Wavefunction and Wigner phase-space distribution for a quantum harmonic oscillator. It just rotates at constant speed, as with classical mechanics
But for non-quadratic potential, such as pendulum type dynamics, the distribution spreads out and generates interference patterns
24.02.2026 03:21
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hadn't really appreciated that the cross term is doing this, until I looked more closely at the visualization
19.02.2026 16:10
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The visualization is interesting
Superposition of 2 gaussians has oscillating cross term. Cancels if you integrate along X or P direction
joint x-p direction, parallel to the troughs, cross term won't cancel
Instead it cancels with the gaussians to give diffraction pattern for X-P
19.02.2026 16:10
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in quantum physics position X and momentum P canβt be simultaneously measured.
But, linear combinations aX+bP π’π³π¦ observable, and their distributions can be used to back out the joint X,P probability density.
The Wigner distribution
but, it is πΈπ¦πͺπ³π₯
19.02.2026 13:05
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β’ gamma function
β’ Wigner quasiprobabilities
β’ fractional Fourier transforms
β’ Mistakes in probability (historical)
β’ Itoβs lemma
β’ Randomness in number theory
β’ clickbait math, actually surprisingly interesting
β’ probability doesnβt exist!
which YT vid you want to see next?
16.02.2026 13:40
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bsky.app/profile/almo...
14.02.2026 16:11
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The Joy of Coupling
YouTube video by Almost Sure
New YouTube video posted
βThe Joy of Couplingβ
Happy Valentineβs Day!
youtu.be/rpW2ZYtXn6o?...
14.02.2026 16:11
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YouTube video coming up tomorrow, on my channel, especially for Valentineβs Day!
βThe Joy of Couplingβ
watch this spaceβ¦
13.02.2026 18:48
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just invented perpetual motion
27.01.2026 21:33
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I remember doing this stuff before. The coupon collectors problem. Could compute exactly and approximate, or approximate using a Poisson process from the start.
27.01.2026 14:50
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something something Gumbel something
27.01.2026 14:45
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Youβre probably familiar with Fourier transforms. But, did you know that it can be viewed as a 90Β° rotation in the time-frequency domain and we can rotate by any angle via fractional Fourier transform.
Explains why applying FT twice gives reflection (rotation by 180Β°).
12.01.2026 13:57
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The Producers by Mel Brooks
22.01.2026 12:46
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Inaugural Board of Peace meeting is under way
22.01.2026 10:58
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Hey US-Americans, can you just give Trump Alaska? He wonβt know the difference and might keep him quiet for a bit
21.01.2026 16:01
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βagain! again!β
18.01.2026 21:08
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OTOH, if things have gone wrong, and you have to use the slide, is it bad form to ask for another go?
18.01.2026 21:07
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βdo you even lift bro?β
18.01.2026 20:56
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#QOTD
βI never said even a fraction of the shit thatβs ascribed to meβ
β π΄πππππ‘ πΈπππ π‘πππ
18.01.2026 15:15
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that was sister sledge
17.01.2026 11:06
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Woke up to this sight
16.01.2026 20:26
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hey everyone!
I won the knowbell prize!
16.01.2026 16:14
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Kids are really cute when theyβre at that age where they havenβt yet worked out that giving you their snack means less for them
16.01.2026 15:49
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Just cross off the last digit and take twice the last digit from whatβs left
butβ¦I usually combine with ad hoc techniques. Likeβ¦oh the number ends in 3, so add 7 and cross off the final 0.
15.01.2026 11:49
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never mind, was just responding but it went away so I posted anyway. obvs a silly reply but you answered my question
14.01.2026 16:38
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hey @johnbull.wtf you canβt just post this and delete it!
14.01.2026 16:34
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A second hand yacht? Really? How poor do they think we are?
14.01.2026 16:30
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so how hard are these ErdΓΆs problems anyway?
14.01.2026 16:24
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Land line
analogue tape
analogue clock
real life
13.01.2026 23:40
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it would be interesting to check exactly what happens if you do fractional FT to your two functions, then multiply and transform back. I expect convolution combined with a complex exponential exp(iaxy)
12.01.2026 14:32
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