621 to 630 of 4,807 Results
Gzip Archive - 183.8 MB -
MD5: 4a013fd1e93787ed4f73769ecc09666f
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Gzip Archive - 148.6 MB -
MD5: 24f41be9364b02e527b6cb1207dc5843
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Gzip Archive - 172.0 MB -
MD5: b16f30173e310742bf7a618c9652b0f8
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Aug 8, 2024 -
Code and Data for: Better by default: Strong pre-tuned MLPs and boosted trees on tabular data
ZIP Archive - 1.1 MB -
MD5: e4e6f5dca291e6c59f5135ab1a1d63a8
Code for running the Grinsztajn. et al (2022) benchmark with our models. |
Aug 8, 2024 -
Code and Data for: Better by default: Strong pre-tuned MLPs and boosted trees on tabular data
Gzip Archive - 87.2 MB -
MD5: 04efd949409a882d3fb3c18371d451fa
Results on the Grinsztajn et al. (2022) benchmark. |
Aug 8, 2024 -
Code and Data for: Better by default: Strong pre-tuned MLPs and boosted trees on tabular data
ZIP Archive - 6.9 MB -
MD5: 80e03d81f1beb8a2173d5c38da4f493c
Contains the code for running the meta-train and meta-test benchmarks, as well as an implementation of the models evaluated on these benchmarks. Also contains instructions in README.md as well as the documentation. |
Aug 1, 2024 -
DuMux 3.9.0
Gzip Archive - 34.5 MB -
MD5: f3b595fd425b58d7b7f507cc3129a231
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Jul 31, 2024 -
Source Code: A Chemistry Load Balancing Model for OpenFOAM
Gzip Archive - 3.5 MB -
MD5: 06d6b0710cc09b5495ea31f29e7d4139
Compressed tar archive of the Git code repository.
Decompress with tar -xf loadBalancedChemisty-v2306.tar.gz |
Jul 29, 2024 -
In situ micro-XRCT data set of an open-cell polyurethane foam sample under uniaxial compression load
Gzip Archive - 1.5 GB -
MD5: 391f9c331c8bcb3f6c4517dbd6946b3a
Projection images (360 deg, angle increment 0.25 deg), dark image (di) and open beam image (ob) in 16 bit *.tif file format. Uniaxial compression 0 mm. |
Jul 29, 2024 -
In situ micro-XRCT data set of an open-cell polyurethane foam sample under uniaxial compression load
Gzip Archive - 780.8 MB -
MD5: e250b1d79f2807fa668c7b5638b637f9
Reconstructed micro-XRCT data set of "t0_projections.tar.gz" in 16 bit *.tif file format. 972x972x711 voxel, uniform voxel size of 74.8 µm. Uniaxial compression 0 mm. |