New update!
S&P 500 (^GSPC) - Financial Analysis - VI
#financial #python #stock
Posts by barqueira
New update!
S&P 500 (^GSPC) - Financial Analysis - V
#financial #python #stock
You can find more information about the S&P 500 Financial Analysis (^GSPC) on my blog: lbarqueira.github.io
#financial #stock #sp500 #python #analysis #Bollinger #macd #rsi #TechnicalAnalysis #Montecarlo
S&P 500 (^GSPC) Financial Analysis
#financial #stock #sp500 #python #analysis #Bollinger #macd #rsi #TechnicalAnalysis #Montecarlo
Thank you π
Thank you.
Love it. Any code to share?
Roots of complex polynomial
Inspired by βͺthe work of @sconradi.bsky.social
#MathArt #Python #CodeArt #SciArt #CreativeCoding #Math
Bem engraΓ§ado.
My bear phase.
#CorgiCrew #DogsOfBluesky #corgisky #corgi #photography #photo
Father and son in complete harmony.
#CorgiCrew #DogsOfBluesky #corgisky #corgi #photography #photo
π
π
π
π
It sounds great.
Yes, It is done with Python.
π
Exploring the roots of an 18th-degree complex polynomial x^18βx^17+(100it1^5β100it1^4+100it1^3β100it1^2β100t1+100i)Β·x^10+(β100it2^4β100it2^3+100it2^2+100it2+100)Β·x^6β0.1 x+0.1 where tβ,tβ are complex numbers on the unit circle. z-axis and color encode Im(t1).
Roots of complex polynomial
Inspired by βͺthe work of @sconradi.bsky.social
#MathArt #Python #CodeArt #SciArt #CreativeCoding #Math
Ria Formosa, Santa-Luzia, #Tavira, #Algarve, #Portugal
July, 2025
#photography, #photo
It is beautiful.
Exploring the chaotic beauty of Hopalong Attractors. Each of these nine images is generated from a different set of parameters, showing the incredible variety of patterns that emerge.
#MathArt #Python #CodeArt #SciArt #CreativeCoding #Math
Visualizing Laplace Eigenfunctions on a Circular Domain
These vibrational patterns emerge from solving the eigenvalue problem for the discrete Laplacian matrix.
#MathArt #Python #CodeArt #SciArt #CreativeCoding #Math
Photo taken by my youngest son of our great bud.
#Photography
Visualizing the roots of:
xβΉ + 3xβ· + (β25ππ‘βΒ² β25ππ‘β +75π)xβ΅ β4x β50π‘β β50π
where π‘β, π‘β are random points on the complex unit circle
750,000 (π‘β,π‘β) pairs β 6.75 million roots
Color maps Im(π‘β) using a psychedelic rainbow gradient
#MathArt #Python #CodeArt #SciArt #CreativeCoding #Math
π
Visualizing roots of::
(-15iΒ·tβΒ² -15iΒ·tβ +15i)xβ· + 3xβΆ -100tβ -100i
where tβ, tβ are complex numbers with |tβ±Ό|=1.
Key to the plot:
β’ βοΈ x/y: Root's real/imaginary parts
β’ βοΈ z: Imaginary part of tβ
β’ π΅βπ΄ Colors: Im(tβ) from -1 (blue) to +1 (red)
#MathArt #Python #CodeArt #SciArt #CreativeCoding #Math