170 structures "https:" "https:" "https:" "https:" "https:" "https:" "Imperial College London" positions at NIST in United States
Sort by
Refine Your Search
-
energies determined by molecular composition, structure, and vibrational mode type. Various optical methods exist to record these vibrational spectra, enabling access to the rich chemical landscape within
-
for the high-throughput simulation of adsorption isotherms in nanoporous solids. References Cockayne E, Wong-Ng W, Chen YS, Culp JT, Allen AJ: Density Functional Theory Study of the Structure of the Pillared
-
Structural Systems Division opportunity location 50.73.11.B4445 Gaithersburg, MD NIST only participates in the February and August reviews. Advisers name email phone Li-Piin Sung lipiin@nist.gov 301.975.6737
-
(particle stabilized) emulsions for particle-interface adhesion strength, MW characterization of extended or structured polymers for organic electronics in organic solvents, characterization of interfacial
-
structure and the electronic response to external stimuli. We seek to understand nanoscale variations in conductivity by leveraging our existing capabilities in AFM-based microwave impedance microscopy (sMIM
-
diagnostics of plasmas with an x-ray free electron laser. key words Atomic spectroscopy; Atomic structure; Highly-charged ions; Collisional-radiative modeling; Atomic collisions; Plasma spectroscopy; Atomic
-
balance between the choices of mathematical approximation, computer architecture, data structures, and other factors-a balance crucial to the solution of many applications-driven problems. key words
-
for characterization (higher-order structure MS methods, top down sequencing, peptide mapping, glycoanalysis, PTM’s, size/charge heterogeneity), stability and associated phenomena (aggregation, accelerated stability
-
structure-mechanical property relationships are needed to enable diverse applications of these materials. There is a need for quantitative measurement methods to study the interfacial properties of the filler
-
pool properties, material cooling rates, material grain structure, and the mechanical properties of bulk parts. These models attempt to resolve a variety of complex physics that occur during laser-metal