241 to 250 of 1,364 Results
Nov 1, 2024 - UiT The Arctic University of Norway
Plotnikov, Timofei, 2024, "Replication Data for: Analyzing GPT-4 Misinterpretations of Russian Grammatical Constructions", https://doi.org/10.18710/8CAPJM, DataverseNO, V1
GPT-4 interpretations of the dataset of 2,227 examples gathered from Russian Constructicon (https://constructicon.github.io/russian/) |
Nov 1, 2024 -
Replication Data for: Analyzing GPT-4 Misinterpretations of Russian Grammatical Constructions
Plain Text - 3.3 KB -
MD5: eff700f4846323e34ed8044d229e41ed
|
Nov 1, 2024 -
Replication Data for: Analyzing GPT-4 Misinterpretations of Russian Grammatical Constructions
Plain Text - 38.4 KB -
MD5: 8a10e0d0b5e448e9e26ec24699796d46
|
Nov 1, 2024 -
Replication Data for: Analyzing GPT-4 Misinterpretations of Russian Grammatical Constructions
Plain Text - 50.8 KB -
MD5: a6171e60122f931c8a289d3bd24f6fdf
|
Nov 1, 2024 -
Replication Data for: Analyzing GPT-4 Misinterpretations of Russian Grammatical Constructions
Plain Text - 184.2 KB -
MD5: cc46c40a7f31d2722c73a1ecf58f68c4
|
Nov 1, 2024 -
Replication Data for: Analyzing GPT-4 Misinterpretations of Russian Grammatical Constructions
Plain Text - 432.1 KB -
MD5: af1fc9d6d7ebac34ac7f735eb24e40b7
|
Nov 1, 2024 -
Replication Data for: Analyzing GPT-4 Misinterpretations of Russian Grammatical Constructions
Plain Text - 469.4 KB -
MD5: 43c8c4b92dce5df9382d0d66acf53ba8
|
Nov 1, 2024 -
Replication Data for: Analyzing GPT-4 Misinterpretations of Russian Grammatical Constructions
Plain Text - 302.5 KB -
MD5: 45e92f15c1b47e2c66b6a0aca6833e0d
|
Nov 1, 2024 -
Replication Data for: Analyzing GPT-4 Misinterpretations of Russian Grammatical Constructions
Plain Text - 85.9 KB -
MD5: 295c52e07f0d54660169709673e852f9
|
Oct 29, 2024 - UiT The Arctic University of Norway
Punnakkal, Abhinanda Ranjit; Jadhav, Suyog S; Celeste, Aaron Vaughn; Horsch, Alexander; Agarwal, Krishna; Prasad, Dilip K, 2024, "3DOSL - 3D Organelle Shape Library for Optical Microscopy", https://doi.org/10.18710/JX6JXF, DataverseNO, V1
This dataset contains individual 3D mitochondria extracted from 3D electron microscopy images in different 3D shape representation formats of meshes, point clouds and implicit shapes. The dataset also includes synthetic microscope images of these shapes. |