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Alexander Heifetz
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2020 – today
- 2024
- [c13]Tianyang Fang, Jafar Saniie, Sasan Bakhtiari, Alexander Heifetz:
Probabilistic Creep Model for Recalibration of Microwave Cavity Flow Meter. EIT 2024: 552-555 - 2023
- [j13]Sarah Scott, Wei-Ying Chen, Alexander Heifetz:
Multi-Task Learning of Scanning Electron Microscopy and Synthetic Thermal Tomography Images for Detection of Defects in Additively Manufactured Metals. Sensors 23(20): 8462 (2023) - [c12]Tianyang Fang, Jafar Saniie, Sasan Bakhtiari, Alexander Heifetz:
Optimization of Microwave Resonant Cavity Flowmeter Design for High Temperature Fluid Sensing Applications. eIT 2023: 419-423 - 2022
- [j12]Xin Zhang, Jafar Saniie, Sasan Bakhtiari, Alexander Heifetz:
Compression of Pulsed Infrared Thermography Data With Unsupervised Learning for Nondestructive Evaluation of Additively Manufactured Metals. IEEE Access 10: 9094-9107 (2022) - [j11]Xin Huang, Jafar Saniie, David Arnold, Tianyang Fang, Alexander Heifetz, Sasan Bakhtiari:
Software-Defined Ultrasonic Communication System With OFDM for Secure Video Monitoring. IEEE Access 10: 47309-47321 (2022) - [j10]Stella Pantopoulou, Victoria Ankel, Matthew T. Weathered, Darius D. Lisowski, Anthonie Cilliers, Lefteri H. Tsoukalas, Alexander Heifetz:
Monitoring of Temperature Measurements for Different Flow Regimes in Water and Galinstan with Long Short-Term Memory Networks and Transfer Learning of Sensors. Comput. 10(7): 108 (2022) - [j9]Stefania Monteleone, Dmitri G. Fedorov, Andrea Townsend-Nicholson, Michelle Southey, Michael J. Bodkin, Alexander Heifetz:
Hotspot Identification and Drug Design of Protein-Protein Interaction Modulators Using the Fragment Molecular Orbital Method. J. Chem. Inf. Model. 62(16): 3784-3799 (2022) - [c11]Maria Pantopoulou, Stella Pantopoulou, Madeleine Roberts, Derek Kultgen, Lefteri H. Tsoukalas, Alexander Heifetz:
Monitoring and Secure Communications for Small Modular Reactors. DDDAS 2022: 144-151 - [c10]Xin Zhang, Jafar Saniie, Sasan Bakhtiari, Alexander Heifetz:
Unsupervised Learning for Detection of Defects in Pulsed Infrared Thermography of Metals. EIT 2022: 330-334 - [c9]Tianyang Fang, Jafar Saniie, Sasan Bakhtiari, Alexander Heifetz:
Frequency Shift Baseline Removal for Improved Flow Measurement using Microwave Cavity Resonator. EIT 2022: 436-439 - 2021
- [j8]Alexander Heifetz, Dmitry Shribak, Sasan Bakhtiari, Igor S. Aranson, Anthony F. Bentivegna:
Qualification of 3-D Printed Mortar With Electrical Conductivity Measurements. IEEE Trans. Instrum. Meas. 70: 1-8 (2021) - [c8]Xin Zhang, Jafar Saniie, Alexander Heifetz:
Spatial Temporal Denoised Thermal Source Separation in Images of Compact Pulsed Thermography System for Qualification of Additively Manufactured Metals. EIT 2021: 209-214 - 2020
- [c7]Xin Zhang, Jafar Saniie, Alexander Heifetz:
Neural Learning Based Blind Source Separation for Detection of Material Defects in Pulsed Thermography Images. EIT 2020: 112-116 - [c6]Xin Huang, Jafar Saniie, Sasan Bakhtiari, Alexander Heifetz:
Contoured PPM-EMAT Design for Ultrasonic Communication On Metallic Pipe Channels. EIT 2020: 206-210
2010 – 2019
- 2019
- [c5]Xin Huang, Jafar Saniie, Sasan Bakhtiari, Alexander Heifetz:
Pulse Shaping and Matched Filters for EMAT Communication System. EIT 2019: 1-4 - [c4]Boyang Wang, Jafar Saniie, Sasan Bakhtiari, Alexander Heifetz:
Ultrasonic Communication Systems for Data Transmission. EIT 2019: 1-4 - 2018
- [j7]Xin Zhang, Jason B. Cross, Jan Romero, Alexander Heifetz, Eric Humphries, Katie Hall, Yuchuan Wu, Sabrina Stucka, Jing Zhang, Haoqun Chandonnet, Blaise Lippa, M. Dominic Ryan, J. Christian Baber:
In-silico guided discovery of novel CCR9 antagonists. J. Comput. Aided Mol. Des. 32(4): 573-582 (2018) - [c3]Boyang Wang, Jafar Saniie, Sasan Bakhtiari, Alexander Heifetz:
Software Defined Ultrasonic System for Communication Through Solid Structures. EIT 2018: 267-270 - [c2]Xin Huang, Jafar Saniie, Sasan Bakhtiari, Alexander Heifetz:
Applying EMAT for Ultrasonic Communication Through Steel Plates and Pipes. EIT 2018: 379-383 - 2017
- [j6]Iñaki Morao, Dmitri G. Fedorov, Roger Robinson, Michelle Southey, Andrea Townsend-Nicholson, Michael J. Bodkin, Alexander Heifetz:
Rapid and accurate assessment of GPCR-ligand interactions Using the fragment molecular orbital-based density-functional tight-binding method. J. Comput. Chem. 38(23): 1987-1990 (2017) - [c1]Alexander Heifetz, Vaikkunth Mugunthan, Lalana Kagal:
Shade: A differentially-private wrapper for enterprise big data. IEEE BigData 2017: 1033-1042 - 2016
- [j5]Alexander Heifetz, Ewa I. Chudyk, Laura Gleave, Matteo Aldeghi, Vadim Cherezov, Dmitri G. Fedorov, Philip C. Biggin, Michael J. Bodkin:
The Fragment Molecular Orbital Method Reveals New Insight into the Chemical Nature of GPCR-Ligand Interactions. J. Chem. Inf. Model. 56(1): 159-172 (2016) - 2013
- [j4]Alexander Heifetz, Oliver Barker, Geraldine Verquin, Norbert Wimmer, Wim Meutermans, Sandeep Pal, Richard Law, Mark Whittaker:
Fighting Obesity with a Sugar-Based Library: Discovery of Novel MCH-1R Antagonists by a New Computational-VAST Approach for Exploration of GPCR Binding Sites. J. Chem. Inf. Model. 53(5): 1084-1099 (2013) - 2012
- [j3]Shaolin Liao, Nachappa Gopalsami, Thomas W. Elmer, Eugene R. Koehl, Alexander Heifetz, Keenan Avers, Eric Dieckman, Apostolos C. Raptis:
Passive Millimeter-Wave Dual-Polarization Imagers. IEEE Trans. Instrum. Meas. 61(7): 2042-2050 (2012) - 2011
- [j2]Shaolin Liao, Nachappa Gopalsami, Alexander Heifetz, Thomas W. Elmer, Peter Fiflis, Eugene R. Koehl, Hual Te Chien, Apostolos C. Raptis:
Microwave Remote Sensing of Ionized Air. IEEE Geosci. Remote. Sens. Lett. 8(4): 617-620 (2011)
2000 – 2009
- 2005
- [j1]Alexander Heifetz, Laura Rylie Ritter, W. E. Olmstead, Volodia A. Volpert:
A numerical analysis of initiation of polymerization waves. Math. Comput. Model. 41(2-3): 271-285 (2005)
Coauthor Index
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last updated on 2024-09-02 01:02 CEST by the dblp team
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