Message from @jeremy

Discord ID: 569267038070112261


2019-04-20 21:01:17 UTC  

The ball falls faster

2019-04-20 21:01:22 UTC  

yes

2019-04-20 21:01:29 UTC  

cuz it has a higher mass

2019-04-20 21:01:32 UTC  

And the significance of that?

2019-04-20 21:01:36 UTC  

idk

2019-04-20 21:01:46 UTC  

it means there's a force at play here

2019-04-20 21:01:47 UTC  

he says flat earth model has no gravity ?

2019-04-20 21:01:52 UTC  

why did it drop faster

2019-04-20 21:02:01 UTC  

cuz it has a higher mass

2019-04-20 21:02:10 UTC  

and if you don't know already

2019-04-20 21:02:17 UTC  

f=Gm1m2/d2

2019-04-20 21:02:43 UTC  

the higher the mass, the higher the pull and tidal force, the higher the velocity/acceleration

2019-04-20 21:02:47 UTC  

if u take a balloon that weighs 50 pouns and fill it with helium it has more mass than both of them and it doesnt fall at all though

2019-04-20 21:02:53 UTC  

50 pound balloon

2019-04-20 21:03:07 UTC  

it'd drop

2019-04-20 21:03:15 UTC  

the helium balloon ?

2019-04-20 21:03:31 UTC  

yeah wait no cuz

2019-04-20 21:03:38 UTC  

it has more mass than the feather and ball

2019-04-20 21:03:39 UTC  

well to put it simply

2019-04-20 21:03:54 UTC  

gravity is the weakest force in the universe

2019-04-20 21:03:58 UTC  

wait

2019-04-20 21:04:08 UTC  

density is stronger than it

2019-04-20 21:04:10 UTC  

u just told me the ball drops faster cause it has more mass

2019-04-20 21:04:15 UTC  

yes

2019-04-20 21:04:19 UTC  

That hypothesis predicts that phenomenon. And no, gravitation doesn't predict that the ball falls faster because of higher mass. Remember inertia cancels it out to equal acceleration in a vaccuum.

2019-04-20 21:04:28 UTC  

also cuz its denser than air

2019-04-20 21:04:43 UTC  

oh sht

2019-04-20 21:04:44 UTC  

so the density of the ball and the feather matter

2019-04-20 21:04:56 UTC  

yeah

2019-04-20 21:04:58 UTC  

u said it was just mass

2019-04-20 21:04:59 UTC  

And it does not prove a globe, it only affirms one of its predictions

2019-04-20 21:05:17 UTC  

but there's also the aristotle experiment

2019-04-20 21:05:21 UTC  

wait

2019-04-20 21:05:27 UTC  

i can tell you it

2019-04-20 21:05:33 UTC  

hang on a sec

2019-04-20 21:05:38 UTC  

ait

2019-04-20 21:05:51 UTC  

f=Gm1m2/d2 where is density in th is

2019-04-20 21:06:18 UTC  

m1 and m2 are mass

2019-04-20 21:06:43 UTC  

that calculates gravitation's force on them

2019-04-20 21:07:26 UTC  

there's also density which plays a role, the stuff its made out of

2019-04-20 21:07:31 UTC  

like many things