John G. Curro

Affiliations: 
Physical Properties of Polymers Sandia National Laboratories 
Google:
"John Gillette Curro"
Bio:

Curro, John Gillette, Theoretical investigation of the effect of intramolecular interactions on the configuration of polymeric chains, thesis Caltech (1969)

Mean distance: 10.7
 

Parents

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Cornelius J. Pings grad student 1969 Caltech
 (Theoretical investigation of the effect of intramolecular interactions on the configuration of polymeric chains)
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Publications

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Li H, Donley JP, Wu DT, et al. (2024) Two-molecule theory of polyethylene liquids. The Journal of Chemical Physics. 161
Stevenson CS, Curro JG, McCoy JD. (2020) Gruneisen parameters of bead-spring chains: MD simulation and theory. The Journal of Chemical Physics. 153: 244903
Stevenson CS, Curro JG, McCoy JD. (2017) The glass transition temperature of thin films: A molecular dynamics study for a bead-spring model. The Journal of Chemical Physics. 146: 203322
Mendez S, Andrzejewski BP, Canavan HE, et al. (2009) Understanding the force-vs-distance profiles of terminally attached poly(N-isopropyl acrylamide) thin films. Langmuir : the Acs Journal of Surfaces and Colloids. 25: 10624-32
McCoy JD, Curro JG. (2009) Van der Waals model for phase transitions in thermoresponsive surface films. The Journal of Chemical Physics. 130: 194708
McCoy JD, Curro JG. (2009) Van der Waals model for phase transitions in thermoresponsive surface films Journal of Chemical Physics. 130
Tsige M, Curro JG, Grest GS. (2008) Packing of poly(tetrafluoroethylene) in the liquid state: Molecular dynamics simulation and theory. The Journal of Chemical Physics. 129: 214901
Tsige M, Curro JG, Grest GS. (2008) Packing of poly(tetrafluoroethylene) in the liquid state: Molecular dynamics simulation and theory Journal of Chemical Physics. 129
Budzien J, Rottach DR, Curro JG, et al. (2008) A new constitutive model for the chemical aging of rubber networks in deformed states Macromolecules. 41: 9896-9903
Svaneborg C, Everaers R, Grest GS, et al. (2008) Connectivity and entanglement stress contributions in strained polymer networks Macromolecules. 41: 4920-4928
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