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Mathematical Methods in Applied Sciences

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This book includes the seven papers that contributed to the Special Issue of Mathematics entitled “Mathematical Methods in Applied Sciences”. The papers are authored by eminent specialists and aim at presenting to a broad audience some mathematical models which appear in different aspects of modern life. New results in Computational Mathematics are given as well. Emphasis is on Medicine and Public Health, in relation also with Social Sciences. The models in this collection apply in particular to the study of brain cells during a stroke, training management efficiency for elite athletes, and optimal surgical operation scheduling. Other models concern Industry and Economy, as well as Biology and Chemistry. Numerical Methods are represented in particular by scattered data interpolation, spectral collocation, and the use of eigenvalues and eigenvectors of the Laplacian matrix. This book will appeal to scientists, teachers, and graduate students in Mathematics, in particular Numerical Analysis, and will be of interest for scholars in Applied Sciences, particularly in Medicine and Public Health.

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Keywords

  • admittance matrix
  • approximation
  • assignment
  • athletes’ condition
  • Chebyshev points
  • Chemokines
  • constraint programming
  • convex combination
  • Crystallization
  • cubic ball triangular patches
  • cubic Bezier triangular patches
  • cubic timmer triangular patches
  • Cytokines
  • eigenvalue stability analysis
  • goal programming
  • Labor
  • Laplacian matrix
  • least squares method
  • Neurogenesis
  • numerical solution
  • operating room scheduling
  • Parameter estimation
  • personnel
  • population balance equation
  • power flow
  • scattered data interpolation
  • Scheduling
  • shift schedule
  • spectral collocation method
  • state hospital
  • system of ordinary differential equations
  • Visualization
  • voltage profile

Links

DOI: 10.3390/books978-3-03928-497-9

Editions

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