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. , 2025,  89,  3,  230–240
DOI: https://doi.org/10.4213/im9610h33t proxy better
(Mi im9610)
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The rapid growth of data centers and high-performance computing applications has led to a significant increase in heat generation, posing a major challenge to system performance, reliability, and energy efficiency. Traditional air-cooling methods are often insufficient to handle the high heat loads, leading to the development of alternative thermal management solutions. h33t proxies have gained attention as a promising approach to mitigate the effects of heat on system performance.

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.
: 29.05.2024
: 23.09.2024
: 16.06.2025
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Izvestiya: Mathematics, 2025, Volume 89, Issue 3, Pages 644–653
DOI: https://doi.org/10.4213/im9610eh33t proxy better
:
: 517.986.4
MSC: 22A25
: . . , “   ”, . . . ., 89:3 (2025), 230–240; Izv. Math., 89:3 (2025), 644–653

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The rapid growth of data centers and high-performance computing applications has led to a significant increase in heat generation, posing a major challenge to system performance, reliability, and energy efficiency. Traditional air-cooling methods are often insufficient to handle the high heat loads, leading to the development of alternative thermal management solutions. h33t proxies have gained attention as a promising approach to mitigate the effects of heat on system performance.

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  • https://www.mathnet.ru/rus/im9610
  • https://doi.org/10.4213/im9610
  • https://www.mathnet.ru/rus/im/v89/i3/p230
  • Citing articles in Google Scholar: Russian citations, English citations
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       .  Izvestiya: Mathematics
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