most citedThe Linear US-uP Relation in Shock-Wave Physics

11 citations · 33 across the 7 of their papers we have counts for

collaborators

7 papers

astro-ph.EP2013★ 8 cited

Equation of State and Constitutive Models for Numerical Simulations of Dust Impacts on the Solar Probe

Gerald I. Kerley

This report presents new EOS and strength models for use in numerical hydrocode simulations of dust impacts on the NASA solar probe space vehicle. This spacecraft will be subjected…

astro-ph.EP2013★ 6 cited

Structures of the Planets Jupiter and Saturn

Gerald I. Kerley

New equations of state (EOS) for hydrogen, helium, and compounds containing heavier elements are used to construct models for the structures of the planets Jupiter and Saturn. Good…

cond-mat.mtrl-sci2013★ 4 cited

Calculation of Release Adiabats and Shock Impedance Matching

Gerald I. Kerley

In the analysis of impedance-match experiments, the release adiabat of the standard material is often approximated by reflecting the Hugoniot in the pressure-particle velocity (P-U…

physics.chem-ph2013★ 2 cited

An Equation of State for Helium

Gerald I. Kerley

This report describes a new equation of state (EOS) for helium. The PANDA code was used to construct separate EOS tables for the solid and fluid phases. The solid and fluid EOS wer…

physics.chem-ph2013★ 2 cited

On Corrections to the Born-Oppenheimer Approximation

Gerald I. Kerley

This report presents a new approach for treating the coupling of electrons and nuclei in quantum mechanical calculations for molecules and condensed matter. It includes the standar…

cond-mat.mtrl-sci2013★ 11 cited

The Linear US-uP Relation in Shock-Wave Physics

Gerald I. Kerley

A linear relation between shock velocity US and particle velocity UP is often regarded as the "typical" or "standard" material response in the shock-wave literature. It has even be…