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The use of mathematical modeling in engineering allows for a
significant reduction of material costs associated with design,
production, and operation of technical objects, but it is important
for an engineer to use the available computational approaches in
modeling correctly. Taking into account the level of modern
computer technology, this new volume explains how an engineer
should properly define the physical and mathematical problem
statement, choose the computational approach, and solve the problem
by proven reliable computational approach using computer and
software applications during the solution of a particular problem.
This work is the result of years of the authors' research and
experience in the fields of power and rocket engineering where they
put into practice the methods of mathematical modeling shown in
this valuable volume. The examples in the book are based on two
approaches. The first approach involves the use of the relatively
simple mathematical system MathCad. The second one involves the
solving of problems using Intel Visual Fortran compiler with IMSL
Libraries. The use of other software packages (Maple, MathLab,
Mathematica) or compilers ( , ++, Visual Basic) for code is equally
acceptable in the solution of the problems given in the book.
Intended for professors and instructors, scientific researchers,
students, and industry professionals, the book will help readers to
choose the most appropriate mathematical modeling method to solve
engineering problems, and the authors also include methods that
allow for the solving of nonmathematical problems as mathematical
problems.
The use of mathematical modeling in engineering allows for a
significant reduction of material costs associated with design,
production, and operation of technical objects, but it is important
for an engineer to use the available computational approaches in
modeling correctly. Taking into account the level of modern
computer technology, this new volume explains how an engineer
should properly define the physical and mathematical problem
statement, choose the computational approach, and solve the problem
by proven reliable computational approach using computer and
software applications during the solution of a particular problem.
This work is the result of years of the authors' research and
experience in the fields of power and rocket engineering where they
put into practice the methods of mathematical modeling shown in
this valuable volume. The examples in the book are based on two
approaches. The first approach involves the use of the relatively
simple mathematical system MathCad. The second one involves the
solving of problems using Intel Visual Fortran compiler with IMSL
Libraries. The use of other software packages (Maple, MathLab,
Mathematica) or compilers ( , ++, Visual Basic) for code is equally
acceptable in the solution of the problems given in the book.
Intended for professors and instructors, scientific researchers,
students, and industry professionals, the book will help readers to
choose the most appropriate mathematical modeling method to solve
engineering problems, and the authors also include methods that
allow for the solving of nonmathematical problems as mathematical
problems.
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