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/sci/ - Science & Math


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File: 11 KB, 319x241, equations.jpg [View same] [iqdb] [saucenao] [google]
2832400 No.2832400 [Reply] [Original]

What's /sci/'s favourite equation?

>> No.2832402

1 nigger + 3 niggers = niggers everywhere

>> No.2832409

>>2832402
So edgy and dark.

>> No.2832414

>>2832400
Nice dubs bro.

>> No.2832418

x=x

>> No.2832419

x+x=2x

>> No.2832421

Ohm's Law, just cuz

>> No.2832427

<span class="math"> 1 + 1 = 3 [/spoiler]

>> No.2832432

inb4 euler's identity

>> No.2832438
File: 93 KB, 268x265, 1282593773644.jpg [View same] [iqdb] [saucenao] [google]
2832438

>>2832432

euler's identity

What now bitch?

>> No.2832448
File: 11 KB, 264x191, anteater.jpg [View same] [iqdb] [saucenao] [google]
2832448

obviously Pythagoras the basis for so much shit

>> No.2832463

It has to be <span class="math">F_9001 = F_9000 + F-8999[/spoiler].

>> No.2832540

>>2832463

What does it MEAN

>> No.2832546

.999999999...=1

Suck on that math.

>> No.2832557

1+1=10

>> No.2832556

pythagorean theorem is probably the most important equation ever

>> No.2832572

>>2832556
8th grader detected

>> No.2832584
File: 23 KB, 500x501, Mariah_Carey-E_MC2.jpg [View same] [iqdb] [saucenao] [google]
2832584

This because good album.

>> No.2832591 [DELETED] 

I'm a fan of the gamma function, <span class="math">\gamma (z)[/spoiler]

>> No.2832596

I'm a fan of the gamma function, <span class="math">\Gamma (z)=(z-1)![/spoiler]

>> No.2832597

sin^2(t) + cos^2 (t) = 1

Shit blew my mind yo.

>> No.2832598

<span class="math">sqrt{a^2+b^2}=c^2[/spoiler]

>> No.2832604

euler identity ftw

>> No.2832608

a^n + b^n = c^n

Because no one can touch that shit.

>> No.2832609

>>2832596
>doesn't know the difference between an equation and a function

>> No.2832618

>>2832597
pythagorean theorem blows your mind?

>> No.2832628

Ga, just to spite you all:

<div class="math">
V(t) = V_{in}(t) \exp\left({- \frac{R}{L} (t - t)}\right) \frac{dt}{dt} - 0 +
\int_{-\infty}^t{ \frac{\partial}{\partial t} \left[V_{in}(\tau) \exp\left({- \frac{R}{L} (t - \tau)}\right) \right] }
[\eqn]</div>

>> No.2832629

OP=FAG

>> No.2832634

I'll just leave this here...

<div class="math">
V(t) = V_{in}(t) \exp\left({- \frac{R}{L} (t - t)}\right) \frac{dt}{dt} - 0 +
\int_{-\infty}^t{ \frac{\partial}{\partial t} \left[V_{in}(\tau) \exp\left({- \frac{R}{L} (t - \tau)}\right) \right] }
</div>

>> No.2832644

>>2832608
i did the proof for that when i was 11