309 back wings
So x2 = 618 wings
And assuming the ratio of wing to legs 1:2 is still intact. x2 again = 1236 legs
And if ponies are 1 meter long(makes math easier) then there are 308 segments assuming 1 back wing per segment(doesn’t seem to be but since I’m too tired to do better I’ll use this.) and divide by 119m/s
Let me just get a calculator, brb, ok, 308meters/2.588223529seconds
And to convert that into a non math looking ratio, it takes her a little less than 3 seconds to get her whole body running.
@GryphonStar5678
And as stated in myprevious comment, we were speculating on the basis of a hypothetical length of 20,000 sections (the rough maximum she could attain under the 25MB limit for image s, which would give us an image of over 2 million pixels in width) instead of 154.
@GryphonStar5678
If the messages move at 119m/s, and she were 119 meters long, it would take 1 second for the message to reach her legs. If she has 40,000 legs, that means she’s 19,999 meters long, which means 168 seconds. Like I said, just short of 3 minutes.
@T72B @Ereiam
154 section in all gives or take a few so easily under a second. Really you would have to at least double this to see any delay compared to our own and even then not by much.
Some signals such as those for muscle position, travel at speeds up to 119m/s. Nerve impulses such as pain signals travel slower at 0.61m/s. Touch signals travel at speeds of 76.2m/s.
Hasbro should have there own amusement park and make a roller coaster like this.
I think there probably is a full pair at the very back. One of the two is just blocked by the tail.
Incorrect. The formula for wings (x) to legs (y) is:
y = x + 2y = ( x + 2 ) / 2 + 2
There’s two sets of wings per back legs except for the last pair of back legs. And then there’s an extra two front legs.
Edited
So x2 = 618 wings
And assuming the ratio of wing to legs 1:2 is still intact. x2 again = 1236 legs
And if ponies are 1 meter long(makes math easier) then there are 308 segments assuming 1 back wing per segment(doesn’t seem to be but since I’m too tired to do better I’ll use this.) and divide by 119m/s
Let me just get a calculator, brb, ok, 308meters/2.588223529seconds
And to convert that into a non math looking ratio, it takes her a little less than 3 seconds to get her whole body running.
I am a dumbass today. Luckily my message is still editable.
And as stated in my previous comment, we were speculating on the basis of a hypothetical length of 20,000 sections (the rough maximum she could attain under the 25MB limit for image s, which would give us an image of over 2 million pixels in width) instead of 154.
Edited
Edited
If the messages move at 119m/s, and she were 119 meters long, it would take 1 second for the message to reach her legs. If she has 40,000 legs, that means she’s 19,999 meters long, which means 168 seconds. Like I said, just short of 3 minutes.
No, it would still take less then a second tell the furthest end, just longer for the muscles to kick in after the message has been sent.
Then it would take around 3 minutes for her to tell her back legs “run” and them to start running (assuming each “body” is 1 mareter long).
@GryphonStar5678
And with a 40,000-legged Rainbow Dash (the approximate number she’d have if she were to fit a 24MB file)?
good to know
@Ereiam
154 section in all gives or take a few so easily under a second. Really you would have to at least double this to see any delay compared to our own and even then not by much.
a standard human nerve signal travels somewhere around 300 meters per second. so if a pony is around 1 meter in length…
well, im not counting.
So still no more than about a second. 🙃
I wonder how long it’d take Rainbow Dash’s rearmost set of limbs to answer her brain’s commands…