0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R2,500 - R5,000 (4)
  • -
Status
Brand

Showing 1 - 4 of 4 matches in All Departments

Mathematical Analysis and Numerical Methods for Science and Technology, v. 5 - Evolution Problems, I (Hardcover): Robert... Mathematical Analysis and Numerical Methods for Science and Technology, v. 5 - Evolution Problems, I (Hardcover)
Robert Dautray, J.L. Lions; Volume editing by Ian Naismith Sneddon; Translated by A. Craig
R2,960 Discovery Miles 29 600 Out of stock

These 6 volumes - the result of a 10 year collaboration between the authors, two of France's leading scientists and both distinguished international figures - compile the mathematical knowledge required by researchers in mechanics, physics, engineering, chemistry and other branches of application of mathematics for the theoretical and numerical resolution of physical models on computers. Since the publication in 1924 of the "Methoden der mathematischen Physik" by Courant and Hilbert there has been no other comprehensive and up-to-date publication presenting the mathematical tools needed in applications of mathematics in directly implementable form. The advent of large computers has in the meantime revolutionised methods of computation and made this gap in the literature intolerable: the objective of the present work is to fill just this gap. Many phenomena in physical mathematics may be modeled by a system of partial differential equations in distributed systems: a model here means a set of equations, which together with given boundary data and, if the phenomenon is evolving in time, initial data, defines the system. The advent of high-speed computers has made it possible for the first time to calculate values from models accurately and rapidly. Researchers and engineers thus have a crucial means of using numerical results to modify and adapt arguments and experiments along the way. Every facet of technical and industrial activity has been affected by these developments. Modeling by distributed systems now also supports work in many areas of physics (plasmas, new materials, astrophysics, geophysics), chemistry and mechanics and is finding increasing use in the life sciences.

Mathematical Analysis and Numerical Methods for Science and Technology - Volume 4 Integral Equations and Numerical Methods... Mathematical Analysis and Numerical Methods for Science and Technology - Volume 4 Integral Equations and Numerical Methods (Paperback, 1st ed. 1990. 2nd printing 1999)
Robert Dautray; Contributions by M Artola; Translated by J.C. Amson; Jacques-Louis Lions; Contributions by P. Benilan, …
R2,469 Discovery Miles 24 690 Out of stock

The advent of high-speed computers has made it possible for the first time to calculate values from models accurately and rapidly. Researchers and engineers thus have a crucial means of using numerical results to modify and adapt arguments and experiments along the way. Every facet of technical and industrial activity has been affected by these developments. The objective of the present work is to compile the mathematical knowledge required by researchers in mechanics, physics, engineering, chemistry and other branches of application of mathematics for the theoretical and numerical resolution of physical models on computers. Since the publication in 1924 of the "Methoden der mathematischen Physik" by Courant and Hilbert, there has been no other comprehensive and up-to-date publication presenting the mathematical tools needed in applications of mathematics in directly implementable form.

Mathematical Analysis and Numerical Methods for Science and Technology - Volume 3 Spectral Theory and Applications (Paperback,... Mathematical Analysis and Numerical Methods for Science and Technology - Volume 3 Spectral Theory and Applications (Paperback, 1st ed. 1990. 2nd printing 1999)
Robert Dautray; Contributions by M Artola; Translated by J.C. Amson; Contributions by M. Cessenat; Jacques-Louis Lions
R2,080 Discovery Miles 20 800 Out of stock

The advent of high-speed computers has made it possible for the first time to calculate values from models accurately and rapidly. Researchers and engineers thus have a crucial means of using numerical results to modify and adapt arguments and experiments along the way. Every facet of technical and industrial activity has been affected by these developments. The objective of the present work is to compile the mathematical knowledge required by researchers in mechanics, physics, engineering, chemistry and other branches of application of mathematics for the theoretical and numerical resolution of physical models on computers. Since the publication in 1924 of the "Methoden der mathematischen Physik" by Courant and Hilbert, there has been no other comprehensive and up-to-date publication presenting the mathematical tools needed in applications of mathematics in directly implementable form.

Mathematical Analysis and Numerical Methods for Science and Technology - Volume 2 Functional and Variational Methods... Mathematical Analysis and Numerical Methods for Science and Technology - Volume 2 Functional and Variational Methods (Paperback, 1st. ed. 1988. 2nd printing 1999)
I. N. Sneddon; Robert Dautray; Contributions by M Artola, M. Authier; Jacques-Louis Lions; Contributions by …
R2,476 Discovery Miles 24 760 Out of stock

These 6 volumes - the result of a 10 year collaboration between the authors, two of France's leading scientists and both distinguished international figures - compile the mathematical knowledge required by researchers in mechanics, physics, engineering, chemistry and other branches of application of mathematics for the theoretical and numerical resolution of physical models on computers. Since the publication in 1924 of the "Methoden der mathematischen Physik" by Courant and Hilbert, there has been no other comprehensive and up-to-date publication presenting the mathematical tools needed in applications of mathematics in directly implementable form. The advent of large computers has in the meantime revolutionised methods of computation and made this gap in the literature intolerable: the objective of the present work is to fill just this gap. Many phenomena in physical mathematics may be modeled by a system of partial differential equations in distributed systems: a model here means a set of equations, which together with given boundary data and, if the phenomenon is evolving in time, initial data, defines the system. The advent of high-speed computers has made it possible for the first time to calculate values from models accurately and rapidly. Researchers and engineers thus have a crucial means of using numerical results to modify and adapt arguments and experiments along the way. Every facet of technical and industrial activity has been affected by these developments. Modeling by distributed systems now also supports work in many areas of physics (plasmas, new materials, astrophysics, geophysics), chemistry and mechanics and is finding increasing use in the life sciences.

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Bostik Glue Stick (40g)
R52 Discovery Miles 520
Angelcare Nappy Bin Refills
R165 R145 Discovery Miles 1 450
Puss In Boots 2 - The Last Wish
DVD R113 Discovery Miles 1 130
The Papery A5 WOW 2025 Diary - Giraffe…
R349 R300 Discovery Miles 3 000
Jaguar Jaguar Evolution Eau De Toilette…
R1,130 R469 Discovery Miles 4 690
Home Classix Placemats - The Tropics…
R59 R51 Discovery Miles 510
ZA Choker Necklace
R570 R399 Discovery Miles 3 990
Moonology Diary 2025
Yasmin Boland Paperback R240 Discovery Miles 2 400
Atlas - The Story Of Pa Salt
Lucinda Riley, Harry Whittaker Paperback R399 R180 Discovery Miles 1 800
Uglies
Scott Westerfeld Paperback R265 R99 Discovery Miles 990

 

Partners