Alert button
Picture for Challenger Mishra

Challenger Mishra

Alert button

Learning to be Simple

Add code
Bookmark button
Alert button
Dec 08, 2023
Yang-Hui He, Vishnu Jejjala, Challenger Mishra, Max Sharnoff

Viaarxiv icon

Mathematical conjecture generation using machine intelligence

Add code
Bookmark button
Alert button
Jun 12, 2023
Challenger Mishra, Subhayan Roy Moulik, Rahul Sarkar

Figure 1 for Mathematical conjecture generation using machine intelligence
Figure 2 for Mathematical conjecture generation using machine intelligence
Figure 3 for Mathematical conjecture generation using machine intelligence
Figure 4 for Mathematical conjecture generation using machine intelligence
Viaarxiv icon

A physics-informed search for metric solutions to Ricci flow, their embeddings, and visualisation

Add code
Bookmark button
Alert button
Nov 30, 2022
Aarjav Jain, Challenger Mishra, Pietro Liò

Figure 1 for A physics-informed search for metric solutions to Ricci flow, their embeddings, and visualisation
Figure 2 for A physics-informed search for metric solutions to Ricci flow, their embeddings, and visualisation
Figure 3 for A physics-informed search for metric solutions to Ricci flow, their embeddings, and visualisation
Figure 4 for A physics-informed search for metric solutions to Ricci flow, their embeddings, and visualisation
Viaarxiv icon

Machine Learned Calabi--Yau Metrics and Curvature

Add code
Bookmark button
Alert button
Nov 17, 2022
Per Berglund, Giorgi Butbaia, Tristan Hübsch, Vishnu Jejjala, Damián Mayorga Peña, Challenger Mishra, Justin Tan

Figure 1 for Machine Learned Calabi--Yau Metrics and Curvature
Figure 2 for Machine Learned Calabi--Yau Metrics and Curvature
Figure 3 for Machine Learned Calabi--Yau Metrics and Curvature
Figure 4 for Machine Learned Calabi--Yau Metrics and Curvature
Viaarxiv icon

Machine Learning for Optical Motion Capture-driven Musculoskeletal Modeling from Inertial Motion Capture Data

Add code
Bookmark button
Alert button
Sep 28, 2022
Abhishek Dasgupta, Rahul Sharma, Challenger Mishra, Vikranth H. Nagaraja

Figure 1 for Machine Learning for Optical Motion Capture-driven Musculoskeletal Modeling from Inertial Motion Capture Data
Figure 2 for Machine Learning for Optical Motion Capture-driven Musculoskeletal Modeling from Inertial Motion Capture Data
Figure 3 for Machine Learning for Optical Motion Capture-driven Musculoskeletal Modeling from Inertial Motion Capture Data
Figure 4 for Machine Learning for Optical Motion Capture-driven Musculoskeletal Modeling from Inertial Motion Capture Data
Viaarxiv icon

Neural Network Approximations for Calabi-Yau Metrics

Add code
Bookmark button
Alert button
Jan 27, 2021
Vishnu Jejjala, Damian Kaloni Mayorga Pena, Challenger Mishra

Figure 1 for Neural Network Approximations for Calabi-Yau Metrics
Figure 2 for Neural Network Approximations for Calabi-Yau Metrics
Figure 3 for Neural Network Approximations for Calabi-Yau Metrics
Figure 4 for Neural Network Approximations for Calabi-Yau Metrics
Viaarxiv icon

Baryons from Mesons: A Machine Learning Perspective

Add code
Bookmark button
Alert button
Mar 23, 2020
Yarin Gal, Vishnu Jejjala, Damian Kaloni Mayorga Pena, Challenger Mishra

Figure 1 for Baryons from Mesons: A Machine Learning Perspective
Figure 2 for Baryons from Mesons: A Machine Learning Perspective
Figure 3 for Baryons from Mesons: A Machine Learning Perspective
Figure 4 for Baryons from Mesons: A Machine Learning Perspective
Viaarxiv icon

Machine Learning CICY Threefolds

Add code
Bookmark button
Alert button
Jul 31, 2018
Kieran Bull, Yang-Hui He, Vishnu Jejjala, Challenger Mishra

Figure 1 for Machine Learning CICY Threefolds
Figure 2 for Machine Learning CICY Threefolds
Figure 3 for Machine Learning CICY Threefolds
Figure 4 for Machine Learning CICY Threefolds
Viaarxiv icon