Senin, 29 September 2014

Thomas calculus 10th edition solutions pdf

Book description

The tenth edition of this clear, precise calculus text with superior applications sets the standard in calculus. The tenth edition of this proven text was carefully revised to give students the solid base they need to succeed in math, science and engineering programs. Through a comprehensive technology package, this edition now includes more opportunity to incorporate optional, but meaningful technology into the course.
Table Of Content

Preliminaries
Real Numbers and the Real Line
Lines, Circles, and Parabolas
Functions and Their Graphs
Identifying Functions; Mathematical Models
Combining Functions; Shifting and Scaling Graphs
Trigonometric Functions
Graphing with Calculators and Computers

2. Limits and Derivatives
Rates of Change and Limits
Calculating Limits Using the Limit Laws
Precise Definition of a Limit
One-Sided Limits and Limits at Infinity
Infinite Limits and Vertical Asymptotes
Continuity
Tangents and Derivatives

3. Differentiation
The Derivative as a Function
Differentiation Rules
The Derivative as a Rate of Change
Derivatives of Trigonometric Functions
The Chain Rule and Parametric Equations
Implicit Differentiation
Related Rates
Linearization and Differentials

4. Applications of Derivatives
Extreme Values of Functions
The Mean Value Theorem
Monotonic Functions and the First Derivative Test
Concavity and Curve Sketching
Applied Optimization Problems
Indeterminate Forms and L'Hopital's Rule
Newton's Method
Antiderivatives

5. Integration
Estimating with Finite Sums
Sigma Notation and Limits of Finite Sums
The Definite Integral
The Fundamental Theorem of Calculus
Indefinite Integrals and the Substitution Rule
Substitution and Area Between Curves

6. Applications of Definite Integrals
Volumes by Slicing and Rotation About an Axis
Volumes by Cylindrical Shells
Lengths of Plane Curves
Moments and Centers of Mass
Areas of Surfaces of Revolution and The Theorems of Pappus
Work
Fluid Pressures and Forces

7. Transcendental Functions
Inverse Functions and their Derivatives
Natural Logarithms
The Exponential Function
ax and loga x
Exponential Growth and Decay
Relative Rates of Growth
Inverse Trigonometric Functions
Hyperbolic Functions

8. Techniques of Integration
Basic Integration Formulas
Integration by Parts
Integration of Rational Functions by Partial Fractions
Trigonometric Integrals
Trigonometric Substitutions
Integral Tables and Computer Algebra Systems
Numerical Integration
Improper Integrals

9. Further Applications of Integration
Slope Fields and Separable Differential Equations
First-Order Linear Differential Equations
Euler's Method
Graphical Solutions of Autonomous Equations
Applications of First-Order Differential Equations

10. Conic Sections and Polar Coordinates
Conic Sections and Quadratic Equations
Classifying Conic Sections by Eccentricity
Quadratic Equations and Rotations
Conics and Parametric Equations; The Cycloid
Polar Coordinates
Graphing in Polar Coordinates
Area and Lengths in Polar Coordinates
Conic Sections in Polar Coordinates

11. Infinite Sequences and Series
Sequences
Infinite Series
The Integral Test
Comparison Tests
The Ratio and Root Tests
Alternating Series, Absolute and Conditional Convergence
Power Series
Taylor and Maclaurin Series
Convergence of Taylor Series; Error Estimates
Applications of Power Series
Fourier Series

12. Vectors and the Geometry of Space
Three-Dimensional Coordinate Systems
Vectors
The Dot Product
The Cross Product
Lines and Planes in Space
Cylinders and Quadric Surfaces

13. Vector-Valued Functions and Motion in Space
Vector Functions
Modeling Projectile Motion
Arc Length and the Unit Tangent Vector T
Curvature and the Unit Normal Vector N
Torsion and the Unit Binormal Vector B
Planetary Motion and Satellites

14. Partial Derivatives
Functions of Several Variables
Limits and Continuity in Higher Dimensions
Partial Derivatives
The Chain Rule
Directional Derivatives and Gradient Vectors
Tangent Planes and Differentials
Extreme Values and Saddle Points
Lagrange Multipliers
*Partial Derivatives with Constrained Variables
Taylor's Formula for Two Variables

15. Multiple Integrals
Double Integrals
Areas, Moments and Centers of Mass*
Double Integrals in Polar Form
Triple Integrals in Rectangular Coordinates
Masses and Moments in Three Dimensions
Triple Integrals in Cylindrical and Spherical Coordinates
Substitutions in Multiple Integrals

16. Integration in Vector Fields
Line Integrals
Vector Fields, Work, Circulation, and Flux
Path Independence, Potential Functions, and Conservative Fields
Green's Theorem in the Plane
Surface Area and Surface Integrals
Parametrized Surfaces
Stokes' Theorem
The Divergence Theorem and a Unified Theory

Appendices
Mathematical Induction
Proofs of Limit Theorems
Commonly Occurring Limits
Theory of the Real Numbers
Complex Numbers
The Distributive Law for Vector Cross Products
Determinants and Cramer's Rule
The Mixed Derivative Theorem and the Increment Theorem
The Area of a Parallelogram's Projection on a Plane

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Solution manual of linear algebra and its applications 4th edition by david c. lay


Book description

Linear algebra is relatively easy for students during the early stages of the course, when the material is presented in a familiar, concrete setting. But when abstract concepts are introduced, students often hit a brick wall. Instructors seem to agree that certain concepts (such as linear independence, spanning, subspace, vector space, and linear transformations), are not easily understood, and require time to assimilate. Since they are fundamental to the study of linear algebra, students' understanding of these concepts is vital to their mastery of the subject. David Lay introduces these concepts early in a familiar, concrete Rn setting, develops them gradually, and returns to them again and again throughout the text so that when discussed in the abstract, these concepts are more accessible.

Table of Content

1. Linear Equations in Linear Algebra
Introductory Example: Linear Models in Economics and Engineering
1.1 Systems of Linear Equations
1.2 Row Reduction and Echelon Forms
1.3 Vector Equations
1.4 The Matrix Equation Ax = b
1.5 Solution Sets of Linear Systems
1.6 Applications of Linear Systems
1.7 Linear Independence
1.8 Introduction to Linear Transformations
1.9 The Matrix of a Linear Transformation
1.10 Linear Models in Business, Science, and Engineering
Supplementary Exercises

2. Matrix Algebra
Introductory Example: Computer Models in Aircraft Design
2.1 Matrix Operations
2.2 The Inverse of a Matrix
2.3 Characterizations of Invertible Matrices
2.4 Partitioned Matrices
2.5 Matrix Factorizations
2.6 The Leontief Input�Output Model
2.7 Applications to Computer Graphics
2.8 Subspaces of Rn
2.9 Dimension and Rank
Supplementary Exercises

3. Determinants
Introductory Example: Random Paths and Distortion
3.1 Introduction to Determinants
3.2 Properties of Determinants
3.3 Cramer�s Rule, Volume, and Linear Transformations
Supplementary Exercises

4. Vector Spaces
Introductory Example: Space Flight and Control Systems
4.1 Vector Spaces and Subspaces
4.2 Null Spaces, Column Spaces, and Linear Transformations
4.3 Linearly Independent Sets; Bases
4.4 Coordinate Systems
4.5 The Dimension of a Vector Space
4.6 Rank
4.7 Change of Basis
4.8 Applications to Difference Equations
4.9 Applications to Markov Chains
Supplementary Exercises

5. Eigenvalues and Eigenvectors
Introductory Example: Dynamical Systems and Spotted Owls
5.1 Eigenvectors and Eigenvalues
5.2 The Characteristic Equation
5.3 Diagonalization
5.4 Eigenvectors and Linear Transformations
5.5 Complex Eigenvalues
5.6 Discrete Dynamical Systems
5.7 Applications to Differential Equations
5.8 Iterative Estimates for Eigenvalues
Supplementary Exercises

6. Orthogonality and Least Squares
Introductory Example: Readjusting the North American Datum
6.1 Inner Product, Length, and Orthogonality
6.2 Orthogonal Sets
6.3 Orthogonal Projections
6.4 The Gram�Schmidt Process
6.5 Least-Squares Problems
6.6 Applications to Linear Models
6.7 Inner Product Spaces
6.8 Applications of Inner Product Spaces
Supplementary Exercises

7. Symmetric Matrices and Quadratic Forms
Introductory Example: Multichannel Image Processing
7.1 Diagonalization of Symmetric Matrices
7.2 Quadratic Forms
7.3 Constrained Optimization
7.4 The Singular Value Decomposition
7.5 Applications to Image Processing and Statistics
Supplementary Exercises

8. The Geometry of Vector Spaces
Introductory Example: The Platonic Solids
8.1 Affine Combinations
8.2 Affine Independence
8.3 Convex Combinations
8.4 Hyperplanes
8.5 Polytopes
8.6 Curves and Surfaces

9. Optimization (Online Only)
Introductory Example: The Berlin Airlift
9.1 Matrix Games
9.2 Linear Programming�Geometric Method
9.3 Linear Programming�Simplex Method
9.4 Duality

10. Finite-State Markov Chains (Online Only)
Introductory Example: Google and Markov Chains
10.1 Introduction and Examples
10.2 The Steady-State Vector and Google's PageRank
10.3 Finite-State Markov Chains
10.4 Classification of States and Periodicity
10.5 The Fundamental Matrix
10.6 Markov Chains and Baseball Statistics

Appendices
A. Uniqueness of the Reduced Echelon Form
B. Complex Numbers

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Minggu, 28 September 2014

Elementary linear algebra 7th edition book by kolman

Book Description
This book presents the basic ideas of linear algebra in a manner that users will find understandable. It offers a fine balance between abstraction/theory and computational skills, and gives readers an excellent opportunity to learn how to handle abstract concepts. Included in this comprehensive and easy-to-follow manual are these topics: linear equations and matrices; solving linear systems; real vector spaces; inner product spaces; linear transformations and matrices; determinants; eigenvalues and eigenvectors; differential equations; and MATLAB for linear algebra. Because this book gives real applications for linear algebraic basic ideas and computational techniques, it is useful as a reference work for mathematicians and those in field of computer science.
Table of Content
1 - Linear Equations And Matrices
2 - Solving Linear Systems 
3 - Determinants
4 - Real Vector Spaces
5 - Inner Product Spaces
6 - Linear Transformations and Matrices 
7 - Eigenvalues and Eigenvectors 
8 - Applications of Eigenvalues and Eigenvectors (Optional) 
9 - MATLAB for Linear Algebra 
10 - MATLAB Exercises
A P P E N D I X A Preliminaries
A P P E N D I X B Complex Numbers
A P P E N D I X C Introduction to Proofs

File Size         5.2Mb
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Jumat, 26 September 2014

Solution manual of logic and computer design fundamentals by morris mano 4th edition

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Description
For one- to two-semester Computer Science and Engineering courses in logic and digital design.
Featuring a strong emphasis on the fundamentals underlying contemporary logic design using hardware description languages, synthesis, and verification, this book focuses on the ever-evolving applications of basic computer design concepts with strong connections to real-world technology.
   Solution of the following content

1. Digital Systems and Information

2. Combinational Logic Circuits

3. Combinational Logic Design

4. Arithmetic Functions and HDLs

5. Sequential Circuits

6. Selected Design Topics

7. Registers and Register Transfers

8. Memory Basics

9. Computer Design Basics

10. Instruction Set Architecture

11. RISC and CISC Processors

12. Input-Output and Communication

13. Memory Systems
Pages               1 - 294

File Size            2 Mb

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Senin, 15 September 2014

Digital Design of Signal Processing Systems By Shoab Ahmed Khan


Digital Design of Signal Processing Systems: A Practical Approach discusses a spectrum of architectures and methods for effective implementation of algorithms in hardware. This book includes conversion of algorithms from floating point to fixed point format, parallel architectures for basic computational blocks, Verilog Hardware Description Language (HDL), Coding guidelines for synthesis.
A special emphasis is placed on implementing streaming applications. Several architectures for implementing common algorithms in signal processing are also explained.

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Jumat, 12 September 2014

Electric Circuits Fundamentals By Sergio Franco


This exciting new book teaches the foundations of electric circuits and develops a thinking style and a problem solving methodology that is based on physical insight. Designed for the first course or sequence in circuits in electrical engineering, the approach imparts not only an appreciation for the elegance of the mathematics of circuit theory, but a genuine "feel" for a circuit's physical operation. This will benefit students not only in the rest of curriculum, but in being able to cope with rapidly changing technology they will face on-the-job.
The text covers all the traditional topics in a way that holds students' interest. The presentation is only as mathematically rigorous as is needed, and theory is always related to real life situations. Franco introduces ideal transformers and amplifiers early on to stimulate student interest by giving a taste of actual engineering practice.


       

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Kamis, 11 September 2014

Object Oriented Programming in C++ By Robert Lafore (4th Edition)


Object Oriented Programming in C++ begins with the principles of the C++ programming language and systematically introduces increasingly advanced topics while illustrating the OOP methodology. While the structure of this book is similar to that of previous edition, each chapter reflects the latest ANSI C++ standard and the examples have been thoroughly revised to reflect current practices and standards.

Educationals Supplement suggested solutions to the programming projects found at the end of each chapter are made available to instructors at recognized educational institutions. This educational supplement can be found at www.prenhall.com in the instructor Resource Center.

       

Selasa, 09 September 2014

Handbook of Formula and Physical Constants


The purpose of this Handbook is to provide, in highly accessible form, selected data for professional and students. Coverage of topics and authors were carefully chosen to fulfill these objectives. The Topics include SI Multiples, Basic Units, Mathematical Formula, Applied Mechanics, Thermodynamics, Fluid Mechanics, Electricity, Periodic table etc.




       

Jumat, 05 September 2014

Electronic Instrumentation & Measurements By David A. Bell


Electronic Instrumentation and Measurements offers a complete treatment for both digital and analog instruments, their operation, application and limitations. Measurement methods and precision are also covered, Commencing with the explanation of units, dimensions and standards, the text treats measurement errors, the electromechanical instruments and analog electronics VOMs. A single chapter is devoted to the explanation of digital instruments and frequency meters.
Instruments calibration is also explained and methods of measuring resistance, inductance, and capacitance are also covered in detail. The operation and application of oscilloscopes is comprehensively treated.

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Kamis, 04 September 2014

Digital Image Processing (Solution Manual) By Gonzalez - Woods (3rd Edition)

Gonzalez's Digital Image Processing is the leader in the field for more than twenty years. This introduction to the basic concepts and methodologies for digital image processing continues its focus on development in all mainstream areas of image processing. Completely self contained, heavily illustrated and mathematically accessible, it has a scope of application that is not limited to the solution of specialized problems. Digital image fundamentals, image enhancement in spatial domain, image enhancement in frequency domain, image restoration, color image processing, wavelets and multi-resolution processing, image compression, morphological image processing, image segmentation, representation and description, object recognition for technicians interested in fundamentals and contemporary applications of digital image processing.

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Digital Image Processing By Gonzalez - Woods (3rd Edition)

Gonzalez's Digital Image Processing is the leader in the field for more than twenty years. This introduction to the basic concepts and methodologies for digital image processing continues its focus on development in all mainstream areas of image processing. Completely self contained, heavily illustrated and mathematically accessible, it has a scope of application that is not limited to the solution of specialized problems. Digital image fundamentals, image enhancement in spatial domain, image enhancement in frequency domain, image restoration, color image processing, wavelets and multi-resolution processing, image compression, morphological image processing, image segmentation, representation and description, object recognition for technicians interested in fundamentals and contemporary applications of digital image processing.

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Senin, 01 September 2014

Power Electronics - Circuits, Devices and Applications (Solution Manual) By M.H. Rashid (3rd Edition)

Power Electronics By M.H. Rashid 3rd Edition covers the basics of emerging areas in power electronics and a broad range of topics such as power switching devices, conversion methods, analysis and techniques and applications. Its unique approach covers the characteristics of semiconductor devices first and then discusses the applications of these devices for power conversions. Well written and easy to follow. The book features numerous worked out examples that demonstrate the applications of conversion techniques in design and analysis of converter circuits. Chapter topics include power semiconductor diodes and circuits, diode rectifiers, power transistors, DC-DC converters, pulse width modulated inverters, thyristors, resonant pulse inverters, multilevel inverters, controlled rectifiers etc.

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Power Electronics - Circuits, Devices and Applications By M.H. Rashid (3rd Edition)

Power Electronics By M.H. Rashid 3rd Edition covers the basics of emerging areas in power electronics and a broad range of topics such as power switching devices, conversion methods, analysis and techniques and applications. Its unique approach covers the characteristics of semiconductor devices first and then discusses the applications of these devices for power conversions. Well written and easy to follow. The book features numerous worked out examples that demonstrate the applications of conversion techniques in design and analysis of converter circuits. Chapter topics include power semiconductor diodes and circuits, diode rectifiers, power transistors, DC-DC converters, pulse width modulated inverters, thyristors, resonant pulse inverters, multilevel inverters, controlled rectifiers etc.

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