@JustaDumbThriver
Your votes will decide the fate of Life in the FG…
Do you mean their poll votes?
I voted. I am a proud American. (not really living here sucks)
I think the life’s fate has already been decided…
First Pass (ATP Balance) Extinctions:
None.
Second Pass (Miche) Extinctions:
Thrivium Family Clade
Delta Tribe Clade
Burnillo Genera Clade
hydro species
mesoa lineage
mesoa beta (Ecotype 101)
Generation: 15
Population: 61T
Color: #ffffb1; RGB: 255,255,177
Behavior:
Aggression: 100, Opportunism: 160, Fear: 100, Activity: 100, Focus: 100, Cannibalism: 0
Membrane Type: Single, Membrane Rigidity: 0
Base Speed: 0.19, Base Rotation Speed: 734, Base Hex Size: 2.0
Organelles: Proteorhodopsin, Cytoplasm, Thermosynthase, Hydrogenase
Organelle Reproduction Order: 1) Proteorhodopsin (1,0), 2) Cytoplasm (1,-1), 3) Thermosynthase (0,-1), 4) Hydrogenase (-1,0)
Organelle Position: 1) (1,0), 2) (1,-1), 3) (0,-1), 4) (-1,0)
Organelles Rotation Position: 1) 2, 2) 1, 3) 4, 4) 5
Temperature Tolerance Range: 11 C – 35 C
Temperature Tolerance Flexibility: Nonstandard (10 C +2 C)
Pressure Tolerance Range: 120 kPa – 480 kPa
Pressure Tolerance Flexibility: Standard (360 kPa)
Oxygen Resistance: 0% (-3%)
UV Resistance: 100% (+3%)
P/A: 198 Pixels/904 Square Pixels = 0.219
beta sublineage
beta photophago (Subspecies 129)
Generation: 15
Population: 1T
Color: #ffffb1; RGB: 255,255,177
Behavior:
Aggression: 100, Opportunism: 160, Fear: 100, Activity: 100, Focus: 100, Cannibalism: 0
Membrane Type: Single, Membrane Rigidity: 0
Base Speed: 0.20, Base Rotation Speed: 734, Base Hex Size: 2.5
Organelles: Proteorhodopsin, Cytoplasm, Thermosynthase, Hydrogenase, Thylakoids
Organelle Reproduction Order: 1) Proteorhodopsin (1,0), 2) Cytoplasm (1,-1), 3) Thermosynthase (0,-1), 4) Hydrogenase (-1,0), 5) Thylakoids (0,0)
Organelle Position: 1) (1,0), 2) (1,-1), 3) (0,-1), 4) (-1,0), 5) (0,0)
Organelles Rotation Position: 1) 2, 2) 1, 3) 4, 4) 5, 5) 1
Temperature Tolerance Range: 11 C – 35 C
Temperature Tolerance Flexibility: Nonstandard (10 C +2 C)
Pressure Tolerance Range: 120 kPa – 480 kPa
Pressure Tolerance Flexibility: Standard (360 kPa)
Oxygen Resistance: 0% (-2%)
UV Resistance: 100% (+3%)
P/A: 198 Pixels/1130 Square Pixels = 0.175
beta templess (Subspecies 130)
Generation: 15
Population: 1T
Color: #ffffb1; RGB: 255,255,177
Behavior:
Aggression: 100, Opportunism: 160, Fear: 100, Activity: 100, Focus: 100, Cannibalism: 0
Membrane Type: Single, Membrane Rigidity: 0
Base Speed: 0.21, Base Rotation Speed: 790, Base Hex Size: 1.5
Organelles: Proteorhodopsin, Cytoplasm, Hydrogenase
Organelle Reproduction Order: 1) Proteorhodopsin (1,0), 2) Cytoplasm (1,-1), 3) Hydrogenase (0,-1)
Organelle Position: 1) (1,0), 2) (1,-1), 3) (0,-1)
Organelles Rotation Position: 1) 2, 2) 1, 3) 5
Temperature Tolerance Range: 13 C – 33 C
Temperature Tolerance Flexibility: Nonstandard (10 C +0C)
Pressure Tolerance Range: 120 kPa – 480 kPa
Pressure Tolerance Flexibility: Standard (360 kPa)
Oxygen Resistance: 0% (-3%)
UV Resistance: 100% (+3%)
P/A: 182 Pixels/678 Square Pixels = 0.268
beta solidae (Subspecies 131)
Generation: 15
Population: 1T
Color: #ffffb1; RGB: 255,255,177
Behavior:
Aggression: 100, Opportunism: 160, Fear: 100, Activity: 100, Focus: 100, Cannibalism: 0
Membrane Type: Single, Membrane Rigidity: +0.6
Base Speed: 0.18, Base Rotation Speed: 734, Base Hex Size: 2.0
Organelles: Proteorhodopsin, Cytoplasm, Thermosynthase, Hydrogenase
Organelle Reproduction Order: 1) Proteorhodopsin (1,0), 2) Cytoplasm (1,-1), 3) Thermosynthase (0,-1), 4) Hydrogenase (-1,0)
Organelle Position: 1) (1,0), 2) (1,-1), 3) (0,-1), 4) (-1,0)
Organelles Rotation Position: 1) 2, 2) 1, 3) 4, 4) 5
Temperature Tolerance Range: 11 C – 35 C
Temperature Tolerance Flexibility: Nonstandard (10 C +2 C)
Pressure Tolerance Range: 120 kPa – 480 kPa
Pressure Tolerance Flexibility: Standard (360 kPa)
Oxygen Resistance: 0% (-3%)
UV Resistance: 100% (+3%)
P/A: 198 Pixels/904 Square Pixels = 0.219
beta gluco (Subspecies 132)
Generation: 15
Population: 1T
Color: #ffffb1; RGB: 255,255,177
Behavior:
Aggression: 100, Opportunism: 160, Fear: 100, Activity: 100, Focus: 100, Cannibalism: 0
Membrane Type: Single, Membrane Rigidity: 0
Base Speed: 0.20, Base Rotation Speed: 790, Base Hex Size: 1.5
Organelles: Cytoplasm, Thermosynthase, Hydrogenase
Organelle Reproduction Order: 1) Cytoplasm (1,-1), 2) Thermosynthase (0,-1), 3) Hydrogenase (-1,0)
Organelle Position: 1) (1,-1), 2) (0,-1), 3) (-1,0)
Organelles Rotation Position: 1) 1, 2) 4, 3) 5
Temperature Tolerance Range: 11 C – 35 C
Temperature Tolerance Flexibility: Nonstandard (10 C +2 C)
Pressure Tolerance Range: 120 kPa – 480 kPa
Pressure Tolerance Flexibility: Standard (360 kPa)
Oxygen Resistance: 0% (-3%)
UV Resistance: 100% (+3%)
P/A: 185 Pixels/678 Square Pixels = 0.273
beta decytoso (Subspecies 133)
Generation: 15
Population: 1T
Color: #ffffb1; RGB: 255,255,177
Behavior:
Aggression: 100, Opportunism: 160, Fear: 100, Activity: 100, Focus: 100, Cannibalism: 0
Membrane Type: Single, Membrane Rigidity: 0
Base Speed: 0.20, Base Rotation Speed: 780, Base Hex Size: 1.5
Organelles: Proteorhodopsin, Thermosynthase, Hydrogenase
Organelle Reproduction Order: 1) Proteorhodopsin (1,-1), 2) Thermosynthase (0,-1), 3) Hydrogenase (-1,0)
Organelle Position: 1) (1,-1), 2) (0,-1), 3) (-1,0)
Organelles Rotation Position: 1) 2, 2) 4, 4) 5
Temperature Tolerance Range: 11 C – 35 C
Temperature Tolerance Flexibility: Nonstandard (10 C +2 C)
Pressure Tolerance Range: 120 kPa – 480 kPa
Pressure Tolerance Flexibility: Standard (360 kPa)
Oxygen Resistance: 0% (-3%)
UV Resistance: 100% (+3%)
P/A: 185 Pixels/678 Square Pixels = 0.273

Complete Extinction
List of Inhabitable Biomes:
Cablevenian Tidepool
Biome: Tidepool
0-10m below sea level
Physical Conditions
Temperature: 23 degrees Celsius, Pressure: 150 kPa, Light: 100% lux (100% lux at noon)
Atmospheric Gases
Oxygen: 16.93%, Nitrogen: 55.65%, Carbon Dioxide: 11.62%, Other Gases: 15.75%
Compounds
Hydrogen Sulfide: 0%, Ammonia: 16%, Glucose: 1.25%, Phosphate: 20.006%, Iron: 2.288%, Radiation: 0%
Banana Biome
Biome: Coastal
0-200m below sea level
Physical Conditions
Temperature: 17 degrees Celsius, Pressure: 1082 kPa, Light: 100% lux (100% lux at noon)
Atmospheric Gases
Oxygen: 7.67%, Nitrogen: 59.6%, Carbon Dioxide: 13.08%, Other Gases: 19.55%
Compounds
Hydrogen Sulfide: 0, Ammonia: 10.8%, Glucose: 2.25%, Phosphate: 13.509%, Iron: 0.296%, Radiation: 0%
Cablevenian Estuary
Biome: Estuary
0-200m below sea level
Physical Conditions
Temperature: 17 degrees Celsius, Pressure: 1082 kPa, Light: 100% lux (100% lux at noon)
Atmospheric Gases
Oxygen: 11.13%, Nitrogen: 55.81%, Carbon Dioxide: 14.05%, Other Gases: 18.95%
Compounds
Hydrogen Sulfide: 0.771%, Ammonia: 12%, Glucose: 2.5%, Phosphate: 15.094%, Iron: 2.903%, Radiation: 0%
Cablevenian Underwater cave
Biome: Underwater cave
0-10m below sea level
Physical Conditions
Temperature: 23 degrees Celsius, Pressure: 150 kPa, Light: 0% lux (0% lux at noon)
Atmospheric Gases
Oxygen: 3.60%, Nitrogen: 61.62%, Carbon Dioxide: 11.78%, Other Gases: 23.0%
Compounds
Hydrogen Sulfide: 8.132%, Ammonia: 12%, Glucose: 5%, Phosphate: 20.155%, Iron: 5.941%, Radiation: 0.25%
Baszergatic Epipelagic
Biome: Epipelagic
0-177m below sea level
Physical Conditions
Temperature: 8 degrees Celsius, Pressure: 970 kPa, Light: 100% lux (100% lux at noon)
Atmospheric Gases
Oxygen: 2.29%, Nitrogen: 59.56%, Carbon Dioxide: 16.69%, Other Gases: 21.37%
Compounds
Hydrogen Sulfide: 0%, Ammonia: 12%, Glucose: 5%, Phosphate: 15%, Iron: 0%, Radiation: 0%
Unovaskysian Epipelagic
Biome: Epipelagic
0-200m below sea level
Physical Conditions
Temperature: 8 degrees Celsius, Pressure: 1082 kPa, Light: 100% lux (100% lux at noon)
Atmospheric Gases
Oxygen: 0.30%, Nitrogen: 59.37%, Carbon Dioxide: 18.36%, Other Gases: 21.92%
Compounds
Hydrogen Sulfide: 0%, Ammonia: 12%, Glucose: 5%, Phosphate: 15%, Iron: 0%, Radiation: 0%
Yrinian Epipelagic
Biome: Epipelagic
0-34m below sea level
Physical Conditions
Temperature: 8 degrees Celsius, Pressure: 268 kPa, Light: 100% lux (100% lux at noon)
Atmospheric Gases
Oxygen: 2.30%, Nitrogen: 55.86%, Carbon Dioxide: 18.05%, Other Gases: 23.72%
Compounds
Hydrogen Sulfide: 0%, Ammonia: 12%, Glucose: 5%, Phosphate: 15%, Iron: 0%, Radiation: 0%
Baszergatic Underwater cave
Biome: Underwater cave
0-177m below sea level
Physical Conditions
Temperature: 23 degrees Celsius, Pressure: 970 kPa, Light: 0% lux (0% lux at noon)
Atmospheric Gases
Oxygen: 0%, Nitrogen: 61.46%, Carbon Dioxide: 16.16%, Other Gases: 22.3%
Compounds
Hydrogen Sulfide: 8.132%, Ammonia: 12%, Glucose: 5%, Phosphate: 20.155%, Iron: 6.002%, Radiation: 0.25%
Baszergatic Sea Floor
Biome: Sea Floor
177-187m below sea level
Physical Conditions
Temperature: 4 degrees Celsius, Pressure: 1887 kPa, Light: 1% lux (1% lux at noon)
Atmospheric Gases
Oxygen: 0%, Nitrogen: 48.54%, Carbon Dioxide: 33.31%, Other Gases: 18.1%
Compounds
Hydrogen Sulfide: 0.106%, Ammonia: 12%, Glucose: 5%, Phosphate: 15.155%, Iron: 3.001%, Radiation: 0.25%
Unovaskysian Mesopelagic
Biome: Epipelagic
200-1000m below sea level
Physical Conditions
Temperature: 2 degrees Celsius, Pressure: 5987 kPa, Light: 1% lux (1% lux at noon)
Atmospheric Gases
Oxygen: 0%, Nitrogen: 60.9%, Carbon Dioxide: 15.43%, Other Gases: 23.6%
Compounds
Hydrogen Sulfide: 0%, Ammonia: 12%, Glucose: 5%, Phosphate: 15%, Iron: 3.001%, Radiation: 0%
Carrotic Epipelagic
Biome: Epipelagic
0-200m below sea level
Physical Conditions
Temperature: 8 degrees Celsius, Pressure: 1082 kPa, Light: 100% lux (100% lux at noon)
Atmospheric Gases
Oxygen: 0%, Nitrogen: 60.74%, Carbon Dioxide: 16.88%, Other Gases: 22.3%
Compounds
Hydrogen Sulfide: 0%, Ammonia: 12%, Glucose: 5%, Phosphate: 15%, Iron: 0%, Radiation: 0%
Sebonian Coastal
Biome: Coastal
0-200m below sea level
Physical Conditions
Temperature: 17 degrees Celsius, Pressure: 1082 kPa, Light: 100% lux (100% lux at noon)
Atmospheric Gases
Oxygen: 0%, Nitrogen: 59.16%, Carbon Dioxide: 18.75%, Other Gases: 22%
Compounds
Hydrogen Sulfide: 0, Ammonia: 12%, Glucose: 5%, Phosphate: 15.062%, Iron: 3.001%, Radiation: 0%
Yrinian Sea Floor
Biome: Sea Floor
34-44m below sea level
Physical Conditions
Temperature: 4 degrees Celsius, Pressure: 484 kPa, Light: 36% lux (36% lux at noon)
Atmospheric Gases
Oxygen: 0%, Nitrogen: 50.81%, Carbon Dioxide: 30.4%, Other Gases: 18.7%
Compounds
Hydrogen Sulfide: 0.106%, Ammonia: 12%, Glucose: 5%, Phosphate: 15.155%, Iron: 3.001%, Radiation: 0.25%
Rikystasean Ice Shelf
Biome: Ice Shelf
0-200m below sea level
Physical Conditions
Temperature: -1 degrees Celsius, Pressure: 1082 kPa, Light: 50% lux (50% lux at noon)
Atmospheric Gases
Oxygen: 0%, Nitrogen: 62.72%, Carbon Dioxide: 19.09%, Other Gases: 18.1%
Compounds
Hydrogen Sulfide: 0, Ammonia: 12%, Glucose: 5%, Phosphate: 23.333%, Iron: 0.901%, Radiation: 0%
Notes:
Note 1 – F for the first FG life. It had a good 14 clade run. I thought RNG was going to save everyone for sure. Alas, it did not.
Note 2 – In the trial run, in case people voted to have changes to Temperature and Pressure tolerances, the changes in Pressure Tolerance and Pressure Tolerance ranges was just barely enough to escape the ~20% cut off point.
Note 3 – The extinction of FG Life does not mean the FG has ended. Far from it. We still need to get through the Late Heavy Bombardment.
Note 4 – I am surprised no one else noticed that there was an error in the classification scheme for this long in the FG. I cannot believe I missed it, either! The difference between each Major Clade is supposed to be four clades, but the difference between Genera Clade and Species Clade was only one minor clade!
So does a new LUCA just emerge?
Yes, but this time from a meteor, a la Panspermia.
I see. Will it fall instantly after this round or will the world be let “rest” for a while?
Yes, it will happen after this round. But first…questions for everyone!
What was your favorite organism that emerged?
What song should we us to honor the extinct life?
Do you want anything in the FG changed during Phase II?
Do you want me to make a Clade Diagram for Phase I?
We should probably decrease the risk of a total extinction happening somehow.
Welp, had a good run.
Also, make that diagram.
A diagram of what? Species count?
The clade diagram that AA said he could make.
Right, as this has taken place over many versions, it will not be trivial to make it…
It is going to take a while to make it. This will be one really wide/tall clade diagram…
Indeed. Hopefully the next one will be longer…
I predicted the future once again.
I very much appreciate it if you would answer the FG questions that I posted above. Here is the link just in case.
Also, how is your studying going for your exams?
I se isee
luca 1.5, i think its the second that emeged before the xtintsib
Oxygenless. let as commit the exotic liveform
sey
hard, but the worst still to come in the next week
That would require disabling photosynthesis