Analysis with an Introduction to Proof 5th Edition Lay Solutions Manual

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Analysis with an Introduction to Proof 5th Edition Lay Solutions Manual.

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Analysis with an Introduction to Proof 5th Edition Lay Solutions Manual

Product details:

  • ISBN-10 ‏ : ‎ 032174747X
  • ISBN-13 ‏ : ‎ 978-0321747471
  • Author: Steven Lay

Analysis with an Introduction to Proof, Fifth Edition helps fill in the groundwork students need to succeed in real analysis―often considered the most difficult course in the undergraduate curriculum. By introducing logic and emphasizing the structure and nature of the arguments used, this text helps students move carefully from computationally oriented courses to abstract mathematics with its emphasis on proofs. Clear expositions and examples, helpful practice problems, numerous drawings, and selected hints/answers make this text readable, student-oriented, and teacher- friendly.

Table contents:

  1. Chapter 1 Logic and Proof
  2. Section 1.1 Logical Connectives
  3. Section 1.2 Quantifiers
  4. Section 1.3 Techniques of Proof: I
  5. Section 1.4 Techniques of Proof: II
  6. Chapter 2 Sets and Functions
  7. Section 2.1 Basic Set Operations
  8. Section 2.2 Relations
  9. Section 2.3 Functions
  10. Section 2.4 Cardinality
  11. Section 2.5 Axioms for Set Theory
  12. Chapter 3 The Real Numbers
  13. Section 3.1 Natural Numbers and Induction
  14. Section 3.2 Ordered Fields
  15. Section 3.3 The Completeness Axiom
  16. Section 3.4 Topology of the Real Numbers
  17. Section 3.5 Compact Sets
  18. Section 3.6 Metric Spaces
  19. Chapter 4 Sequences
  20. Section 4.1 Convergence
  21. Section 4.2 Limit Theorems
  22. Section 4.3 Monotone Sequences and Cauchy Sequences
  23. Section 4.4 Subsequences
  24. Chapter 5 Limits and Continuity
  25. Section 5.1 Limits of Functions
  26. Section 5.2 Continuous Functions
  27. Section 5.3 Properties of Continuous Functions
  28. Section 5.4 Uniform Continuity
  29. Section 5.5 Continuity in Metric Spaces
  30. Chapter 6 Differentiation
  31. Section 6.1 The Derivative
  32. Section 6.2 The Mean Value Theorem
  33. Section 6.3 L’Hospital’s Rule
  34. Section 6.4 Taylor’s Theorem
  35. Chapter 7 Integration
  36. Section 7.1 The Riemann Integral
  37. Section 7.2 Properties of the Riemann Integral
  38. Section 7.3 The Fundamental Theorem of Calculus
  39. Chapter 8 Infinite Series
  40. Section 8.1 Convergence of Infinite Series
  41. Section 8.2 Convergence Tests
  42. Section 8.3 Power Series
  43. Chapter 9 Sequences and Series of Functions
  44. Section 9.1 Pointwise and Uniform Convergence
  45. Section 9.2 Applications of Uniform Convergence
  46. Section 9.3 Uniform Convergence of Power Series
  47. Glossary of Key Terms
  48. References
  49. Hints for Selected Exercises
  50. Index

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