Alert button

"Information": models, code, and papers
Alert button

Student-centric Model of Learning Management System Activity and Academic Performance: from Correlation to Causation

Oct 27, 2022
Varun Mandalapu, Lujie Karen Chen, Sushruta Shetty, Zhiyuan Chen, Jiaqi Gong

Figure 1 for Student-centric Model of Learning Management System Activity and Academic Performance: from Correlation to Causation
Figure 2 for Student-centric Model of Learning Management System Activity and Academic Performance: from Correlation to Causation
Figure 3 for Student-centric Model of Learning Management System Activity and Academic Performance: from Correlation to Causation
Figure 4 for Student-centric Model of Learning Management System Activity and Academic Performance: from Correlation to Causation
Viaarxiv icon

Large-Scale Spatial Cross-Calibration of Hinode/SOT-SP and SDO/HMI

Sep 29, 2022
David F. Fouhey, Richard E. L. Higgins, Spiro K. Antiochos, Graham Barnes, Marc L. DeRosa, J. Todd Hoeksema, K. D. Leka, Yang Liu, Peter W. Schuck, Tamas I. Gombosi

Figure 1 for Large-Scale Spatial Cross-Calibration of Hinode/SOT-SP and SDO/HMI
Figure 2 for Large-Scale Spatial Cross-Calibration of Hinode/SOT-SP and SDO/HMI
Figure 3 for Large-Scale Spatial Cross-Calibration of Hinode/SOT-SP and SDO/HMI
Figure 4 for Large-Scale Spatial Cross-Calibration of Hinode/SOT-SP and SDO/HMI
Viaarxiv icon

Answer Generation for Questions With Multiple Information Sources in E-Commerce

Nov 27, 2021
Anand A. Rajasekar, Nikesh Garera

Figure 1 for Answer Generation for Questions With Multiple Information Sources in E-Commerce
Figure 2 for Answer Generation for Questions With Multiple Information Sources in E-Commerce
Figure 3 for Answer Generation for Questions With Multiple Information Sources in E-Commerce
Figure 4 for Answer Generation for Questions With Multiple Information Sources in E-Commerce
Viaarxiv icon

Quantifying Information Leakage from Gradients

May 28, 2021
Fan Mo, Anastasia Borovykh, Mohammad Malekzadeh, Hamed Haddadi, Soteris Demetriou

Figure 1 for Quantifying Information Leakage from Gradients
Figure 2 for Quantifying Information Leakage from Gradients
Figure 3 for Quantifying Information Leakage from Gradients
Figure 4 for Quantifying Information Leakage from Gradients
Viaarxiv icon

Spatiotemporal-Enhanced Network for Click-Through Rate Prediction in Location-based Services

Sep 20, 2022
Shaochuan Lin, Yicong Yu, Xiyu Ji, Taotao Zhou, Hengxu He, Zisen Sang, Jia Jia, Guodong Cao, Ning Hu

Figure 1 for Spatiotemporal-Enhanced Network for Click-Through Rate Prediction in Location-based Services
Figure 2 for Spatiotemporal-Enhanced Network for Click-Through Rate Prediction in Location-based Services
Figure 3 for Spatiotemporal-Enhanced Network for Click-Through Rate Prediction in Location-based Services
Figure 4 for Spatiotemporal-Enhanced Network for Click-Through Rate Prediction in Location-based Services
Viaarxiv icon

Reconfigurable Intelligent Surfaces with Outdated Channel State Information: Centralized vs. Distributed Deployments

Jan 22, 2022
Yan Zhang, Jiayi Zhang, Marco Di Renzo, Huahua Xiao, Bo Ai

Figure 1 for Reconfigurable Intelligent Surfaces with Outdated Channel State Information: Centralized vs. Distributed Deployments
Figure 2 for Reconfigurable Intelligent Surfaces with Outdated Channel State Information: Centralized vs. Distributed Deployments
Figure 3 for Reconfigurable Intelligent Surfaces with Outdated Channel State Information: Centralized vs. Distributed Deployments
Figure 4 for Reconfigurable Intelligent Surfaces with Outdated Channel State Information: Centralized vs. Distributed Deployments
Viaarxiv icon

Value Functions Factorization with Latent State Information Sharing in Decentralized Multi-Agent Policy Gradients

Jan 04, 2022
Hanhan Zhou, Tian Lan, Vaneet Aggarwal

Figure 1 for Value Functions Factorization with Latent State Information Sharing in Decentralized Multi-Agent Policy Gradients
Figure 2 for Value Functions Factorization with Latent State Information Sharing in Decentralized Multi-Agent Policy Gradients
Figure 3 for Value Functions Factorization with Latent State Information Sharing in Decentralized Multi-Agent Policy Gradients
Figure 4 for Value Functions Factorization with Latent State Information Sharing in Decentralized Multi-Agent Policy Gradients
Viaarxiv icon

ERNIE-Layout: Layout Knowledge Enhanced Pre-training for Visually-rich Document Understanding

Add code
Bookmark button
Alert button
Oct 12, 2022
Qiming Peng, Yinxu Pan, Wenjin Wang, Bin Luo, Zhenyu Zhang, Zhengjie Huang, Teng Hu, Weichong Yin, Yongfeng Chen, Yin Zhang, Shikun Feng, Yu Sun, Hao Tian, Hua Wu, Haifeng Wang

Figure 1 for ERNIE-Layout: Layout Knowledge Enhanced Pre-training for Visually-rich Document Understanding
Figure 2 for ERNIE-Layout: Layout Knowledge Enhanced Pre-training for Visually-rich Document Understanding
Figure 3 for ERNIE-Layout: Layout Knowledge Enhanced Pre-training for Visually-rich Document Understanding
Figure 4 for ERNIE-Layout: Layout Knowledge Enhanced Pre-training for Visually-rich Document Understanding
Viaarxiv icon

That's the Wrong Lung! Evaluating and Improving the Interpretability of Unsupervised Multimodal Encoders for Medical Data

Add code
Bookmark button
Alert button
Oct 12, 2022
Denis Jered McInerney, Geoffrey Young, Jan-Willem van de Meent, Byron Wallace

Figure 1 for That's the Wrong Lung! Evaluating and Improving the Interpretability of Unsupervised Multimodal Encoders for Medical Data
Figure 2 for That's the Wrong Lung! Evaluating and Improving the Interpretability of Unsupervised Multimodal Encoders for Medical Data
Figure 3 for That's the Wrong Lung! Evaluating and Improving the Interpretability of Unsupervised Multimodal Encoders for Medical Data
Figure 4 for That's the Wrong Lung! Evaluating and Improving the Interpretability of Unsupervised Multimodal Encoders for Medical Data
Viaarxiv icon

TriangleNet: Edge Prior Augmented Network for Semantic Segmentation through Cross-Task Consistency

Add code
Bookmark button
Alert button
Oct 12, 2022
Dan Zhang, Rui Zheng

Figure 1 for TriangleNet: Edge Prior Augmented Network for Semantic Segmentation through Cross-Task Consistency
Figure 2 for TriangleNet: Edge Prior Augmented Network for Semantic Segmentation through Cross-Task Consistency
Figure 3 for TriangleNet: Edge Prior Augmented Network for Semantic Segmentation through Cross-Task Consistency
Figure 4 for TriangleNet: Edge Prior Augmented Network for Semantic Segmentation through Cross-Task Consistency
Viaarxiv icon