Author: Susan Finger
Publisher:
ISBN: 9780669120592
Category : Engineering
Languages : en
Pages : 138
Book Description
Advanced Applications for Introduction to Pascal with Applications in Science and Engineering
Author: Susan Finger
Publisher:
ISBN: 9780669120592
Category : Engineering
Languages : en
Pages : 138
Book Description
Publisher:
ISBN: 9780669120592
Category : Engineering
Languages : en
Pages : 138
Book Description
The Cumulative Book Index
Author:
Publisher:
ISBN:
Category : American literature
Languages : en
Pages : 2056
Book Description
Publisher:
ISBN:
Category : American literature
Languages : en
Pages : 2056
Book Description
Journal of Pascal, Ada & Modula-2
Author:
Publisher:
ISBN:
Category : Ada (Computer program language)
Languages : en
Pages : 500
Book Description
Publisher:
ISBN:
Category : Ada (Computer program language)
Languages : en
Pages : 500
Book Description
Interface
Author:
Publisher:
ISBN:
Category : Electronic data processing
Languages : en
Pages : 334
Book Description
Publisher:
ISBN:
Category : Electronic data processing
Languages : en
Pages : 334
Book Description
Cumulative Book Index
Author:
Publisher:
ISBN:
Category : American literature
Languages : en
Pages : 2088
Book Description
A world list of books in the English language.
Publisher:
ISBN:
Category : American literature
Languages : en
Pages : 2088
Book Description
A world list of books in the English language.
Engineering Education
Mathematics and Computer Education
Author:
Publisher:
ISBN:
Category : Electronic data processing
Languages : en
Pages : 248
Book Description
Publisher:
ISBN:
Category : Electronic data processing
Languages : en
Pages : 248
Book Description
Innovative Integrals and Their Applications I
Author: Anthony A. Ruffa
Publisher: Springer Nature
ISBN: 3031178718
Category : Mathematics
Languages : en
Pages : 325
Book Description
This book develops integral identities, mostly involving multidimensional functions and infinite limits of integration, whose evaluations are intractable by common means. It exposes a methodology based on the multivariate power substitution and its variants, assisted by the software tool Mathematica. The approaches introduced comprise the generalized method of exhaustion, the multivariate power substitution and its variants, and the use of permutation symmetry to evaluate definite integrals, which are very important both in their own right, and as necessary intermediate steps towards more involved computation. A key tenet is that such approaches work best when applied to integrals having certain characteristics as a starting point. Most integrals, if used as a starting point, will lead to no result at all, or will lead to a known result. However, there is a special class of integrals (i.e., innovative integrals) which, if used as a starting point for such approaches, will lead to new and useful results, and can also enable the reader to generate many other new results that are not in the book. The reader will find a myriad of novel approaches for evaluating integrals, with a focus on tools such as Mathematica as a means of obtaining useful results, and also checking whether they are already known. Results presented involve the gamma function, the hypergeometric functions, the complementary error function, the exponential integral function, the Riemann zeta function, and others that will be introduced as they arise. The book concludes with selected engineering applications, e.g., involving wave propagation, antenna theory, non-Gaussian and weighted Gaussian distributions, and other areas. The intended audience comprises junior and senior sciences majors planning to continue in the pure and applied sciences at the graduate level, graduate students in mathematics and the sciences, and junior and established researchers in mathematical physics, engineering, and mathematics. Indeed, the pedagogical inclination of the exposition will have students work out, understand, and efficiently use multidimensional integrals from first principles.
Publisher: Springer Nature
ISBN: 3031178718
Category : Mathematics
Languages : en
Pages : 325
Book Description
This book develops integral identities, mostly involving multidimensional functions and infinite limits of integration, whose evaluations are intractable by common means. It exposes a methodology based on the multivariate power substitution and its variants, assisted by the software tool Mathematica. The approaches introduced comprise the generalized method of exhaustion, the multivariate power substitution and its variants, and the use of permutation symmetry to evaluate definite integrals, which are very important both in their own right, and as necessary intermediate steps towards more involved computation. A key tenet is that such approaches work best when applied to integrals having certain characteristics as a starting point. Most integrals, if used as a starting point, will lead to no result at all, or will lead to a known result. However, there is a special class of integrals (i.e., innovative integrals) which, if used as a starting point for such approaches, will lead to new and useful results, and can also enable the reader to generate many other new results that are not in the book. The reader will find a myriad of novel approaches for evaluating integrals, with a focus on tools such as Mathematica as a means of obtaining useful results, and also checking whether they are already known. Results presented involve the gamma function, the hypergeometric functions, the complementary error function, the exponential integral function, the Riemann zeta function, and others that will be introduced as they arise. The book concludes with selected engineering applications, e.g., involving wave propagation, antenna theory, non-Gaussian and weighted Gaussian distributions, and other areas. The intended audience comprises junior and senior sciences majors planning to continue in the pure and applied sciences at the graduate level, graduate students in mathematics and the sciences, and junior and established researchers in mathematical physics, engineering, and mathematics. Indeed, the pedagogical inclination of the exposition will have students work out, understand, and efficiently use multidimensional integrals from first principles.
Scientific and Engineering C++
Author: John J. Barton
Publisher: Addison-Wesley Professional
ISBN:
Category : Business & Economics
Languages : en
Pages : 696
Book Description
Highlights: builds on knowledge of both FORTRAN and C, the languages most familiar to scientists and engineers; systematically treats object-oriented programming, templates, and the C++ type system; relates the C++ programming process to expressing commonality in the design and implementation of programs; describes how to use existing FORTRAN and C subroutine libraries to implement C++ classes; introduces advanced techniques coordinating templates, inheritance, virtual function interfaces, and exceptions in substantive examples; provides examples, including an extensive family of array classes, smart pointers, class wrappers for LAPACK, classes for abstract algebra and dimensional analysis, function objects, exploiting existing C and FORTRAN libraries, automatic differentiation, and data analysis via nonlinear least squares using the singular value decomposition; and references key sources of new programming ideas and C++ programming techniques.
Publisher: Addison-Wesley Professional
ISBN:
Category : Business & Economics
Languages : en
Pages : 696
Book Description
Highlights: builds on knowledge of both FORTRAN and C, the languages most familiar to scientists and engineers; systematically treats object-oriented programming, templates, and the C++ type system; relates the C++ programming process to expressing commonality in the design and implementation of programs; describes how to use existing FORTRAN and C subroutine libraries to implement C++ classes; introduces advanced techniques coordinating templates, inheritance, virtual function interfaces, and exceptions in substantive examples; provides examples, including an extensive family of array classes, smart pointers, class wrappers for LAPACK, classes for abstract algebra and dimensional analysis, function objects, exploiting existing C and FORTRAN libraries, automatic differentiation, and data analysis via nonlinear least squares using the singular value decomposition; and references key sources of new programming ideas and C++ programming techniques.
College of Engineering
Author: University of Michigan. College of Engineering
Publisher: UM Libraries
ISBN:
Category : Engineering schools
Languages : en
Pages : 432
Book Description
Publisher: UM Libraries
ISBN:
Category : Engineering schools
Languages : en
Pages : 432
Book Description