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学術論文

Nanoelectronic COupled Problems Solutions - nanoCOPS: Modelling, Multirate, Model Order Reduction, Uncertainty Quantification, Fast Fault Simulation

MPS-Authors
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Benner,  Peter
Computational Methods in Systems and Control Theory, Max Planck Institute for Dynamics of Complex Technical Systems, Max Planck Society;

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Feng,  Lihong
Computational Methods in Systems and Control Theory, Max Planck Institute for Dynamics of Complex Technical Systems, Max Planck Society;

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Banagaaya,  Nicodemus
Computational Methods in Systems and Control Theory, Max Planck Institute for Dynamics of Complex Technical Systems, Max Planck Society;

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Yue,  Yao
Computational Methods in Systems and Control Theory, Max Planck Institute for Dynamics of Complex Technical Systems, Max Planck Society;

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feng_2306864.pdf
(出版社版), 7MB

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引用

ter Maten, E. J. W., Putek, P., Günther, M., Pulch, R., Tischendorf, C., Strohm, C., Schoenmaker, W., Meuris, P., de Smedt, B., Benner, P., Feng, L., Banagaaya, N., Yue, Y., Janssen, R., Dohmen, J. J., Tasić, B., Deleu, F., Gillon, R., Wieers, A., Brachtendorf, H.-G., Bittner, K., Kratochvíl, T., Petřzela, J., Sotner, R., Göthans, T., Dřínovský, J., Schöps, S., Duque Guerra, D. J., Casper, T., De Gersem, H., Römer, U., Reynier, P., Barroul, P., Masliah, D., & Rousseau, B. (2016). Nanoelectronic COupled Problems Solutions - nanoCOPS: Modelling, Multirate, Model Order Reduction, Uncertainty Quantification, Fast Fault Simulation. Journal of Mathematics in Industry, 7(1):. doi:10.1186/s13362-016-0025-5.


引用: https://hdl.handle.net/11858/00-001M-0000-002B-2EF8-1
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