Sort by
Refine Your Search
-
Category
-
Country
-
Employer
- Nanyang Technological University
- National University of Singapore
- University of Oslo
- Indiana University
- University of Cincinnati
- University of Denver
- Center for Drug Evaluation and Research (CDER)
- European Space Agency
- Hong Kong Polytechnic University
- INESC TEC
- Seoul National University
- Tampere University
- UCL;
- UNIVERSITY OF SURREY
- UiT The Arctic University of Norway
- University of Beira Interior
- University of California
- University of Michigan
- University of Otago
- University of Surrey
- University of Sussex;
- University of Sydney
- University of Warwick;
- Villanova University
- Zintellect
- 15 more »
- « less
-
Field
-
research group with expertise spanning theory and experiment. The investigators work closely to realize practical quantum computing devices by developing noise-resilient, resource-efficient quantum
-
): Develop ML-assisted Hamiltonian discovery/engineering methods for multimode bosonic and hybrid quantum systems (including open-system and non-Hermitian effects). Design noise-resilient control and
-
: None Environmental conditions: (any unusual/adverse conditions such as exposure to chemicals, noise, illumination, air quality, weather exposure etc.): None Physical requirements: (items such as lifting
-
to 3 Hours Loud noise levels - Occasional Up to 3 Hours Marked changes in humidity or temperature - Occasional Up to 3 Hours Microwave/Radiation - Never 0 Hours Operating motor vehicles and/or equipment
-
, the definition of performance metrics, and the execution of comparative studies to assess aspects such as recognition accuracy, robustness to noise and other adverse conditions, generalization capability across
-
of Norway, focusing on the development of soft hairy surfaces for flow control and vibration-based soft robots. The overarching goal is to develop a new understanding of fluid flows coupled to complex and
-
project needs): Develop ML-assisted Hamiltonian discovery/engineering methods for multimode bosonic and hybrid quantum systems (including open-system and non-Hermitian effects). Design noise-resilient
-
polarized 3He lab, a dilution refrigerator, and a vibration isolated lab for weak force measurement. The laboratory possesses infrastructure on a scale which enables us to make major hardware contributions
-
Implementing Bayesian networks and uncertainty quantification techniques to account for sensor noise and model confidence limits Designing, training, and fine-tuning computer vision models to extract clinically
-
, control of exoskeletons, PFOS exposure and menopause, noise measurements and hearing loss, extreme heat and emergency preparedness, air monitoring instrumentation and applications, community-based research