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The numerical experiments of the fifth order ERKN method for multidimensional perturbed oscillators are accompanied in comparison with some existing well-known methods in the scientific literature.
After the treatment of one-dimensional measurements, we extend the proposed method for multidimensional possibly dependent measurements in Section 4.2, and finally, we present the algorithm for time series filtering in Section 4.3.
A standard high-resolution method based on a wave-propagation formulation is employed to solve the proposed model system with the dimensional-splitting technique incorporated in the method for multidimensional problems.
In this study, we propose a new representation method for multidimensional color images, called an n-qubit normal arbitrary superposition state (NASS), where n qubits represent the colors and coordinates of 2n pixels (e.g., a three-dimensional color image of 1024×1024×1024 using only 30 qubits).
The unique separation ability of HILIC and its orthogonality towards RP make it an ideal method for multidimensional chromatography, which can extend separation power.
The unique separation and orthogonality of HILIC towards RP (the most commonly used peptide separation method) make it an ideal method for multidimensional chromatography that can extend separation power.
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Therefore, the need to develop new methods for multidimensional transient reactor analysis still exists.
Her research interests include multimedia databases, multimedia data mining, indexing methods for multidimensional data, and information visualization.
Further details regarding the construction of high-order SL-FV methods for multidimensional equations are still under dispute, and these are the primary direction of future research.
The beauty of this system is the ability to combine these two separation methods for multidimensional peptide separation.
By representing networks and formulating the problem in this tensor form, we gain access to a wealth of established optimization methods for multidimensional arrays.
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