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Sensitivity and uncertainty analysis for flexoelectric nanostructures
Khader M. Hamdia
, Hamid Ghasemi
, Xiaoying Zhuang
, Naif Alajlan
, Timon Rabczuk
*
*
Corresponding author for this work
Research output
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Contribution to journal
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Article
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peer-review
213
Citations (Scopus)
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Keyphrases
Aspect Ratio
25%
Energy Conversion Factor
50%
Extended Fourier Amplitude Sensitivity Test (EFAST)
25%
Flexoelectric Materials
25%
Flexoelectricity
100%
Governing Equation
25%
Higher-order Continuity
25%
Interaction Effect
25%
Latin Hypercube Sampling
25%
Material Properties
50%
Mixed Formulation
25%
Model Output
25%
Model Properties
25%
Nanostructures
100%
Non-uniform Rational B-spline (NURBS)
25%
Numerical Results
25%
One-at-a-time
25%
Probability Space
25%
Sensitivity Analysis
100%
Sobol
25%
Transversal
25%
Uncertainty Analysis
100%
Engineering
Aspect Ratio
33%
Common Method
33%
Conversion Factor
66%
Energy Conversion
66%
Flexoelectric Coefficient
33%
Flexoelectric Material
33%
Flexoelectricity
33%
Influencing Factor
33%
Input Parameter
100%
Interaction Effect
33%
Latin-Hypercube Sampling
33%
Mixed Formulation
33%
Model Parameter
33%
Nanomaterial
100%
Sensitivity Analysis
33%