Control and Boundary Analysis

Regular price €235.60
Age Group_Uncategorized
Age Group_Uncategorized
automatic-update
B01=John Cagnol
Banach Space
Category1=Non-Fiction
Category=PBW
COP=United Kingdom
Cost Functionals
Delivery_Pre-order
Deterministic Control System
Displacement Vector
Energy Functional
eq_isMigrated=2
Hamilton Jacobi Inequality
hemivariational
HVI
inequalities
inequality
Lagrange Multipliers
Language_English
Local Minimax
Lower Semicontinuous
Mixed Control State Constraints
Null Controllability
Operator Splitting Methods
optimal
Optimal Control Problem
optimization
Order Optimality Conditions
Oriented Distance Function
PA=Temporarily unavailable
Price_€100 and above
problems
PS=Active
Shape
Shape Functional
Shape Optimization
Signorini Problem
softlaunch
solution
Stochastic Control System
Thermoelastic System
Topological Derivatives
Topology Optimization
variational
Variational Inequalities
weak

Product details

  • ISBN 9781138404144
  • Weight: 770g
  • Dimensions: 178 x 254mm
  • Publication Date: 10 Jan 2018
  • Publisher: Taylor & Francis Ltd
  • Publication City/Country: GB
  • Product Form: Hardback
  • Language: English
Delivery/Collection within 10-20 working days

Our Delivery Time Frames Explained
2-4 Working Days: Available in-stock

10-20 Working Days
: On Backorder

Will Deliver When Available
: On Pre-Order or Reprinting

We ship your order once all items have arrived at our warehouse and are processed. Need those 2-4 day shipping items sooner? Just place a separate order for them!

This volume comprises selected papers from the 21st Conference on System Modeling and Optimization in Sophia Antipolis, France. It covers over three decades of studies involving partial differential systems and equations. Topics include: the modeling of continuous mechanics involving fixed boundary, control theory, shape optimization and moving boundaries, and topological shape optimization. This edition discusses all developments that lead to current moving boundary analysis and the stochastic approach.