Degree Department

4 Matching Results

Results open in a new window/tab.

A unified, contemporary approach to teaching energy in introductory physics (open access)

A unified, contemporary approach to teaching energy in introductory physics

Article proposes a more coherent, contemporary approach to the teaching of energy in introductory physics courses that offers students a principled way to avoid confusions.
Date: July 1, 2019
Creator: Chabay, Ruth; Sherwood, Bruce & Titus, Aaron
System: The UNT Digital Library
Classical trajectory Monte Carlo simulation of plasma fueling using magnetic plasma expulsion (open access)

Classical trajectory Monte Carlo simulation of plasma fueling using magnetic plasma expulsion

Article describes a study exploring the possibility of fueling a magnetically confined plasma using particle sources located inside of the plasma.
Date: July 11, 2019
Creator: Martinez, Armando & Ordonez, Carlos A.
System: The UNT Digital Library
Label-free characterization of white blood cells using fluorescence lifetime imaging and flow-cytometry: molecular heterogeneity and erythrophagocytosis [Invited] (open access)

Label-free characterization of white blood cells using fluorescence lifetime imaging and flow-cytometry: molecular heterogeneity and erythrophagocytosis [Invited]

Article reporting the results of blood cell characterization using label-free fluorescence imaging techniques and flow-cytometry. Autofluorescence parameters of different cell types – white blood cells, red blood cells, erythrophagocytic cells – are assessed and analyzed in terms of molecular heterogeneity and possibilities of differentiation between different cell types in vitro and in vivo.
Date: July 29, 2019
Creator: Drachev, Vladimir P.; Yakimov, Boris P.; Gogoleva, Maria A.; Semenov, Alexey N.; Rodionov, Sergey A.; Novoselova, Marina V. et al.
System: The UNT Digital Library
AFLOW-QHA3P: Robust and automated method to compute thermodynamic properties of solids (open access)

AFLOW-QHA3P: Robust and automated method to compute thermodynamic properties of solids

Article introducing the quasiharmonic approximation three-phonon method to calculate the thermodynamic properties of both nonmetallic and metallic compounds. This study demonstrates that QHA3P is an ideal framework for the high-throughput prediction of finite-temperature material properties, combining the accuracy of QHA with the computational efficiency of SC-QHA.
Date: July 8, 2019
Creator: Nath, Pinku; Usanmaz, Demet; Hicks, David; Oses, Corey; Fornari, Marco; Buongiorno Nardelli, Marco et al.
System: The UNT Digital Library