11 to 20 of 243 Results
Jul 17, 2025 -
Replication Data for: Concept and Development of a Novel Timber Spring for Impact Sound Reduction in Timber Floor Slabs
Adobe PDF - 82.5 KB -
MD5: d66933b0eab177654ccf2598a4d1b9fc
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Jul 17, 2025 -
Replication Data for: Concept and Development of a Novel Timber Spring for Impact Sound Reduction in Timber Floor Slabs
Adobe PDF - 80.3 KB -
MD5: 7adf13d7ab43f8f916842b00acf4c6cd
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Jul 17, 2025 -
Replication Data for: Concept and Development of a Novel Timber Spring for Impact Sound Reduction in Timber Floor Slabs
Adobe PDF - 93.1 KB -
MD5: ba0a54449b79276909980123431ab342
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Jul 17, 2025 -
Replication Data for: Concept and Development of a Novel Timber Spring for Impact Sound Reduction in Timber Floor Slabs
Adobe PDF - 31.8 KB -
MD5: 67865a30872e81e633c423509a875cdb
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Jul 17, 2025 -
Replication Data for: Concept and Development of a Novel Timber Spring for Impact Sound Reduction in Timber Floor Slabs
Adobe PDF - 38.4 KB -
MD5: 2068acdf100f636e46b36c5479cf747b
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Jun 5, 2025 - ABxM Framework for Agent-based Modeling and Simulation
Nguyen, Long; Schwinn, Tobias; Groenewolt, Abel; Maierhofer, Mathias; Zorn, Max Benjamin; Stieler, David; Siriwardena, Lasath; Kannenberg, Fabian; Menges, Achim, 2022, "ABxM.Core: The Core Libraries of the ABxM Framework", https://doi.org/10.18419/DARUS-2994, DaRUS, V5
The ABxM.Core consists of the agent core library ABxM.Core and an interoperability library for Rhino 7 and later versions. ABxM.Core implements the functionality specific to agent-based modelling and simulation. The core library can, in principle, be referenced from any application that is compatible with McNeel’s Rhino.Inside technology. ABxM.Core... |
Jun 5, 2025 -
ABxM.Core: The Core Libraries of the ABxM Framework
ZIP Archive - 7.4 MB -
MD5: 69640fa696c81c93398350afb98da032
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Jun 5, 2025 -
ABxM.Core: The Core Libraries of the ABxM Framework
application/vnd.ms-htmlhelp - 519.1 KB -
MD5: 10923118dea9f1d0b341d9249add8ab9
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Nov 29, 2024 - FabFramework
Opgenorth, Nils, 2024, "FabFramework.Core: Task-Based Robotic Fabrication Framework", https://doi.org/10.18419/DARUS-4600, DaRUS, V1
FabFramework is designed around a Task-Based Fabrication methodology, which transforms digital design models into sequential, data-driven robotic tasks. This approach ensures precise fabrication operations through simulation and predefined parameters, following a three-step process. The framework begins with the Design layer, where the user design... |
Nov 29, 2024 -
FabFramework.Core: Task-Based Robotic Fabrication Framework
ZIP Archive - 30.2 MB -
MD5: e62ec07d4611b56151be9bcb669f3c1f
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