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Undead Unluck Discussion Thread

i'm new to UU, so i did what i always do when i read new series on viz

start reading the free chapters and how the in world we went from fighting to join the Illuminati/scp foundation to fighting and trying to killing god like a JRPG like Xenoblade
 
chapter 3: we have to join Union

chapter 130: Current objective: survive fighting god and try and kill god
ron-burgundy-escalated-quickly.gif
 
And I haven't made his page yet either just due to how irrelevant he is for overall scaling. But I can apply it sometime
 
Country? Via splitting clouds? And I'm just curious to what the results were exactly.
These clouds look like wisps, so I'd assume they're cirrus clouds, which have an average height of 1500 meters as per the wiki standards. I'll use the first cloud as an example.

First Cloud Radius = 321.019379845 / 2 = 160.50969 km = 160509.69 meters

Cloud Height = 1500 meters

Cloud Volume = pi * 160509.69^2 * 1500 = 1.21406977e+14 meters^3

Density of Clouds = 1.003 kg/meters^3

Cloud Mass = 1.21406977e+14 * 1.003 = 1.21771198e+14 kg

For the speed, you divide the radius by the time. Judging from the image, this split seemed to happen quickly, so I'll assume a time of 5 seconds.

Speed = 160509.69 / 5 = 32101.938 m/s

The clouds look to have moved directly to the side rather than omnidirectionally, so we can use 0.5 * mass * velocity^2 for KE. However, I'm not 100% sure on this, so I'll also use omnidirectional KE just to be safe, which is (1/12) * mass * velocity^2.

Omnidirectional: (1/12) * 1.21771198e+14 * 32101.938^2 = 1.04574509e+22 Joules or 2.5 teratons; Small Country level (Low 6-B)

Non-Omnidirectional = 0.5 * 1.21771198e+14 * 32101.938^2 = 6.27447054e+22 Joules or 15 teratons; Country level (6-B)

NCkQyGh.jpg
 
These clouds look like wisps, so I'd assume they're cirrus clouds, which have an average height of 1500 meters as per the wiki standards. I'll use the first cloud as an example.

First Cloud Radius = 321.019379845 / 2 = 160.50969 km = 160509.69 meters

Cloud Height = 1500 meters

Cloud Volume = pi * 160509.69^2 * 1500 = 1.21406977e+14 meters^3

Density of Clouds = 1.003 kg/meters^3

Cloud Mass = 1.21406977e+14 * 1.003 = 1.21771198e+14 kg

For the speed, you divide the radius by the time. Judging from the image, this split seemed to happen quickly, so I'll assume a time of 5 seconds.

Speed = 160509.69 / 5 = 32101.938 m/s

The clouds look to have moved directly to the side rather than omnidirectionally, so we can use 0.5 * mass * velocity^2 for KE. However, I'm not 100% sure on this, so I'll also use omnidirectional KE just to be safe, which is (1/12) * mass * velocity^2.

Omnidirectional: (1/12) * 1.21771198e+14 * 32101.938^2 = 1.04574509e+22 Joules or 2.5 teratons; Small Country level (Low 6-B)

Non-Omnidirectional = 0.5 * 1.21771198e+14 * 32101.938^2 = 6.27447054e+22 Joules or 15 teratons; Country level (6-B)

NCkQyGh.jpg
So close to making my dream matches....
 
These clouds look like wisps, so I'd assume they're cirrus clouds, which have an average height of 1500 meters as per the wiki standards. I'll use the first cloud as an example.

First Cloud Radius = 321.019379845 / 2 = 160.50969 km = 160509.69 meters

Cloud Height = 1500 meters

Cloud Volume = pi * 160509.69^2 * 1500 = 1.21406977e+14 meters^3

Density of Clouds = 1.003 kg/meters^3

Cloud Mass = 1.21406977e+14 * 1.003 = 1.21771198e+14 kg

For the speed, you divide the radius by the time. Judging from the image, this split seemed to happen quickly, so I'll assume a time of 5 seconds.

Speed = 160509.69 / 5 = 32101.938 m/s

The clouds look to have moved directly to the side rather than omnidirectionally, so we can use 0.5 * mass * velocity^2 for KE. However, I'm not 100% sure on this, so I'll also use omnidirectional KE just to be safe, which is (1/12) * mass * velocity^2.

Omnidirectional: (1/12) * 1.21771198e+14 * 32101.938^2 = 1.04574509e+22 Joules or 2.5 teratons; Small Country level (Low 6-B)

Non-Omnidirectional = 0.5 * 1.21771198e+14 * 32101.938^2 = 6.27447054e+22 Joules or 15 teratons; Country level (6-B)

NCkQyGh.jpg
Pretty good yields
 
God should have ftl travel via traveling from the sun to earth.
Um he didn't do that, the earth was moving closer and closer or the sun was. The other speed feat is Sun or Luna sending Seal and something else to earth in a matter of seconds the feat is likely sub rel.
0101-019.png
 
Um he didn't do that, the earth was moving closer and closer or the sun was. The other speed feat is Sun or Luna sending Seal and something else to earth in a matter of seconds the feat is likely sub rel.
0101-019.png
Takes a year for earth to fully revolve around the sun. Iirc only 2 weeks had past. Should be roughly the same distance away from our sun.
 
These clouds look like wisps, so I'd assume they're cirrus clouds, which have an average height of 1500 meters as per the wiki standards. I'll use the first cloud as an example.

First Cloud Radius = 321.019379845 / 2 = 160.50969 km = 160509.69 meters

Cloud Height = 1500 meters

Cloud Volume = pi * 160509.69^2 * 1500 = 1.21406977e+14 meters^3

Density of Clouds = 1.003 kg/meters^3

Cloud Mass = 1.21406977e+14 * 1.003 = 1.21771198e+14 kg

For the speed, you divide the radius by the time. Judging from the image, this split seemed to happen quickly, so I'll assume a time of 5 seconds.

Speed = 160509.69 / 5 = 32101.938 m/s

The clouds look to have moved directly to the side rather than omnidirectionally, so we can use 0.5 * mass * velocity^2 for KE. However, I'm not 100% sure on this, so I'll also use omnidirectional KE just to be safe, which is (1/12) * mass * velocity^2.

Omnidirectional: (1/12) * 1.21771198e+14 * 32101.938^2 = 1.04574509e+22 Joules or 2.5 teratons; Small Country level (Low 6-B)

Non-Omnidirectional = 0.5 * 1.21771198e+14 * 32101.938^2 = 6.27447054e+22 Joules or 15 teratons; Country level (6-B)

NCkQyGh.jpg
You missed a two cloud splits that would raise the result quite a bit. Also, I'm pretty sure you should use rectangular volume since the shape displaced would appear rectangular.

The first split you missed is near the bottom of the globe. The second one you missed is near the middle. In fact, the red line is going through it.

Fixing these mistakes would raise the result a fair amount. If you wish, I could calc it and put it in a blog, but you'd need to get me the raw scan, not the one already pixel scaled on.
 
 
You missed a two cloud splits that would raise the result quite a bit. Also, I'm pretty sure you should use rectangular volume since the shape displaced would appear rectangular.

The first split you missed is near the bottom of the globe. The second one you missed is near the middle. In fact, the red line is going through it.

Fixing these mistakes would raise the result a fair amount. If you wish, I could calc it and put it in a blog, but you'd need to get me the raw scan, not the one already pixel scaled on.
Alright. yeah pls do it.

0078-013.png
 
Don't want to be a partypooper or anything, but God's feat of destroying Earth, assuming what is said is true, may be below baseline Planet level. Baseline planet level is overcoming the GBE, and causing the pieces of earth to drift deep into space forever. Here it's said the fragments of earth would instead remain in the new Earth's orbit instead of drifting off into space. Though at bare minimum the feat would still certainly be like Small Planet level.

This isn't a certainty of course, just something I noticed.
 
Don't want to be a partypooper or anything, but God's feat of destroying Earth, assuming what is said is true, may be below baseline Planet level. Baseline planet level is overcoming the GBE, and causing the pieces of earth to drift deep into space forever. Here it's said the fragments of earth would instead remain in the new Earth's orbit instead of drifting off into space. Though at bare minimum the feat would still certainly be like Small Planet level.

This isn't a certainty of course, just something I noticed.
changed it just in case. If more info comes I'll do a crt for it.
 
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