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Simulations of an n+ n n+ silicon diode have been presented and comparison with Monte Carlo data shows the good accuracy of the model and performance of the numerical scheme.
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Applications of the proposed technique to two-dimensional fracture mechanics have been presented and comparisons are made with benchmark solutions.
Numerical examples are presented and comparison is made with the traditional displacement method and the state-space method (both formulations are presented in Appendix A for completeness).
Finally, authors' conclusions concerning new method were presented and comparison between FEM and IGA was made on the basis of the studied examples.
The results obtained at reduced-scale are presented and comparison with results available at full-scale shows that the reduced-scale tests are very representative.
In the end, a numerical example is presented and comparison is made between the results obtained in this paper and the stability criteria developed by Zong et al. [11] to illustrate the effectiveness of the developed methodology.
In this work, these two techniques are presented, and comparison are carried out using the well known First Order Reliability Method (FORM), Direct Monte Carlo Simulation and Monte Carlo Simulation with Adaptive Importance Sampling technique with approximated and exact limit state functions.
Only small, single-surgeon case series are available, no control groups are presented and comparison with open surgery is missing.
Some of the results are presented and comparisons made which shed new light on mode classification.
In Section 4, the experimental results of various test images are presented, and comparisons with other algorithms are made.
The resulting map of the quaternary structure of the small ribosomal subunit is presented, and comparisons are made with structural data from other sources.
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