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青木一生 Kazuo AOKI
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職稱 | 榮譽講座教授 |
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電話 | 06-2757575 轉 |
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傳真 | 06-2743191 |
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辦公室 | 數學系館 |
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電子郵件 | kazuo.aoki.22v[at]st.kyoto-u.ac.jp |
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個人網頁 | http://www.math.ncku.edu.tw/~kazuo-aoki |
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專長學門 | 氣體動力學、流體力學 |
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學歷 | 京都大學工程博士(1979) 京都大學工程碩士(1975) 京都大學工程學士(1973)
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經歷 | 2016– 京都大學榮譽教授 1994–2016 京都大學教授 1985–1994 京都大學副教授 1978–1985 京都大學助理教授 |
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論文選輯 |
- K. Aoki, V. Giovangigli, F. Golse, and S. Kosuge, The physisorbate-layer problem arising in kinetic theory of gas-surface interaction, J. Stat. Phys. 191(5), 53: 1-40 (2024).
- S. Kosuge and K. Aoki, Navier-Stokes equations and bulk viscosity for a polyatomic gas with temperature-dependent specific heats, Fluids 8(1), 5: 1-22 (2022).
- K. Aoki, V. Giovangigli, and S. Kosuge, Boundary conditions for the Boltzmann equation from gas-surface interaction kinetic models, Phys. Rev. E 106(3), 035306: 1-25 (2022).
- S. Kosuge, K. Aoki, M. Bisi, M. Groppi, and G. Martalo, Boundary conditions for two-temperature Navier-Stokes equations for a polyatomic gas, Phys. Rev. Fluids 6(8), 083401: 1-52 (2021).
- K. Aoki and V. Giovangigli, Kinetic theory of chemical reactions on crystal surfaces, Physica A 565, 125573: 1-43 (2021).
- K. Aoki, M. Bisi, M. Groppi, and S. Kosuge, Two-temperature Navier-Stokes equations for a polyatomic gas derived from kinetic theory, Phys. Rev. E 102(2), 023104: 1-23 (2020).
- K. Aoki, Y.-C. Lin, and K.-C. Wu, Milne problem for the linear and linearized Boltzmann equations relevant to a binary gas mixture, J. Differ. Equ. 269(1), 257-287 (2020).
- S. Kosuge, H.-W. Kuo, and K. Aoki, A kinetic model for a polyatomic gas with temperature-dependent specific heats and its application to shock-wave structure, J. Stat. Phys. 177(2), 209-251 (2019).
- K. Aoki and V. Giovangigli, Kinetic model of adsorption on crystal surfaces, Phys. Rev. E 99(5), 052137: 1-25 (2019).
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