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Basic Applied Mathematics for the Physical Sciences, third updated edition: Based on the syllabus of the University of Delhi, 3/e

Basic Applied Mathematics for the Physical Sciences, third updated edition:  Based on the syllabus of the University of Delhi,  3/e

Author(s):
  • R. D. Sarma
  • Umesh kumar
  • Author: R. D. Sarma
    • ISBN:9788131787823
    • 10 Digit ISBN:8131787826
    • Price:Rs. 535.00
    • Pages:440
    • Imprint:Pearson Education
    • Binding:Paperback
    • Status:Available


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    Basic Applied Mathematics for the Physical Sciences offers an introductory course in mathematics for the undergraduate students of physical sciences and applied physical sciences in the University of Delhi. Well structured into three parts, this book presents an in-depth study of matrices, calculus and complex numbers. It provides a perfect blend of theoretical principles and numerical problems to help students enhance their understanding of mathematical concepts and their applications. A student-friendly approach and an easy-paced treatment of all relevant topics make this book useful for students of mathematics.

    Table of Content

    1. Matrices
    2. Vectors in R2 and R3
    3. Linear Transformations
    4. Eigenvalues and Eigenvectors
    5. Sequences
    6. Functions and Their Graphs
    7. Differential Equations in Mathematical Modelling
    8. Successive Differentiation
    9. Polynomial Approximation of Functions
    10. Functions of Two Variables
    11. Geometry of Complex Numbers
    12. De Moivre's Theorem

    Salient Features

    • Completely covers the semester-wise revised syllabus of the University of Delhi
    • Includes the University of Delhi's solved question papers for the years 2010-11 and 2011-12
    • Mathematical concepts explained using illustrative examples, diagrams and problems from various domains of science
    • More than 350 solved examples interspersed in the text
    • 700 practice problems
    • Statistical, logarithmic and exponential tables provided, making the text completely self-contained