moving-averages VS equational-reasoning

Compare moving-averages vs equational-reasoning and see what are their differences.

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moving-averages equational-reasoning
- -
3 51
- -
0.0 7.1
about 7 years ago 7 days ago
Haskell Haskell
MIT License BSD 3-clause "New" or "Revised" License
The number of mentions indicates the total number of mentions that we've tracked plus the number of user suggested alternatives.
Stars - the number of stars that a project has on GitHub. Growth - month over month growth in stars.
Activity is a relative number indicating how actively a project is being developed. Recent commits have higher weight than older ones.
For example, an activity of 9.0 indicates that a project is amongst the top 10% of the most actively developed projects that we are tracking.

moving-averages

Posts with mentions or reviews of moving-averages. We have used some of these posts to build our list of alternatives and similar projects.

We haven't tracked posts mentioning moving-averages yet.
Tracking mentions began in Dec 2020.

equational-reasoning

Posts with mentions or reviews of equational-reasoning. We have used some of these posts to build our list of alternatives and similar projects.

We haven't tracked posts mentioning equational-reasoning yet.
Tracking mentions began in Dec 2020.

What are some alternatives?

When comparing moving-averages and equational-reasoning you can also consider the following projects:

linear - Low-dimensional linear algebra primitives for Haskell.

continued-fractions - Haskell library for manipulating and evaluating continued fractions

lambda-calculator - An introduction to the Lambda Calculus

ad - Automatic Differentiation

optimization - Some numerical optimization methods implemented in Haskell

matrix - A Haskell native implementation of matrices and their operations.

nimber - Finite nimber arithmetic

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.

cf - "Exact" real arithmetic for Haskell using continued fractions (Not formally proven correct)

units - The home of the units Haskell package