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Institution

Bauhaus University, Weimar

EducationWeimar, Thüringen, Germany
About: Bauhaus University, Weimar is a education organization based out in Weimar, Thüringen, Germany. It is known for research contribution in the topics: Finite element method & Isogeometric analysis. The organization has 1421 authors who have published 2998 publications receiving 104454 citations. The organization is also known as: Bauhaus-Universität Weimar & Hochschule für Architektur und Bauwesen.


Papers
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Journal ArticleDOI
TL;DR: This study presents the implementation procedures of a staggered scheme for phase field fracture of elasto-plastic solids in commercial finite element software Abaqus using subroutines UEL and UMAT, which exhibit good agreement with the experimental observations and numerical results in literature.

73 citations

Book ChapterDOI
01 Jan 2006
TL;DR: This work states that an overlap of two documents’ fingerprints indicate a possibly plagiarized text passage, and uses MD5 hashes to construct fingerprints to identify matching passages.
Abstract: Existing methods to text plagiarism analysis mainly base on “chunking”, a process of grouping a text into meaningful units each of which gets encoded by an integer number. Together theses numbers form a document’s signature or fingerprint. An overlap of two documents’ fingerprints indicate a possibly plagiarized text passage. Most approaches use MD5 hashes to construct fingerprints, which is bound up with two problems: (i) it is computationally expensive, (ii) a small chunk size must be chosen to identify matching passages, which additionally increases the effort for fingerprint computation, fingerprint comparison, and fingerprint storage.

72 citations

Journal ArticleDOI
TL;DR: In this paper, the authors investigated the properties of a new two-dimensional graphene like material, crystalline carbon nitride with the stoichiometry of C3N and showed that larger cracks and notches reduce the strength of the nanosheets.

72 citations

Journal ArticleDOI
01 Jan 2019-Carbon
TL;DR: In this article, the authors employed extensive first-principles simulations to investigate the mechanical/failure, thermal stability, electronic and optical properties of single-layer graphdiyne nanosheets.

72 citations

Book ChapterDOI
25 Sep 2017
TL;DR: Gimli is presented, a 384-bit permutation designed to achieve high security with high performance across a broad range of platforms, including 64-bit Intel/AMD server CPUs, 64- bit and 32-bit ARM smartphone CPUs, 32- bit ARM microcontrollers, 8-bit AVR micro Controllers, FPGAs, ASICs without side- channel protection, and ASICs with side-channel protection.
Abstract: This paper presents Gimli, a 384-bit permutation designed to achieve high security with high performance across a broad range of platforms, including 64-bit Intel/AMD server CPUs, 64-bit and 32-bit ARM smartphone CPUs, 32-bit ARM microcontrollers, 8-bit AVR microcontrollers, FPGAs, ASICs without side-channel protection, and ASICs with side-channel protection.

72 citations


Authors

Showing all 1443 results

NameH-indexPapersCitations
Timon Rabczuk9972735893
Adri C. T. van Duin7948926911
Paolo Rosso5654112757
Xiaoying Zhuang5427110082
Benno Stein533409880
Jin-Wu Jiang521757661
Gordon Wetzstein512589793
Goangseup Zi451538411
Bohayra Mortazavi441625802
Thorsten Hennig-Thurau4412317542
Jörg Hoffmann402007785
Martin Potthast401906563
Pedro M. A. Areias381075908
Amir Mosavi384326209
Guido De Roeck382748063
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202321
202260
2021224
2020249
2019247
2018273