Metadata-Version: 2.1
Name: clifford
Version: 1.3.0.dev1
Summary: Numerical Geometric Algebra Module
Home-page: http://clifford.readthedocs.io
Author: Robert Kern
Maintainer: Alex Arsenovic
Maintainer-email: alexarsenovic@gmail.com
License: bsd
Project-URL: Bug Tracker, https://github.com/pygae/clifford/issues
Project-URL: Source Code, https://github.com/pygae/clifford
Platform: UNKNOWN
Classifier: Intended Audience :: Science/Research
Classifier: Topic :: Scientific/Engineering :: Mathematics
Classifier: License :: OSI Approved :: BSD License
Classifier: Programming Language :: Python :: 3
Classifier: Programming Language :: Python :: 3.5
Classifier: Programming Language :: Python :: 3.6
Classifier: Programming Language :: Python :: 3.7
Classifier: Programming Language :: Python :: 3.8
Requires-Python: >=3.5
Description-Content-Type: text/markdown
Requires-Dist: numpy
Requires-Dist: scipy
Requires-Dist: numba (>0.46)
Requires-Dist: h5py
Requires-Dist: sparse

[clifford](http://clifford.readthedocs.org/en/latest/): Geometric Algebra for Python
=========================================================

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`clifford` is a numerical Geometric Algebra (a.k.a. Clifford algebra) package for python.

- **Documentation:** http://clifford.readthedocs.org
- **Source code:** https://github.com/pygae/clifford
- **Bug reports:** https://github.com/pygae/clifford/issues

Geometric Algebra (GA) is a universal algebra which among several other independent mathematical systems, subsumes:
* Complex numbers
* Quaternions
* Linear algebra

Scalars, vectors, and higher-grade entities can be mixed freely and consistently in the form of mixed-grade multivectors. Like this, 

![Visual explanation of blades](https://raw.githubusercontent.com/pygae/clifford/master/docs/_static/blades.png)


Quickstart
----------

Try out a notebook in [binder](https://mybinder.org/v2/gh/pygae/clifford/master?filepath=examples%2Fg3c.ipynb)

Or have a go on your own pc:
```python
from clifford.g3 import *  # import GA for 3D space
from math import e, pi
a = e1 + 2*e2 + 3*e3 # vector 
R = e**(pi/4*e12)    # rotor 
R*a*~R    # rotate the vector  
```

Syntax Summary
----------

| Syntax  | Operation |
|:-:|:-:|
| \| |  Symetric inner product |
| << |  Left contraction |
|  ^ | Outer product  |
| *  |  Geometric product |
| X\(i\)  |  Return the section of the multivector X of grade i |
| X\(ei\)  |  Return the section of the multivector X for which ei is the pseudo scalar |
| X\[i\]  | Return the i'th coefficient from the multivector X
| X.normal() | Return the normalised multivector so that X*~X is +- 1 |

---

For installation instructions, api documention, and tutorials, [head over to our documentation](https://clifford.readthedocs.io/)!


