Linear Algebra with Applications 2nd Edition Holt Solutions Manual

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Linear Algebra with Applications 2nd Edition Holt Solutions Manual.

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Product details:

  • ISBN-10 ‏ : ‎ 1464193347
  • ISBN-13 ‏ : ‎ 978-1464193347
  • Author: Jeff Holt

Prepare for conceptual thinking in an abstract setting as Linear Algebra with Applications blends computational and conceptual topics through a large assortment of examples to improve your comfort with the rigors of the subject matter.

Table of contents:

  • Chapter 1: Systems of Linear Equations
    • 1.1: Lines and Linear Equations (29)
    • 1.2: Linear Systems and Matrices (46)
    • 1.3: Applications of Linear Systems (20)
    • 1.4: Numerical Solutions (15)
    • 1: Supplementary Exercises (21)
  • Chapter 2: Euclidean Space
    • 2.1: Vectors (40)
    • 2.2: Span (46)
    • 2.3: Linear Independence (48)
    • 2: Supplementary Exercises (22)
  • Chapter 3: Matrices
    • 3.1: Linear Transformations (24)
    • 3.2: Matrix Algebra (31)
    • 3.3: Inverses (29)
    • 3.4: LU Factorization (18)
    • 3.5: Markov Chains (16)
    • 3: Supplementary Exercises (26)
  • Chapter 4: Subspaces
    • 4.1: Introduction to Subspaces (35)
    • 4.2: Basis and Dimension (54)
    • 4.3: Row and Column Spaces (31)
    • 4.4: Change of Basis (20)
    • 4: Supplementary Exercises (20)
  • Chapter 5: Determinants
    • 5.1: The Determinant Function (47)
    • 5.2: Properties of the Determinant (30)
    • 5.3: Applications of the Determinant (32)
    • 5: Supplementary Exercises (19)
  • Chapter 6: Eigenvalues and Eigenvectors
    • 6.1: Eigenvalues and Eigenvectors (30)
    • 6.2: Diagonalization (16)
    • 6.3: Complex Eigenvalues and Eigenvectors (13)
    • 6.4: Systems of Differential Equations (19)
    • 6.5: Approximation Methods (17)
    • 6: Supplementary Exercises (18)
  • Chapter 7: Vector Spaces
    • 7.1: Vector Spaces and Subspaces (33)
    • 7.2: Span and Linear Independence (40)
    • 7.3: Basis and Dimension (24)
    • 7: Supplementary Exercises (14)
  • Chapter 8: Orthogonality
    • 8.1: Dot Products and Orthogonal Sets (26)
    • 8.2: Projection and the Gram–Schmidt Process (22)
    • 8.3: Diagonalizing Symmetric Matrices and QR Factorization (29)
    • 8.4: The Singular Value Decomposition (17)
    • 8.5: Least Squares Regression (20)
    • 8: Supplementary Exercises (22)
  • Chapter 9: Linear Transformations
    • 9.1: Definition and Properties (23)
    • 9.2: Isomorphisms (20)
    • 9.3: The Matrix of a Linear Transformation (42)
    • 9.4: Similarity (19)
    • 9: Supplementary Exercises (14)
  • Chapter 10: Inner Product Spaces
    • 10.1: Inner Products (41)
    • 10.2: The Gram–Schmidt Process Revisited (26)
    • 10.3: Applications of Inner Products (29)
    • 10: Supplementary Exercises (13)
  • Chapter 11: Additional Topics and Applications
    • 11.1: Quadratic Forms (23)
    • 11.2: Positive Definite Matrices (18)
    • 11.3: Constrained Optimization (18)
    • 11.4: Complex Vector Spaces (20)
    • 11.5: Hermitian Matrices (21)
    • 11: Supplementary Exercises (15)

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