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Kanok-Nukulchai Worsak,Wong F.T.,Sommanawat W.
Pág. 152 - 157
In standard FEM, the stiffness of an element is exclusively influenced by nodes associated with the element via its element-based shape functions. In this paper, the authors present a method that can be viewed as a generalization of FEM for which the inf...
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Greg W. Douhan, Karla A. de la Cerda, Karyn L. Huryn, Christopher A. Greer, and Francis P. Wong
Pág. 85 - 91
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María M. Díaz Arias, Jean C. Batzer, Thomas C. Harrington, Amy Wang Wong, Steven C. Bost, Daniel R. Cooley, Michael A. Ellis, John R. Hartman, David A. Rosenberger, George W. Sundin, Turner B. Sutton, James W. Travis, Michael J. Wheeler, Keith S. Yoder, a
Pág. 345 - 355
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F. T. Wong,W. Kanok-Nukulchai
Pág. pp. 15 - 22
An enhancement of the finite element method with Kriging shape functions (K-FEM) was recently proposed. In this method, the field variables of a boundary value problem are approximated using ?element-by-element? piecewise Kriging interpolation (el-KI). F...
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C.L. Wong, K.H. Lee, K.M. Lo, O.C. Chan, W. Goggins, W.S. O and P.H.
Pág. 654 - 662
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W. Zhang, X.G. Tang, K.H. Wong and H.L.W. Chan
Pág. 197 - 200
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Wang, W.; Pollak, I.; Wong, T.-S.; Bouman, C.A.; Harper, M.P.; Siskind, J.M.
Pág. 3033 - 3052
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Ng, E.K.K.; Fu, A.W.-C.; Wong, R.C.-W.
Pág. 369 - 383
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Pang, W.-M. Wong, T.-T. Heng, P.-A.
Pág. 36 - 43
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Zhang, D. Kong, W.-K. You, J. Wong, M.
Pág. 1041 - 1050
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