Showing 2 open source projects for "zapcat-1.2"

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  • The Rewards as a Service (RaaS®) API is a robust digital gift card API built to power rewards and incentives in today’s apps and platforms. Icon
    We're the rewards and payments people. We bundle easy-to-use technology, desirable rewards, and expert service to help companies get the most out of their reward and incentive programs—from customer loyalty and employee engagement to wellness and research participation. With our leading reward-delivery technology, customers can instantly deliver digital gift cards to their recipients, maximizing impact and driving real business results.
  • The software that empowers your board, from a name you trust. Icon
    The software that empowers your board, from a name you trust.

    For businesses in all industries interested in an enterprise governance software for boards and leadership teams

    Nasdaq Boardvantage helps directors, committees, and leadership teams be better prepared, engaged, and aligned in their collaboration and decision-making processes. Plus, our board portal makes it easier than ever for corporate secretaries and administrators to manage meetings, build agendas, and distribute materials
  • 1
    n-chinese-remainders

    n-chinese-remainders

    chinese remainder theorem - progressive solving, n-soln, extras

    "chinese remainder" solves a system of equations over modulus quickly. crtwo is an improvement to Mathematica's release. crtwo: solves Chinese Remainder a pair at a time, (uses gcd), yet is still fast. Which means crtwo, unlike text book soln, uses an algorithm to solve or fail one mod equation at a time. showing win or fail of each eqn and solving other sawtooth intersections is possible, due to that. crAll2@crtwo provides n soln near x for CR using width of soln crchart3...
    Downloads: 3 This Week
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  • 2

    FaRe

    Mathematica package for tensor reduction of Feynman integrals.

    Version 1.2 is now available! This version is compatible with FeynCalc 9.0 FaRe is a Mathematica package for tensor reduction of Feynman integrals. The integral can be any-rank and any-order. Dimensional reduction is used and the final output is regrouped according to tensor structures. FaRe requires FeynCalc to work. Please refer to http://arxiv.org/abs/1507.03527 for a detailed manual. If you use FaRe in a scientific publication or talk, please give proper academic credit by citing...
    Downloads: 0 This Week
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