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Titlebook: Numerical Methods for Diffusion Phenomena in Building Physics; A Practical Introduc Nathan Mendes,Marx Chhay,Denys Dutykh Textbook 2019 Spr

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Numerical Methods for Diffusion Phenomena in Building PhysicsA Practical Introduc
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re presented, which might be considered in the next generation of building-energy-simulation tools. In this reviewed edition, an innovative way to simulate energy and hydrothermal performance are presented, bringing some light on innovative approaches in the field.978-3-030-31576-4978-3-030-31574-0
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Nathan Mendes,Marx Chhay,Julien Berger,Denys Dutykht of sharp kitchen knives” – it can perform various jobs very well, but laymen risk stabbing themselves in the process. This highlights the necessity of a usable design even for tools targeted at experienced users (Supplementary material available at .).
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first large universe instantiation of SPE to achieve adaptive security without random oracle. Both our constructions have efficient decryption function suggesting their practical applicability. Thus the primitives like WIBE and ABE resulting through black-box transformation of our constructions become more practical.
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Nathan Mendes,Marx Chhay,Julien Berger,Denys Dutykhlletin board used as a broadcast channel to contact the anonymous committee that holds the keys needed to decrypt the identity connected to the credential. This mechanism makes the user de-anonymization publicly auditable.
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lletin board used as a broadcast channel to contact the anonymous committee that holds the keys needed to decrypt the identity connected to the credential. This mechanism makes the user de-anonymization publicly auditable.
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Nathan Mendes,Marx Chhay,Julien Berger,Denys Dutykh experiments illustrate that the speed-up of constant-time CSURF-512 with radical isogenies is reduced to about 3% in comparison to the fastest state-of-the-art constant-time CSIDH-512 implementation. The performance is worse for larger primes, as radical isogenies scale worse than Vélu isogenies.
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r notion called ., and extend prior work to show that a standard domain extender used in ECVRF satisfies this notion, in both the classical and quantum settings. This final contribution is of independent interest and we believe it should be applicable elsewhere.
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