Citation: M. Karpel et al., INTEGRATED SOLUTION FOR COMPUTATIONAL STATIC AEROELASTICITY OF ROCKETS, Journal of spacecraft and rockets, 35(5), 1998, pp. 612-618
Citation: M. Karpel et S. Ricci, EXPERIMENTAL MODAL-ANALYSIS OF LARGE STRUCTURES BY SUBSTRUCTURING, Mechanical systems and signal processing, 11(2), 1997, pp. 245-256
Citation: M. Karpel et al., MODAL-BASED STRUCTURAL OPTIMIZATION WITH STATIC AEROELASTIC AND STRESS CONSTRAINTS, Journal of aircraft, 34(3), 1997, pp. 433-440
Citation: I. Herszberg et M. Karpel, FLUTTER SENSITIVITY ANALYSIS USING RESIDUALIZATION FOR ACTIVELY CONTROLLED FLIGHT VEHICLES, Structural optimization, 12(4), 1996, pp. 229-236
Citation: E. Yehezkely et M. Karpel, NONLINEAR FLUTTER ANALYSIS OF MISSILES WITH PNEUMATIC FIN ACTUATORS, Journal of guidance, control, and dynamics, 19(3), 1996, pp. 664-670
Citation: M. Karpel et al., GROUND MODAL TESTS OF SPACE-STRUCTURE COMPONENTS USING BOUNDARY MASSES, Journal of spacecraft and rockets, 33(2), 1996, pp. 272-277
Citation: M. Karpel et E. Strul, MINIMUM-STATE UNSTEADY AERODYNAMIC APPROXIMATIONS WITH FLEXIBLE CONSTRAINTS, Journal of aircraft, 33(6), 1996, pp. 1190-1196
Citation: A. Zole et M. Karpel, CONTINUOUS GUST RESPONSE AND SENSITIVITY DERIVATIVES USING STATE-SPACE MODELS, Journal of aircraft, 31(5), 1994, pp. 1212-1214
Citation: M. Karpel et Cd. Wieseman, MODAL COORDINATES FOR AEROELASTIC ANALYSIS WITH LARGE LOCAL STRUCTURAL VARIATIONS, Journal of aircraft, 31(2), 1994, pp. 396-403