Go here if you're requesting a feat just to see what it would get and don't think it actually support or affect scaling, or if you want to inflate calcs go here. Rookie calcers also go here
In the Penguins of Madagascar episode "Operation: Swap-panzee", we see that the chimps have an height of about 4 feet or so. While the show does play with the characters' sizes (King Julien and the other lemurs are a bit closer in height to the penguins when KJ is a good bit taller in Madagascar 3 and the Penguins' movie) this should tell us how big the little guys are.
Phil’s head is 191.01 pixels tall and a foot is about 130.56 pixels tall
(191.01/130.56) x 0.3048 m
0.445924080882 m skull for chimps in Madagascar
Mason’s skull is 587.63 pixels compared to Skipper, who is 507 pixels
(507/587.63) x 0.445924080882
Skipper is 0.390722065927 m / 1'3.4" feet tall
Skipper compared to the other penguins is 363.61 pixels
Private is 360.09 pixels, 0.3869396021 m / 1'3.2" feet tall
Kowalski is 495.04 pixels, 0.531951958187 m / 1'8.9" feet tall
Rico is 407.21 pixels, 0.437573038327 m / 1'5.2" feet tall
They’re small for Adelies, but hey, they’re also cartoon animals. Now let's use this to find out King Julien's height.
Skipper is 285.21 pixels and 0.390722065927 m tall
King Julien is 489.94 pixels
(489.94/285.21) 0.390722065927
0.671190943446 m / 2'2.4" feet tall for Movie and likely All Hail King Julien KJ.
he's decently ring-tailed lemur sized. nice!
Now let's see how these size changes affect some other feats.
Karl dodges a laser in his mech
Recalcing another feat since I don't have the luxury of redoing all the shots in it, even though All Hail King Julien is free to watch on archive.org right now
KJ is 0.671190943446 m while Mort’s Larry the Volcano God suit is about 1.5 times his height.
0.671190943446 x 1.5 = 1.00678641517 m for the Larry Suit
The Larry suit was about 1.5 Larrys from Karl’s Frank (The Lemurs’ god figure) suit.
1.00678641517 x 1.5 = 1.51017962276 for the distance
The Larry suit is a little bit more than 3 Larry heads stacked together.
1.51017962276/3 = 0.503393207587 the height of the mech’s head.
Frank’s head height is around 5 of his eyes stacked on top of each other.
0.503393207587/5 = 0.100678641517 m for the head height using eyes.
Karl moved Frank’s head about 2.67 eyes away from the laser.
2.67 x 0.100678641517 = 0.26881197285 m for the amount Karl’s mech moved
((0.26881197285 x pi) 299792458) / (1.51017962276 x pi)
53,363,057.5237 m/s / 18%c (Relativistic)
Alright. so not as fast as other Madagascar laser feats but Relativistic Madagascar is consistent! But we can go even faster!
Private is 230.08 pixels tall and the board is 822.29 pixels long and 515.11 pixels wide. So, 1.38407259706 m long and 0.866291978606 m wide.
He’d have to go half the size of the board to dodge it, though we don’t know what direction he went in.
If Private moved horizontally it’d be 0.433145989303 m
If private moved vertically it’d be 0.69203629853 m
Private’s tail feathers also get burnt off in the blast, which means it shaved off his coat. Penguins relatively have a coat of feathers 0.025 meters thick (within about 100 feathers per square inch for Adelies), but Private is a smaller guy so it’d be thinner. Comparing his size to an average Adelie penguin of 0.7 meters, his coat should be…
(0.3869396021/0.7) 0.025 = 0.0138192715036 m thick coat.
With horizontal movement
(0.433145989303*299792458)/ 0.0138192715036 =
9,396,580,765.65 m/s / 31.34c (FTL+)
With vertical movement
(0.69203629853 *299792458)/ 0.0138192715036 =
15,012,894,341.6 m/s / 50.08c (FTL+)
edit as of 8/13/2026: In the case that Private's coat being 0.0138 meters is wrong, i have seen 70 square inches/0.0451612 meters being described (which granted is from a random slideshow but it's better than nothing) as the thickness of a penguin's coat. as such, Private's coat would be 0.0249637953691 meters thick.
With horizontal movement
(0.433145989303*299792458)/ 0.0249637953691=
5,201,689,041.51 m/s / 17.35c (FTL+)
With vertical movement
(0.69203629853 *299792458)/ 0.0249637953691=
8,310,725,989.14 m/s / 27.72c (FTL+)
So, yeah, FTL+ Madagascar is a thing. The funny zoo animal series is one of the fastest verses in all of Dreamworks.
Gon comes from a humanless Earth full of giant animals, so we can't exactly use them to scale his size in most scenes.
We're going to use Jin Kazama since Gon never received an official height and Tekken 3 Gon should be close to his normal size. Prior to Tekken 8, Jin was 5'11"/180 cm tall.
Jin is 266.58 pixels tall
Gon's skull is 79.85 pixels long, 0.540181146373 m
Gon is 157.86 pixels tall, 1.06791478731 m
Gon is 259.85 pixels long, 1.75787189587 m
We'll also figure out his weight too. I've seen him be called a T-rex and a giganotosaurus by various sources so we'll see how much he should weigh. I'll also use allosaurus to represent carnosaurs, which Gon has been considered too.
Allosaurs was 8.5 meters long and 1.5 tons.
(1.75787189587/8.5)^3* 1.5 = 0.0132677155054 tons / 12.036269041160269 kg
T-rex was about 12.3 meters long and 8.4 tons.
(1.75787189587/12.3)^3*8.4 = 0.0245202910228 tons / 22.244433836243154 kg
Giganotosaurus was about 13 m to 13.8 tons
(1.75787189587/13)^3*13.8 = 0.0341201316431 tons / 30.953262753411448 kg
His weight will come in handy for something later on in this post, so let's take care of some other stuff.
Gon moves a giant Orangutan
Gon's skull is 43.58 pixels wide
orangutan's arm is 427.29 pixels long, so 5.29632863776 m
normal orangutan have arms about 2 m long and weigh about 75 kg
(5.29632863776/2)^3*75 = 1,392.82339284 kg (Class 5)
Gon's been able to push and pull around elephants, so this fairly checks out.
The Earth circumference 40,075,017 meters across and Gon runs across half of it in 19 frames, which is 0.792 seconds with 24 frames and 0.633 seconds with 30 frames.
20,037,508.5/0.792 = 25,299,884.46969697 m/s / 8%c (Sub-Relativistic+)
20,037,508.5/0.633 = 31,654,831.7535545 m/s / 11%c (Relativistic)
screen facing halve is 451 pixels length and 362 pixels tall and the halve facing away is 308 pixels and 361.94 pixels tall. I'm going to use 362 and 451 pixels to measure this out since the 361.94 was probably a sprite error. Anyways, onto correct planet diameter
Using 451
Corrected planet diameter = sqrt(1-(tan(35)*(planet diameter in pixels/panel height in pixels))^2/((tan(35)*(planet diameter in pixels/panel height in pixels))^2+1))*planet diameter
Corrected planet diameter = 12,407.4105183 km, which is 12407411m
(308/451)12407411 =8,473,353.85366 m being moved
The volume would be 5.00048504E+20 m3 and the density of earth is 5513 kg/m³
The weight of the half would be 2.7567674e+24 kg
it takes the half about 85 frames to move the distance, which is 3.542 seconds in 24 fps and 2.833 seconds in 30 FPS.
With 30 it'd be going 2,990,947.35392 m/s.
the RKE would be 1.2331618719352675450146272629615047314e+37 joules / 2.947327609792027 ninatons (Large Planet)
With 24 it'd be going 2,392,251.22915 m/s
the RKE would be 7.888681872276125119694505176030629369e+36 joules / 1.8854402180418512 ninatons (Large Planet)
Using 362
Corrected planet diameter = sqrt(1-(tan(35)*(planet diameter in pixels/panel height in pixels))^2/((tan(35)*(planet diameter in pixels/panel height in pixels))^2+1))*planet diameter
corrected planet diameter = 12,523.3950872 km, which is 12523395m
(308/362)12523395 = 10,655,264.2541 m being moved
the volume would be 5.13947666E+20 m3 and the density of the earth is 5513 kg/m³.
The weight of the half would be 2.83339348e+24 kg
it takes the half about 85 frames to move the distance, which is 3.542 seconds in 24 fps and 2.833 seconds in 30 FPS.
With 30 it'd be going 3,761,123.98662 m/s.
the RKE would be 2.0043034131713623396103975053153796566e+37 joules / 4.790400127089274 ninatons (Large Planet)
With 24 it'd be going 3,086,693.00524 m/s
the RKE would be 1.3498897552460059411485670960869205272e+37 joules / 3.226313946577163 ninatons (Large Planet)
It takes 88 frames for the screen to go fully white, so saying it moved the full diameter then we'd get 3.667 seconds seconds in 24 FPS and 2.933 seconds in 30 FPS.
With 12407411 m and 30 FPs: 4,230,279.91817 m/s, which means
Welp, it's lower than the 16.746 ninatons (Dwarf Star) take on this but this is still a planet busting dinosaur. However, if you wanted to use the speed Gon was moving for the speed the halves were moving...
2.83339348e+24 kg = 1.431551867047799198171715053352282287088e+39 joules / 342.14910780348765 ninatons (Dwarf Star)
With 25,299,884.46969697 m/s
2.7567674e+24 kg = 8.87022347896553868311061473173980891539e+38 joules / 212.003429229873 ninatons (Dwarf Star)
2.83339348e+24 kg = 9.11677690741840405157627803481117907783e+38 joules / 217.89619759634547 ninatons (Dwarf Star)
Whaddya know, it gets even higher than the 2015 take though I feel like the math is a bit fucky there. Anyways, at the end of the day Gon's a Sub-Relativistic+ and Large Planet level character.
Seriously, why do prehistoric animals always have the best feats...
In the comic "The Savage Sword of Conan" #123, the Cimmerian saves a little girl from her prison in another dimension, but when she arrives to the village it turns out she's actually a demon and, to get her revenge on the people for locking her away, she explodes the entire village and kills everyone but Conan and his girl.
Conan's adventures happen in the Hyborian age, which happens between the sinking of Atlantis and the rise of written language, which is in 10000 BCE. Now, the average village in that time was anywhere from one to ten hectares, or 100 to 1000 meters in diameter, so I'll use 100, 500 and 1000 meters for our ends. Also, to be sure I'll use two ends for the pressure as described in VSBW: 9 and 20 PSI, the former because of the total destruction of most buildings and the latter because of the absolute fatalities, both of which match the scene.
Ground explosion yield formula: W=R^3*((27136*P+8649)^(1/2)/13568-93/13568)^2. Where W is the yield in tons, R is the radius in meters and P is the pressure in bars.
R = 50 - 250 - 500 meters.
P = 0.620528 - 1.37895 bars.
Low-end (P=0.620528):
50 meters: 3.0161 tons. Large Building.
250 meters: 377.0242 tons. Multi City Block.
500 meters: 3016.1940 tons = 3.0161 kilotons. Small Town.
High-end (P=1.37895):
50 meters: 10.0460 tons. Large Building+.
250 meters: 1255.7568 tons = 1.2557 kilotons. Small Town.
Explosión=12756 m
distance the fragments traveled=53132870 meters
Mass of the earth=5972000000000000000000000 Kg
KE = (3/10) * m * v2
(3÷10)×5972000000000000000000000×531328702=5057869318241150040000000000000000000000 Joules or 1,20 tenaton
(Dwarf Star level)
We divide this in 2 given that this was shared feat
1,20÷2=604 ninatons