units
monte-carlo
units | monte-carlo | |
---|---|---|
1 | - | |
94 | 39 | |
- | - | |
5.3 | 0.0 | |
3 months ago | about 5 years ago | |
Haskell | Haskell | |
BSD 3-clause "New" or "Revised" License | BSD 3-clause "New" or "Revised" License |
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units
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Frink is a programming language designed to make physical calculations simple
It seems to me that Haskell would be a great language for such a thing, ensuring correctness at compile time through the type system, e.g. using the units package https://hackage.haskell.org/package/units https://github.com/goldfirere/units/tree/master/units
It even has nice features like: "The laws of nature have dimensions, and they hold true regardless of the units used. For example, the gravitational force between two bodies is (gravitational constant) * (mass 1) * (mass 2) / (distance between body 1 and 2)^2, regardless of whether the distance is given in meters or feet or centimeters. In other words, every law of nature is unit-polymorphic."
"The units package supports unit-polymorphic programs ..."
monte-carlo
We haven't tracked posts mentioning monte-carlo yet.
Tracking mentions began in Dec 2020.
What are some alternatives?
smtlib2 - SMTLib2 interface implementation for Haskell
nimber - Finite nimber arithmetic
polynomial - Haskell library for manipulating and evaluating polynomials
conjugateGradient - Sparse matrix linear equation solver, using the Conjugate Gradient algorithm
uncertain - Manipulating numbers with inherent measurement/experimental uncertainty.
RANSAC - Haskell implementation of the RANSAC algorithm.
dimensional - Dimensional library variant built on Data Kinds, Closed Type Families, TypeNats (GHC 7.8+).
computational-algebra - General-Purpose Computer Algebra System as an EDSL in Haskell
matrix - A Haskell native implementation of matrices and their operations.
dimensions - Many-dimensional type-safe numeric ops
hgeometry - HGeometry is a library for computing with geometric objects in Haskell. It defines basic geometric types and primitives, and it implements some geometric data structures and algorithms. The main two focusses are: (1) Strong type safety, and (2) implementations of geometric algorithms and data structures that have good asymptotic running time guarantees.
diagrams-solve - Miscellaneous solver code for diagrams (low-degree polynomials, tridiagonal matrices)