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Comparing with traditional methods, the component compensation method is effective for distortion parameter estimation, and it shows better component compensation performance.
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In this study, the finite element method, the component mode synthesis method and the linear elastic fracture mechanics theory are integrated for modelling of the cracked structures.
After a review and additional measurements I calculated with the S sp method the component numbers of the autophagic compartment for certain time points.
The MCPSC comparison method outperforms the component PSC methods (TMalign, CE, and USM) and groups 34 representative proteins from fivefold families into biologically significant clusters.
Combining the simplified Newton method with the component averaging (CAV) method [Parallel Comput. 27 (2001) 777] results in an inexact Newton method, called simplified Newton-CAV method.
For more details on those methods see the component on the BioJS registry: http://goo.gl/064ChR.
The "Background" section is attributable to AP, the "Method: Framework" to AG, the "Method: The components" to ED, "Method: Case study" to MEM, the "Results and discussion" to MB and the "Conclusion" to all authors.
Several numerical analyses based on finite element method of the component were performed using the commercial software ABAQUS.
Design and fabrication methods of the components have been improved to achieve ∼50% reduction of the construction cost.
Details of experimental methods are in the component structure experimentData.
Section 4 presents a case study comparing the proposed method to the component-based model.
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