Sort by
Refine Your Search
-
, including the design, modeling, fabrication, and testing. Fabrication will be done in the NIST state-of-the-art clean room. Emphasis will be placed on developing stochastic spiking systems, reservoir
-
measurement assurance to support the control and rational design of biological function. Through state of the art synthetic biology, automation, and machine learning, the Group creates living measurement
-
environments. Research opportunities focus on various aspects of the instrumentation design, development, testing, and measurement applications. A particular focus is on phased array antennas, radio frequency
-
: algorithm design for the interpretation of measurements, designing algorithms for deciding which experiments to perform, communicating with the instruments, orchestrating the steps of the research campaign
-
stages, advanced motion control, and instrument system integration. Research opportunities are available in the areas of design and analysis of MEMS sensors and actuators, micro- and nanofabrication, and
-
of Magnetic Resonance,2018). Recent work includes design and fabrication of a metamaterial microresonator for EPR spectroscopy of sub-nanoliter volume samples (Abhyankar et al. Science Advances2020). Future
-
technologies to manipulate biological macromolecules such as DNA, and the controlled degradation of tissue engineering scaffold or drug delivery materials. To optimize performance and to design new applications
-
with high-speed and energy-efficient InP and GaN chips. This research opportunity at NIST’s Communications Technology Laboratory is focused building the tools and techniques that are required to design
-
for device design using new materials, and for the continued developement of materials-by-design. We are developing new broadband impedance measurements of thin-film materials and devices in order to address
-
Engineering Group works to provide a foundation of measurement assurance to support the control and rational design of biological function. Through state of the art synthetic biology, automation, and machine