Hi there! Our forums are not currently accepting new account registrations. We primarily use our discord server these days so be sure to check it out to interact with the community!
I'm gonna say yer the expert on these things (cause despite everything I still dislike guns in general) and so how would the final parts I didn't calculate factor in to things, and also what would you think the coilgun aspect would add to the calculations?
Begin information dump
from the wiki
Barrett
Originally posted by wiki
Muzzle velocity
853 m/s (2,799 ft/s)
Effective range
1,800 m (1,969 yd)
Coilgun
Originally posted by wiki
Adjustable yet smooth acceleration of the projectile throughout the barrel can allow somewhat higher velocity, with a predicted range increase of 30% for a 120mm EM mortar over the conventional version of similar length. With no separate propellant charges to load, the researchers envision the firing rate to approximately double.[14][15]
Speed of sound
343.2 m/s
Initial margin:
the bullet from the muzzle is traveling
853 m/s = 1908.10666 miles / hour = 2798.55643 feet / second
which means
853-343=510m/s faster than sound
510 m/s = 1140.83751 miles / hour or 1673.22835 feet / second faster than sound.
the bullet of just the barrett can travel about 9.3 football fields in a second
the effective range is 1800 m, about 18 football fields, therefore it takes 2.1 seconds to reach a target.
in 2.1 seconds, the sound wave of the gun firing would be 2.1 seconds * (343 meters / second) = 720.3 meters away from the source, 1079.7 meters away from the target.
now the only thing left would be...
the "bubble" around the bullet, which I doubt would give anyone enough preliminary warning to dodge it cause you have to take reaction time and the speed in which your body moves and how far it would take to move out of the way and thus the reaction time + the time it would take to move out of the way.
Then there's muzzle flash...
And I just realized that a coilgun wouldn't do much to these calculations except increase muzzle velocity ever so slightly since it reduces friction.
now I just gotta make sure that I stop myself here so I study =w=
Also the Zelda arc will be interesting since I would think there would come a point where characters of Hyrule will start to phase into the real world. It would be like we're controlling the characters as the Horizon project initiated. This could lead to some interesting things...
shoot...
uhm maybe its just game worlds she initially was able to...
........hrm
this is an interesting set up...
it might be best to say she could only travel in the Zelda universe?
Also...I thought of this...
LoZ: FSA had a concept similar to what I just thought of and LoZ: TP could draw a similar parallel, but FSA has the better example.
people in FSA were disappearing to a sort of shadow realm (been too long since I last played) We could create a similar concept where people in Hyrule are disappearing...to the real world.
And I'm going to crunch some numbers on snipers...
first...
I gotta figure out the muzzle velocity of a
and then
the muzzle velocity of any sort of "rail gun" (or anything similar such as the coilgun on such a scale)
then I gotta brush off some physics and make sure when I relate it to the speed of sound or anything about the bullet that might give any sort of preliminary warning, I don't do something strange.
of course my initial knowledge says that it would be next to humanly impossible for a sniper round to give off any warning as it would be traveling faster than sound. I just want to calculate how large of a margin is it with the modification of adding something like the coilgun concept onto a barrett.
And I want to hit every point as to prevent any "loose ends".
Begin information dump
from the wiki
Barrett
Muzzle velocity
853 m/s (2,799 ft/s)
Effective range
1,800 m (1,969 yd)
Coilgun
on this scale, unknown
Speed of sound
343.2 m/s
Initial margin:
the bullet from the muzzle is traveling
853 m/s = 1908.10666 miles / hour = 2798.55643 feet / second
which means
853-343=510m/s faster than sound
510 m/s = 1140.83751 miles / hour or 1673.22835 feet / second faster than sound.
the bullet of just the barrett can travel about 9.3 football fields in a second
the effective range is 1800 m, therefore it takes 2.1 seconds to reach a target.
in 2.1 seconds, the sound wave of the gun firing would be 2.1 seconds * (343 meters / second) = 720.3 meters away from the source, 1079.7 meters away from the target.
now the only thing left would be...
the "bubble" around the bullet, which I doubt would give anyone enough preliminary warning to dodge it cause you have to take reaction time and the speed in which your body moves and how far it would take to move out of the way and thus the reaction time + the time it would take to move out of the way.
Then there's muzzle flash...
And an edit I didn't edit is the fact that I don't think the concept of having a coilgun modification would really add to the calculations, but I would want yer opinions on what would be possible.
Comment