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Nonlinear Second Order Elliptic Equations

Mingxin Wang & Peter Y. H. Pang

Nonlinear Second Order Elliptic Equations
Nonlinear Second Order Elliptic Equations

Nonlinear Second Order Elliptic Equations

Mingxin Wang & Peter Y. H. Pang

Hardback / bound | English
  • Not yet published, expected at Jun 16, 2024
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Description

Mingxin Wang received his PhD from the Beijing Institute of Technology. He is a prolific educator and researcher in the theory of partial differential equations. In the last two decades, he has made significant contributions to the study of diffusive systems arising in mathematical biology, especially population dynamics.

Peter Y. H. Pang received his PhD from the University of Illinois at Urbana-Champaign. His research interests include partial differential equations and geometric analysis. In the past two decades, he has focused on parabolic and elliptic equations with applications in mathematical biology.

The two authors have collaborated over a period of more than 15 years, and have co-authored 17 research papers. This book draws upon some key findings and examples resulting from this fruitful collaboration.



Mingxin Wang received his PhD from the Beijing Institute of Technology. He is a prolific educator and researcher in the theory of partial differential equations. In the last two decades, he has made significant contributions to the study of diffusive systems arising in mathematical biology, especially population dynamics.

Peter Y. H. Pang received his PhD from the University of Illinois at Urbana-Champaign. His research interests include partial differential equations and geometric analysis. In the past two decades, he has focused on parabolic and elliptic equations with applications in mathematical biology.

The two authors have collaborated over a period of more than 15 years, and have co-authored 17 research papers. This book draws upon some key findings and examples resulting from this fruitful collaboration.

Specifications

  • Publisher
    Springer Verlag, Singapore
  • Pub date
    Jun 2024
  • Theme
    Differential calculus and equations
  • Dimensions
    235 x 155 mm
  • EAN
    9789819986910
  • Hardback / bound
    Hardback / bound
  • Language
    English