nexus 3 points 3 months ago

Yes, thank you. A clumsy use of language on my behalf but essentially that's what I was trying to say.

[-] HaraldvonBlauzahn@feddit.org 3 points 3 months ago* (last edited 3 months ago)

No matter how much you sweat, the humidity overrides the cooling effect of sweat evaporating.

Even worse than that. A living human must have a skin temperature of no higher than about 37 ° C. When the dew point temperature is higher, this means that the humidity condenses on your cooler skin and delivers condensation heat - the opposite of the process of cooling by evaporation. You can see that in a Finnish sauna for hot, short periods (where the body core temperature is not affected because it is short).

But the body has no means to get rid of heat. Over a longer time, you would be cooked alive. This is why high dew point temperatures are deadly and not survivable.

See this table:

https://en.wikipedia.org/wiki/Heat_index#Table_of_values

[-] Notyou@sopuli.xyz 2 points 3 months ago

I feel there will be a heat wave soon that kills many people. When the power grid fails and AC that can be run isn't enough.

~~Also, I think it's spelled snicker.~~ NM. I looked it up, both words have similar meanings.

[-] Apocalypteroid@anarchist.nexus 3 points 3 months ago

Absolutely, with data centres now sucking up all the power and the water then I would be surprised if this doesn't happen in the next 2/3 years.

[-] rayyy@piefed.social 1 points 3 months ago

Don't data centers put out a lot of heat?

[-] Apocalypteroid@anarchist.nexus 2 points 3 months ago
this post was submitted on 17 May 2026
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Climate

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Discussion of climate, how it is changing, activism around that, the politics, and the energy systems change we need in order to stabilize things.

As a starting point, the burning of fossil fuels, and to a lesser extent deforestation and release of methane are responsible for the warming in recent decades: Graph of temperature as observed with significant warming, and simulated without added greenhouse gases and other anthropogentic changes, which shows no significant warming

How much each change to the atmosphere has warmed the world: IPCC AR6 Figure 2 - Thee bar charts: first chart: how much each gas has warmed the world.  About 1C of total warming.  Second chart:  about 1.5C of total warming from well-mixed greenhouse gases, offset by 0.4C of cooling from aerosols and negligible influence from changes to solar output, volcanoes, and internal variability.  Third chart: about 1.25C of warming from CO2, 0.5C from methane, and a bunch more in small quantities from other gases.  About 0.5C of cooling with large error bars from SO2.

Recommended actions to cut greenhouse gas emissions in the near future:

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