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``GB_code`` uses the analytical and mathematical formulations of the following works [@Sutton:1996, @Bollmann:1982, @Grimmer]. Some functionality from this code [@Marcin] on CSL has been used in a modified form in the ``GB_code``.
### Statement of need:
``GB_code`` is an interactive toolbox to learn about grain boundaries and it is versatile for running high-throughput calculations. The target audience are students/scientists of materials science and physics at any level of familiarity with the topic. To our knowledge, due to the extensive usage of Python NumPy library, ``GB_code`` is faster than the existing python codes for GB generations. The user will be guided through in a step by step manner how to find and create the GB of interest. The code has been designed to be simple to use and instructive with a special attention to GB plane orientation which is often lacking in other grain boundary creation codes.
``GB_code`` is an interative toolbox to learn about grain boundaries and it is versatile for running high-throughput calculations. The target audience are students/scientists of materials science and physics at any level of familiarity with the topic. Extensive use of NumPy library in GB_code results in faster execution, especially when computing large structures. The user will be guided through in a step by step manner how to find and create the GB of interest. The code has been designed to be simple to use and instructive with a special attention to GB plane orientation which is often lacking in other grain boundary creation codes.
# Acknowledgements
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