Showing 3 open source projects for "band structure"

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    Smarter Packing Decisions for Retailers and 3PLs

    Paccurate is an API-first cartonization solution.

    Paccurate is the only patented cartonization solution that optimizes for transportation costs directly. So you can have the right boxes, and control how they're packed.
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  • Tool Tracking Made Simple Icon
    Tool Tracking Made Simple

    Use Phones to Track Tools - A simple app to turn your phone into a tool tracker.

    ShareMyToolbox is a tool tracking solution that enables companies to track individuals who are responsible for tools and small equipment. Mobile users are able to search the company tool inventory, request tools and accept tool assignments with Apple or Android devices such as phones or tablets. Built for contractors, the system was designed to be extremely easy to use.
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  • 1
    VASPKIT
    ...Generate KPOINTS, POTCAR and INCAR for a given POSCAR file; 2. Elastic-constants using stress-strain or energy-strain methods; 3. Equation-of-state fitting; 4. Suggested k-paths for a given crystal structure; 5. Optical adsorption coefficient; 6. Band structure unfolding; 7. Fermi surface; 8. Density-of-states and band-structure; 9. Charge/spin density, Charge density difference; 10. Vacuum level and work function; 11. Wave-function analysis; 12. Molecular-dynamics analysis; 13. Effective mass of carrier; 14. Symmetry finding and operations; 15. 3D band structures; More details can be found in its official website https://vaspkit.com.
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    Downloads: 654 This Week
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  • 2
    Python library to perform electronic structure calculations with tight binding models in different types of lattices and different dimensionalities. It allows to include different terms in the Hamiltonian as sublattice, exchange field or magnetic field. Provides functions to calculate different Green functions, band structure, density of states, transport using Landauer formula, topological invariants, etc.
    Downloads: 0 This Week
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  • 3
    graphene-like-ribbons

    graphene-like-ribbons

    Calculate electronic properties of graphene-like nanoribbons

    User friendly interface for calculating electronic properties in graphene-like ribbons. The programs uses the tight binding approximation and mean field Hubbard model to predict electronic properties of graphene-like nanoribbons. See Discussion to ask questions or details Update: New versions of this program will be known as quantum-honeycomp
    Downloads: 0 This Week
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