Description

Book Synopsis
This text addresses a number of technical skills in mathematics, physics, and specific areas of nuclear engineering that will prepare the student for optimum performance in any nuclear engineering or medical physics curriculum. The book opens with fundamentals in probability and statistics, ODEs, series solutions, general differential equations, numerical methods, up through PDEs, and incorporates modeling and simulation, radiation, heat transfer, neutron diffusion problems, advanced solution methods, and engineering problem solving. The book specifically focuses on examples in nuclear and radiological engineering, and is thus a unique text for nuclear engineering students. A course using the book may range from three to four credits. Several applications in Mathematica are written to illustrate technical concepts.

Table of Contents
Introduction to Nuclear Engineering Analysis; Programming; Radiation; Essentials of Probability; Introduction to Numerical Applications; Fundamentals of Complex Numbers; Applications of Power Series; Methods for Solving Differential Equations; Applications of Linear Algebra; Fourier Series and Vector Calculus Applications; Partial Differential Equations Solution Methods; Numerical Solutions to PDEs; Applications in Nuclear Science and Engineering

Foundations In Applied Nuclear Engineering

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    Order before 4pm tomorrow for delivery by Thu 18 Jun 2026.

    A Hardback by Glenn E Sjoden

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      View other formats and editions of Foundations In Applied Nuclear Engineering by Glenn E Sjoden

      Publisher: World Scientific Publishing Co Pte Ltd
      Publication Date: 16/07/2009
      ISBN13: 9789812837752, 978-9812837752
      ISBN10: 9812837752

      Description

      Book Synopsis
      This text addresses a number of technical skills in mathematics, physics, and specific areas of nuclear engineering that will prepare the student for optimum performance in any nuclear engineering or medical physics curriculum. The book opens with fundamentals in probability and statistics, ODEs, series solutions, general differential equations, numerical methods, up through PDEs, and incorporates modeling and simulation, radiation, heat transfer, neutron diffusion problems, advanced solution methods, and engineering problem solving. The book specifically focuses on examples in nuclear and radiological engineering, and is thus a unique text for nuclear engineering students. A course using the book may range from three to four credits. Several applications in Mathematica are written to illustrate technical concepts.

      Table of Contents
      Introduction to Nuclear Engineering Analysis; Programming; Radiation; Essentials of Probability; Introduction to Numerical Applications; Fundamentals of Complex Numbers; Applications of Power Series; Methods for Solving Differential Equations; Applications of Linear Algebra; Fourier Series and Vector Calculus Applications; Partial Differential Equations Solution Methods; Numerical Solutions to PDEs; Applications in Nuclear Science and Engineering

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