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May 16, 2019

Riemann Hypothesis

https://www.youtube.com/watch?v=VTveQ1ndH1c

https://github.com/danerf/Riemann-zeta

How mpmath implemented Zeta Function:

http://mpmath.org/doc/current/functions/zeta.html

https://kite.com/python/docs/mpmath.zeta

https://mpmath.readthedocs.io/en/latest/functions/

Another implementation:

https://github.com/guisf/riemann_zeta

Study of primes:

https://github.com/selvinsource/study-distribution-primes

https://github.com/danerf/Riemann-zeta 

 https://github.com/guisf/riemann_zeta

https://arxiv.org/pdf/1402.0865.pdf 

 https://arxiv.org/pdf/1511.04289.pdf 

http://www.lmfdb.org/EllipticCurve/Q/?conductor=1-99 

http://www.lmfdb.org/L/degree2/ 

http://www.lmfdb.org/
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Apr 23, 2019

Evan Chen • Problems & Solutions

http://web.evanchen.cc/problems.html
No comments:

Mar 22, 2019

Mirror Symmetry

https://www.claymath.org/library/monographs/cmim01c.pdf
No comments:

Dirichlet Branes and Mirror Symmetry

http://www.claymath.org/library/monographs/cmim04.pdf
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Mar 2, 2019

The Schrödinger Equation for the Hydrogen Atom: A generalization

This is a two-body problem (diatomic molecule) and formulation of the problem is possible:

https://chem.libretexts.org/Courses/University_of_California_Davis/UCD_Chem_110A%3A_Physical_Chemistry_I/Text/06%3A_The_Hydrogen_Atom/6.01%3A_The_Schrodinger_Equation_for_the_Hydrogen_Atom_Can_Be_Solved_Exactly

And its solution is using Spherical Harmonics:

http://mathworld.wolfram.com/SphericalHarmonic.html

So how about 3-body, or n-body system?

How complexity creeps in arising from n-bodies to n-1 bodies interaction?

https://gereshes.com/2018/05/07/what-is-the-n-body-problem/   

https://www.youtube.com/watch?v=09iTidqkriw  (very good video on the history)

and the github for the codes mentioned above is here:

https://github.com/winsmith/n-body-problem

Complex, but simulation is possible:

https://jheer.github.io/barnes-hut/  (this is interactive)

https://en.wikipedia.org/wiki/N-body_simulation

https://arxiv.org/abs/astro-ph/0503600 

 https://www.americanscientist.org/article/the-100-billion-body-problem

https://sites.math.washington.edu/~morrow/336_13/papers/peter.pdf 

http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.762.6900&rep=rep1&type=pdf 

http://users.wfu.edu/choss/CUDA/docs/Lecture%2012.pdf 

http://www.math.harvard.edu/archive/118r_spring_05/handouts/nbody.pdf 

https://www.cs.cmu.edu/~guyb/realworld/nbody.html 

https://www.math.arizona.edu/~dwang/485home-10/N-body.pdf
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Feb 12, 2019

The Golden Ratio

http://assets.press.princeton.edu/chapters/s8446.pdf

http://jwilson.coe.uga.edu/EMAT6450/Class%20Projects/Foy/goldenratio.pdf

https://bib.irb.hr/datoteka/658280.215-FP.pdf

https://www.ias.ac.in/article/fulltext/reso/022/01/0051-0060

https://www.ijera.com/papers/Vol6_issue8/Part-%204/A0608040107.pdf

https://www.math.cuhk.edu.hk/~pschan/uged1533/markowsky.pdf

https://www.math.ust.hk/~machas/fibonacci.pdf


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Jan 3, 2019

Abstract Algebraic Topology

https://www.maths.ed.ac.uk/~v1ranick/papers/maybook.pdf

https://www.math.uni-hamburg.de/home/schweigert/ss16/atskript.pdf

http://www.math.nus.edu.sg/~matwujie/ma5209.pdf

http://www.mit.edu/~sanathd/main.pdf

http://www.pdmi.ras.ru/~olegviro/topoman/e-part1.pdf

http://www.pdmi.ras.ru/~olegviro/topoman/e-part2.pdf

http://www.pdmi.ras.ru/~olegviro/topoman/e-part3.pdf


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