1,058 results on '"Elishakoff, Isaac"'
Search Results
52. Flutter of a beam in supersonic flow: truncated version of Timoshenko–Ehrenfest equation is sufficient
53. Review of uncertainty quantification, associated parables, and Raphael Tuvia Haftka’s contributions
54. Chebyshev inequality–based inflated convex hull for uncertainty quantification and optimization with scarce samples
55. Stephen Timoshenko's life during last five years in the Russian Empire: From the letters of his son Gregory
56. Galerkin’s method revisited and corrected in the problem of Jaworski and Dowell
57. Data-driven method for dimension reduction of nonlinear randomly vibrating systems
58. Rigorous implementation of the Galerkin method for stepped structures needs generalized functions
59. Shear Deformable Elastic Beam Models in Vibration and Sensitivity of Natural Frequencies to Warping Effects
60. Exact solutions for stochastic Bernoulli–Euler beams under deterministic loading
61. Efficiency of mono-stable piezoelectric Duffing energy harvester in the secondary resonances by averaging method. Part 1: Sub-harmonic resonance
62. Generalization of Eringen's result for random response of a beam on elastic foundation
63. A combined Importance Sampling and active learning Kriging reliability method for small failure probability with random and correlated interval variables
64. Free-Vibration Analysis for Truncated Uflyand–Mindlin Plate Models: An Alternative Theoretical Formulation
65. Nonlocal-Strain-Gradient-Based Anisotropic Elastic Shell Model for Vibrational Analysis of Single-Walled Carbon Nanotubes
66. Nonlocal Strain Gradient Anisotropic Elastic Shell Model for Vibration Analysis of Single‒walled Carbon Nanotubes
67. Stationary response probability density of nonlinear random vibrating systems: a data-driven method
68. Novel interval model applied to derived variables in static and structural problems
69. A brief history of first-order shear-deformable beam and plate models
70. Closed-form random vibration response for columns on elastic foundation and subjected to axial force
71. Statistical information of low-dimensional processes hidden in random state data
72. On rotary inertia of microstuctured beams and variations thereof
73. An interesting project in the “strength of materials” or “machine design” courses
74. Dynamic Analysis of a Timoshenko–Ehrenfest Single-Walled Carbon Nanotube in the Presence of Surface Effects: The Truncated Theory
75. Sharp Bounds for Natural Frequencies of Beams with Uncertain Spring Coefficients
76. On Random Vibration of Structures with Complicating Effects
77. Dramatic Effect of Cross-Correlations in Random Vibrations of Discrete Systems, Beams, Plates, and Shells
78. Timoshenko, Stepan Prokofievitch
79. Three alternative versions of Bresse–Timoshenko theory for beam on pure Pasternak foundation
80. Statics and dynamics of nanorods embedded in an elastic medium: Nonlocal elasticity and lattice formulations
81. Rigorous versus naïve implementation of the Galerkin method for stepped beams
82. Shear deformable rod theories and fundamental principles of mechanics
83. Reconstructing the Cross-Sectional Area of an Axially Vibrating Non-Uniform Rod from One of Its Mode Shapes
84. Was Stephen Timoshenko right about the Jewish scientists in Germany?
85. Dynamic Analysis of a Timoshenko-Ehrenfest SWCNT in the Presence of Surface Effects: The Truncated Theory
86. Critical contrasting of three versions of vibrating Bresse–Timoshenko beam with a crack
87. Dynamic analysis of Bernoulli-Euler beams with interval uncertainties under moving loads
88. Simplified Timoshenko–Ehrenfest beam equation to analyze metamaterials.
89. Timoshenko, Stepan Prokofievitch
90. Crandall, Stephen Harry
91. Bolotin, Vladimir Vasilyevich
92. Budiansky, Bernard
93. Koiter, Warner Tjardus
94. Slope-Inertia Model for Rotating Timoshenko-Ehrenfest Beams
95. Analytical Calculation of Static Deflection of Biperiodic Stepped Euler–Bernoulli Beam
96. Free Vibration of Single-Walled Carbon Nanotubes Using Nonlocal Truncated Timoshenko-Ehrenfest Beam Theory
97. Automatedly Distilling Canonical Equations from Random State Data
98. A Comparison of Shell Theories for Vibration Analysis of Single-Walled Carbon Nanotubes Based on an Anisotropic Elastic Shell Model
99. The Tale of Stochastic Linearization Technique: Over Half a Century of Progress
100. Some topics related to the vibrations of deterministic and non-deterministic metamaterial structures
Catalog
Books, media, physical & digital resources
Discovery Service for Jio Institute Digital Library
For full access to our library's resources, please sign in.