1 |
A novel methodology for non-linear system identification of battery cells used in non-road hybrid electric vehicles Unger J, Hametner C, Jakubek S, Quasthoff M Journal of Power Sources, 269, 883, 2014 |
2 |
Dynamic response of transiently trapped entanglements in polymer networks Agudelo DC, Roth LE, Vega DA, Valles EM, Villar MA Polymer, 55(4), 1061, 2014 |
3 |
PID controller design for nonlinear systems represented by discrete-time local model networks Hametner C, Mayr CH, Kozek M, Jakubek S International Journal of Control, 86(9), 1453, 2013 |
4 |
Nonlinear model-based control of highly nonlinear processes Gregorcic G, Lightbody G Computers & Chemical Engineering, 34(8), 1268, 2010 |
5 |
Synthesis and characterization of amphiphilic cationic symmetrical ABCBA pentablock terpolymer networks: Effect of hydrophobic content Triftaridou AI, Loizou E, Patrickios CS Journal of Polymer Science Part A: Polymer Chemistry, 46(13), 4420, 2008 |
6 |
Cascade model for coupled two-component polymer gels Mao CF, Chen JC Journal of Applied Polymer Science, 99(5), 2771, 2006 |
7 |
Viscoelastic properties of networks with low concentration of pendant chains Roth LE, Vega DA, Valles EA, Villar MA Polymer, 45(17), 5923, 2004 |
8 |
Bulk hydrosilylation reaction of poly(dimethylsiloxane) chains catalyzed by a platinum salt: Effect of the initial concentration of reactive groups on the final extent of reaction Roth LE, Valles EM, Villar MA Journal of Polymer Science Part A: Polymer Chemistry, 41(8), 1099, 2003 |
9 |
Cationic homopolymer model networks and star polymers: synthesis by group transfer polymerization and characterization of the aqueous degree of swelling Simmons MR, Yamasaki EN, Patrickios CS Polymer, 41(24), 8523, 2000 |
10 |
Monte-Carlo modeling of degradation of polymer networks: 3. Lattice networks Galina H, Lechowicz JB Polymer, 41(2), 615, 2000 |