eigenvalues
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Statistical and Algorithmic Investing Strategies for Everyone
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Jul 30, 2022 - Python
Lecture Notes for Linear Algebra Featuring Python. This series of lecture notes will walk you through all the must-know concepts that set the foundation of data science or advanced quantitative skillsets. Suitable for statistician/econometrician, quantitative analysts, data scientists and etc. to quickly refresh the linear algebra with the assis…
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Sep 5, 2024 - Jupyter Notebook
Linear algebra, eigenvalues, FFT, Bessel, elliptic, orthogonal polys, geometry, NURBS, numerical quadrature, 3D transfinite interpolation, random numbers, Mersenne twister, probability distributions, optimisation, differential equations.
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Apr 8, 2025 - Go
LAPACK development repository
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Jul 10, 2025 - Fortran
A header-only C++ library for large scale eigenvalue problems
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Jun 29, 2025 - C++
V library to develop Artificial Intelligence and High-Performance Scientific Computations
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Jul 8, 2025 - V
Krylov methods for linear problems, eigenvalues, singular values and matrix functions
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Jun 8, 2025 - Julia
Rust Scientific Libary. ODE and DAE (Runge-Kutta) solvers. Special functions (Bessel, Elliptic, Beta, Gamma, Erf). Linear algebra. Sparse solvers (MUMPS, UMFPACK). Probability distributions. Tensor calculus.
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Jul 4, 2025 - Rust
PReconditioned Iterative MultiMethod Eigensolver for solving symmetric/Hermitian eigenvalue problems and singular value problems
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Nov 8, 2024 - C
C++ Matrix -- High performance and accurate (e.g. edge cases) matrix math library with expression template arithmetic operators
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Apr 5, 2024 - C++
The Arnoldi Method with Krylov-Schur restart, natively in Julia.
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May 6, 2024 - Julia
This Repository contains Solutions to the Quizes & Lab Assignments of the Mathematics for Machine Learning Specialization offered by Imperial College of London on Coursera taught by David Dye, Samuel J. Cooper, A. Freddie Page, Marc Peter Deisenroth
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Sep 23, 2023 - Jupyter Notebook
A C++ library for solving second-quantized Hamiltonians
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Jul 27, 2024 - C++
PyTorch implementation comparison of old and new method of determining eigenvectors from eigenvalues.
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Nov 3, 2021 - Jupyter Notebook
Nonlinear eigenvalue problems in Julia: Iterative methods and benchmarks
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Feb 26, 2024 - Julia
Numerical computation in native Haskell
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Aug 21, 2020 - Haskell
R Interface to the Spectra Library for Large Scale Eigenvalue and SVD Problems
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Jul 21, 2024 - C++
Pure Python implementation of the finite difference frequency domain (FDFD) method for electromagnetics
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Nov 5, 2018 - Jupyter Notebook
SLICOT - A Fortran subroutines library for systems and control
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May 6, 2025 - Fortran
Autodiff is a numerical library for the Go programming language that supports automatic differentiation. It implements routines for linear algebra (vector/matrix operations), numerical optimization and statistics
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Dec 8, 2021 - Go
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