http://web.math.snu.ac.kr/board/files/attach/images/701/ff97c54e6e21a4ae39315f9a12b27314.png
Extra Form
강연자 이동현
소속 포항공과대학교
date 2018-11-15

Dynamics of many particle system can be described by PDE of probability density function. The Boltzmann equation in kinetic theory is one of the most famous equation which describes rarefied gas dynamics. One of main property of the Boltzmann is decaying to equilibrium as time goes to infinity. This equation and its asymptotics has been studied for several decades ago, but boundary problem of the Boltzmann equation has been widely open because of singular behavior of boundary Boltzmann problem. We introduce new framework to study pointwise behavior of the equation in general boundary problems.


Atachment
첨부 '1'
  1. 돈은 어떻게 우리 삶에 돈며들었는가? (불확실성 시대에 부는 선형적으로 증가하는가?)

  2. 극소곡면의 등주부등식

  3. 곡선의 정의란 무엇인가?

  4. Zeros of the derivatives of the Riemann zeta function

  5. Zeros of linear combinations of zeta functions

  6. What is model theory?

  7. What happens inside a black hole?

  8. WGAN with an Infinitely wide generator has no spurious stationary points

  9. Weyl character formula and Kac-Wakimoto conjecture

  10. Weak and strong well-posedness of critical and supercritical SDEs with singular coefficients

  11. W-algebras and related topics

  12. Volume entropy of hyperbolic buildings

  13. Vlasov-Maxwell equations and the Dynamics of Plasmas

  14. Variational Methods without Nondegeneracy

  15. Unprojection

  16. Universality of log-correlated fields

  17. Unique ergodicity for foliations

  18. 19Nov
    by 김수현
    in 수학강연회

    Trends to equilibrium in collisional rarefied gas theory

  19. Towards Trustworthy Scientific Machine Learning: Theory, Algorithms, and Applications

  20. Toward bridging a connection between machine learning and applied mathematics

Board Pagination Prev 1 2 3 4 5 6 7 8 9 10 11 12 Next
/ 12