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SMath Studio is a freeware (free of charge, but not libre), closed-source, mathematical notebook program similar to Mathcad. It is available for Windows, Linux, iOS, Android, Universal Windows Platform, and on some handhelds. Among its capabilities are: Solving differential equations; Graphing functions in two or three dimensions;
Smath Studio: SMath LLC (Andrey Ivashov) 2006 1.0.8348 11 September 2022: Free Creative Commons Attribution-NoDerivs (CC-BY-ND) Mathematical notebook program, similar to Mathcad, with support for Plugins (e.g. Maxima plugin available) Sysquake: Calerga: 1998 6.5 December 2019: free, $2500 (Pro, commercial), $1000 (Pro, academic) Proprietary
This page was last edited on 10 December 2024, at 15:28 (UTC).; Text is available under the Creative Commons Attribution-ShareAlike 4.0 License; additional terms may apply.
The following tables provide a comparison of computer algebra systems (CAS). [1] [2] [3] A CAS is a package comprising a set of algorithms for performing symbolic manipulations on algebraic objects, a language to implement them, and an environment in which to use the language.
I Like Pumpkins is an illustrated book for young children written and illustrated by children's book author Jerry Smath in which a young girl vividly describes her fondness for pumpkins at Halloween. The book is written in rhyming text and includes five pages of pumpkin-related games and puzzles. [1]
Maxima (/ ˈ m æ k s ɪ m ə /) is a powerful software package for performing computer algebra calculations in mathematics and the physical sciences. It is written in Common Lisp and runs on all POSIX platforms such as macOS, Unix, BSD, and Linux, as well as under Microsoft Windows and Android.
SageMath (previously Sage or SAGE, "System for Algebra and Geometry Experimentation" [3]) is a computer algebra system (CAS) with features covering many aspects of mathematics, including algebra, combinatorics, graph theory, group theory, differentiable manifolds, numerical analysis, number theory, calculus and statistics.
Macaulay2 is built around fast implementations of algorithms useful for computation in commutative algebra and algebraic geometry. This core functionality includes arithmetic on rings, modules, and matrices, as well as algorithms for Gröbner bases, free resolutions, Hilbert series, determinants and Pfaffians, factoring, and similar.