bggcohomology


Namebggcohomology JSON
Version 1.6.1 PyPI version JSON
download
home_pagehttps://github.com/RikVoorhaar/bgg-cohomology
SummaryTools for the BGG complex
upload_time2020-08-01 12:38:31
maintainer
docs_urlNone
authorRik Voorhaar
requires_python
license
keywords sagemath mathematics flag-varieties representation-theory algebra
VCS
bugtrack_url
requirements No requirements were recorded.
Travis-CI No Travis.
coveralls test coverage No coveralls.
            ## bgg-cohomology

This is an implementation of a computer algorithm to compute the BGG resolution and its cohomology of a Verma module. 

You can find the documentation for this package right here:
https://bgg-cohomology.readthedocs.io/en/latest/

## Installation

After installing `sage` run the following command:

```
    sage -pip install git+https://github.com/RikVoorhaar/bgg-cohomology.git
```

In MacOS and linux this should run just fine. When using Windows,
make sure to run this command from the Sagemath Shell.

To open the `.ipynb` files in the `computations` and `examples` folders, you need to
first of all clone this repository. Then you can either launch `Sagemath Notebook` (on Windows) or run the following in the command line:

```
    sage -n
```

## Usage

There is a basic tutorial of how to use this module in the `examples` directory. 
Furthermore the `computations` directory contains notebooks with the code we used
for the results in our preprint. 

## Credit
All the code has been written by **Rik Voorhaar**. 
 Additional credit goes to **Nicolas Hemelsoet** for many aspects of the algorithm implemented here.
 This work has been partially financially supported by **NCCR SwissMAP**. 

This software is free to use and edit. When using this software for academic purposes, please cite 
the following preprint: https://arxiv.org/abs/1911.00871



            

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    "description": "## bgg-cohomology\n\nThis is an implementation of a computer algorithm to compute the BGG resolution and its cohomology of a Verma module. \n\nYou can find the documentation for this package right here:\nhttps://bgg-cohomology.readthedocs.io/en/latest/\n\n## Installation\n\nAfter installing `sage` run the following command:\n\n```\n    sage -pip install git+https://github.com/RikVoorhaar/bgg-cohomology.git\n```\n\nIn MacOS and linux this should run just fine. When using Windows,\nmake sure to run this command from the Sagemath Shell.\n\nTo open the `.ipynb` files in the `computations` and `examples` folders, you need to\nfirst of all clone this repository. Then you can either launch `Sagemath Notebook` (on Windows) or run the following in the command line:\n\n```\n    sage -n\n```\n\n## Usage\n\nThere is a basic tutorial of how to use this module in the `examples` directory. \nFurthermore the `computations` directory contains notebooks with the code we used\nfor the results in our preprint. \n\n## Credit\nAll the code has been written by **Rik Voorhaar**. \n Additional credit goes to **Nicolas Hemelsoet** for many aspects of the algorithm implemented here.\n This work has been partially financially supported by **NCCR SwissMAP**. \n\nThis software is free to use and edit. When using this software for academic purposes, please cite \nthe following preprint: https://arxiv.org/abs/1911.00871\n\n\n",
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