https://x.com/ValorINTEL/status/1769819851445436685?s=20
Stupid wins, maybe try it in your shit region!
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Registered: | June 5, 2021 |
Last post: | September 21, 2024 at 8:07 PM |
Posts: | 6299 |
https://x.com/ValorINTEL/status/1769819851445436685?s=20
Stupid wins, maybe try it in your shit region!
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yall remember that good ol faze clan invitational?
sen have time to review their loud loss and learn from it and lev did not look great
sen have a good chance
jeez it's map 1 and we lost 13-11 not like we got absolutely fucked
sacy sova bounce back game gonna hit like crack
yep. not so confident going into ascent tho
well see what happens
tenz lookin like prime shahzam out there
we are SO BACK
goddamn first time back in a month and the site's toxicity is the exact same
can i get an update on everything valorant comp and patch wise from november to now?
thanks lads
how much are you trying to spend?
armani acqua di gio absolu is a little sweet fresh and woody (one of my favorites)
versace dylan blue / versace eros
bentley for men intense
noir extreme is a great pick if you got the money for it
if you're getting ysl, get the y edp intense version. REALLY GOOD buy
hardcore
i hate this year of school but ill push through fr
got 0.71 for 2, which was correct
thanks so much
Now with that in mind, the force of static friction is acting on the object in the first part of the problem when the system is at rest. ΞΌ(s)F(N) = m1 g ΞΌ(s) = 54.88 N. On the right side, the force of gravity only acts upon m2 (mass of string/pulley negligible). F(g m2) = m2 g = 44.1 N. Since F(static friction on m1) > F(g m2), the entire system will remain at rest with no acceleration (The system does not accelerate to the left even if the force on the left is greater than the right because friction is not a force that accelerates an object FROM rest, rather it accelerates an object TO rest.)
So even with the static friction coefficient, there is no acceleration? This would make the answer 0 for the first part then, right?
The second part of the problem now deals with kinetic friction, which again only acts upon m1 after m2 is stated to be accelerated downwards by some external force. Now use Newton's 2nd Law again. Fnet = ma. You try figuring out the forces this time for the left hand side (hint: there are two forces). It is also important to note here that on the right hand side, 'm' is the mass of the entire system (both blocks, string mass negligible) because the entire system is going to accelerate from rest, not just one of the blocks. Add the masses of the blocks together and solve for acceleration when done with the force calculations.
Could you solve this one out? I am still not understanding
but good music is rap/hiphop :(
ill give you non rap songs from rap artists
sundress - asap rocky
sandman - asap rocky
pride - kendrick lamar
moon - kanye west
stop trying to be god - travis scott
jungle - drake
teenage fever - drake
passionfruit - drake
lot of smart and nice people that usually help