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/jp/ - Otaku Culture


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11149246 No.11149246[DELETED]  [Reply] [Original]

Would you differentiate or integrate her?

>> No.11149248

*ziiiiip*

>> No.11149256

I'd find her limit at the origin

>> No.11149253

Where's the punch it option?

>> No.11149254

I would impregnate her.

>> No.11149266

>>11149246
Differentiate, since the boobs are located where the rate of change is 0.

>> No.11149272
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11149272

I'd let Vector-chan find my perpendicular vector

>> No.11149273

differentiate
so i can lie tangent to her curves

>> No.11149288
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11149288

Someone differentiate cubic function-chan please

>> No.11149294

Differentiate, because I can never remember all those fucking integration rules.

>> No.11149340
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11149340

Looks like Differential-chan is very popular!

>> No.11149345

>>11149266
What boobs?

>> No.11149352
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11149352

>>11149340
I would find her lower absolute minimum if you know what I mean.

>> No.11149356

Whatever is nicer I guess. I don't know what those words mean I'm dumb.

>> No.11149377
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11149377

>> No.11149391
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11149391

integrate, I want to evaluate the area under those curves

>> No.11149399
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11149399

>>11149266
>>11149345
Please dont bully trigonometric-chan

>> No.11149415
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11149415

I would convolve her body with my chinko to make her smooth, if you catch my drift!

>> No.11149409

what's all this nerd crap?

>> No.11149417
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11149417

I wish she was real ;_;

>> No.11149423

NEEEEEEEEEEEEEEEEEEEEEEEEEERRRRRRRDDDDDDDDDSS

>> No.11149427
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11149427

Probability-chan

>> No.11149443
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11149443

Circumference-chan doesn't even mind if you are negative

>> No.11149466
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11149466

Quadratic function-chan and her childhood friend linear function-chan

>> No.11149477
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11149477

>>11149417
I think to be more properly she should be drawn invisible or together with her negative ego -i and as a observer you don't know which one of them is i and which one -i. Because in math i ist just a root of the polynomial X^2+1 and not a specific one.

>> No.11149489

>>11149477
Yes, she should be with her conjugate

>> No.11149493

Where is matrix chan?

>> No.11149499
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11149499

Modulus chan is always positive!

>> No.11149521
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11149521

Logarithm chan and Exponential chan

>> No.11149531

>>11149499
That's not true, in modulus-3-chans world the element 2 (mod 3) would be negative, since 2+1 (mod 3) is zero, so 2 = -1 (mod 3)

>> No.11149534
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11149534

I want to find the domain of her breast!

>> No.11149560
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11149560

If there's no "divide by zero"~chan yet Nue could take the place.

>> No.11149555
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11149555

>>11149531
the fuck are you talking
sequence-chan will beat the shit out of you

>> No.11149578

Are the teacher/principal/etcetera roles taken by mathematicians? Fermat, Euler, Fibbonaci..

>> No.11149583
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11149583

>>11149555
no bully pls

>> No.11149584

>>11149560
 ∧_∧   
( ´∀`) < Nuerupo?

>> No.11149663

How is this even a thing? My mind is completely blown.

>> No.11149716

I'm gona nickname my dick lambda calculus.

>> No.11149742

>>11149716
Why?

>> No.11149750

>>11149742
Sounds edgy & cool.

>> No.11149754

>>11149750
Ok.

>> No.11149870

>>11149415
I like you haha

If I was given the choice, I'd semidirect-product her, we'd be a couple and I would morph myself into her.

>>11149663
you mean unusable yet beautiful ? neat !

>>11149466
it should be the whole family of polynomial function, with linear fun-chan being quadratic's little sister

>> No.11150088

I'm π/2 ;_;

>> No.11150169

>>11149531
What the hell are you talking about? 2%3 = 2

>> No.11150210

>>11150088
You're two little uppercase T's divided by 2?

>> No.11150263

>>11150169
(-1)%3=2

>> No.11150447

>>11149521
but they are exactly the opposite

>> No.11150456

>>11149427
worst subject

>> No.11150459

>>11149288
>>11149466
I want to take their roots, if you know what I mean

>> No.11150468 [DELETED] 
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11150468

x=1/2cosθ, y = 2sinθ, 0<θ<pi

Someone tell me how to put this is in cartesian coords onegai.

>> No.11150472
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11150472

x=1/2cosθ, y = 2sinθ, 0<θ<pi

Someone tell me how to make this a cartesian equation onegai.

>> No.11150503

>>11150472
>x
>y
What? This is already a cartesian equation

>> No.11150539

>>11150503
No, there's a theta there which is defined in polar coordinates (0 > pi).

Cartesian would be purely x and y.

>> No.11150719

>>11150539
insert your theta, Joshua

>> No.11150731

integrate

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