
Qian Ye - San Francisco Bay Area | Professional Profile | LinkedIn
2022年8月1日 · Experienced Research Scientist in Mechanical Engineering with a Ph.D. specializing in computational design and topology optimization. Proficient in MATLAB, Python, …
Qian Ye - Google Scholar
Research Scientist, Palo Alto Research Center (PARC), part of SRI International. International Design Engineering Technical Conferences and Computers and … IUTAM Symposium on When topology...
Qian Ye - Harvard University - United States | LinkedIn
Director, AI Systems Chief Architect, NVIDIA · Specialties: computer graphics, parallel systems, device drivers, computer architecture, deep learning, computer vision, distributed systems ·...
Ye Ai - Google Scholar
Associate Professor, Singapore University of Technology and Design - Cited by 7,240 - Microfluidics - Lab-on-a-chip - Acoustofluidics - Electrokinetics - Single Cell Analysis
Qian Ye - Crown Bioscience | LinkedIn
Expertise in stem cell R&D and cellular therapeutics. · Experience: Crown Bioscience · Education: Mount Sinai Medical Center, CUNY · Location: Warren · 500+ connections on LinkedIn. View Qian...
Prof AiQian Ye - Professor - Massey University
Professor Ye's research focused on physical and chemical characteristics of food components, interactions during processing and digestion. His work was to understand the relationships between structure and functional properties of milk proteins and fat, to investigate the interactions of minerals (calcium and iron) with proteins during ...
Qian Ye | DeepAI
Read Qian Ye's latest research, browse their coauthor's research, and play around with their algorithms
Qian Ye - ACL Anthology
2022 pdf bib abs Qtrade AI at S em E val-2022 Task 11: An Unified Framework for Multilingual NER Task Weichao Gan | Yuanping Lin | Guangbo Yu | Guimin Chen | Qian Ye Proceedings of the 16th International Workshop on Semantic Evaluation (SemEval-2022)
Electrokinetic Particle Transport in Micro-/Nanofluidics
2012年6月19日 · Numerous applications of micro-/nanofluidics are related to particle transport in micro-/nanoscale channels, and electrokinetics has proved to be one of the most promising tools to manipulate particles in micro/nanofluidics. Therefore, a comprehensive understanding of electrokinetic particle transport in micro-/nanoscale channels is crucial to the.
Qian Ye - Google Scholar
PhD student, Tohoku University - Cited by 261 - HDR - image restoration - deep learning
- 某些结果已被删除