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Preface[]

Feat : Saitama uses Serious Sneeze on Jupiter. causing the gas to spread out until Jupiter’s core is visible

Calculation[]

Image 21-7-2565 BE at 18

Pixel Scaling[]

  • Jupiter's diameter: 1019 px = 142,984 km
  • Green line: 492 px = 69036.43572 km
  • Light blue line: 274 px = 38447.12 km
  • Yellow line: 919 px = 128952.20412 km
  • Blue line: 290 px = 40692.20805 km

Volume[]

Dispersed volume[]

Truncated cone[]
  • Height: (142984/2)-40692.20805 = 30799.79195 km
  • Base radius: 128952.20412/2 = 64476.10206 km
  • Top radius: 69036.43572/2 = 34518.21786 km

Use Truncated cone Calculator

  • V = 244296634245828 km^3
Half Sphere[]
  • V = (4/3*pi*(69036.43572/2)^3)/2
  • V = 8.613977e+13 km^3
Hemisphere[]
  • Cap height: 290 px = 40692.20805 km
  • Cap base radius: 64476.10206 km
  • V = 1/3 * pi * h^2 (3R-h)
  • V = 1/3 * pi * 40692.20805^2 (3( 142,984/2)-40692.20805)
  • V = 3.0134251e+14 km^3 , 3.0134251e+23 m^3
Total Volume[]
  • V = 244296634245828-8.613977e+13+3.0134251e+14
  • V = 4.5949937e+14 km^3 , 4.5949937e+23 m^3

Jupiter core volume[]

  • V = 4/3 * pi * (69036.43572/2)^3
  • V = 1.7227954e+14 km^3 , 1.7227954e+23 m^3

Mass[]

The size of Jupiter’s core is less accurately known; it is believed to be about 10 to 20 times the size of the Earth, or about 32,000 km (20,000 miles) in diameter. The core’s density is estimated at 25,000 kg per cubic meter, which would give Jupiter’s core a mass of 137 trillion trillion kilograms (151 billion trillion tons).

  • Core mass = 1.36984896 × 1026 kg
  • Jupiter mass = 1.89813 × 10^27 kg

Mass of the non-core part of Jupiter[]

  • M = 1.89813 × 10^27 - 1.36984896 × 1026
  • M = 1.7611451e+27 kg

Use the ratio to find the Volume of the gas.

  • Volume of real Jupiter'core = 4/3 * pi * (32000000/2)^3 = 1.7157285e+22 m^3
  • Volume of Jupiter = 1.4313×1015 km3 , 1.4313 × 1024 m^3
  • ratio 1.4313 × 1024- 1.7157285e+22 = 1.4141427e+24 m^3

If Volume of the non-core part of Jupiter (use size in manga)

  • 1.4141427e+24 m^3 = 1.7611451e+27 kg that mean
  • 4.5949937e+23 m^3 = 5.7225135e+26 kg

Velocity[]

I use 3 second and Yellow line 128952.20412 km to find speed.

  • V = (128952.20412/2)/3
  • V = 21492.03402 km/s , 21492034.02 m/s (Sub-Relativistic+)

Energy[]

  • E = 1/12 * 5.7225135e+26 * 21492034.02^2
  • E = 2.2027267e+40 J

Mass[]

Atmosphere of Jupiter have hydrogen 89% Density 0.08375 kg/m^3 , helium 10% Density 0.169 kg/m^3 But Atmosphere Scale height only 27 km (It doesn't affect the various values much. I will ignore it). So use The interior of Jupiter contains denser materials—by mass it is roughly 71% hydrogen, 24% helium, and 5% other elements. (But I don't know what the 5% is, so I thought I'd ignore it x2.)

Mass of hydrogen 71%[]

  • M = (4.230025e+23*71%) * 0.08375
  • M = 2.5152786e+22 kg

Mass of helium 24%[]

  • M = (4.230025e+23*24%) * 0.169
  • M = 1.7156981e+22 kg

Total Mass[]

  • M = 2.5152786e+22 + 1.7156981e+22
  • M = 4.2309767e+22 kg

Velocity[]

I use 3 second and Yellow line 128952.20412 km to find speed.

  • V = (128952.20412/2)/3
  • V = 21492.03402 km/s , 21492034.02 m/s (Sub-Relativistic+)

Energy[]

  • E = 1/12 * 4.2309767e+22 * 21492034.02^2
  • E = 1.6286e+36 J (Large Planet level)

Results[]

Serious Sneeze = 5.26 Quettatons of TNT , (Dwarf Star level)

Speed Jupiter's Atmosphere = 21492034.02 m/s (Sub-Relativistic+)

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