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23-Ind-B1 Reliability and Maintainability: December 2019

Nivaar worked solution (AI-drafted; not reviewed by a licensed engineer)

  1. Question 1 Validity of a Piecewise Probability Function
  2. Question 2 Curriculum Change — Two-Sample Comparison
  3. Question 3 Simulation Model Validation
  4. Question 4 Joint Probability Function — Correlation and Independence
  5. Question 5 Simple Linear Regression — OR I vs. Statistics Marks
  6. Question 6 Sign Test and Independent-Month Binomial Probabilities
  7. Question 7 One-Way ANOVA, Bartlett's Test, and Tukey's HSD
  8. Question 8 Multiple Regression by Matrices — Marathon Performance
  9. Question 9 $2^3$ Factorial Design — Machine Tool Life

Start with Question 1 →

National Exams — December 2019 — 17-Ind-B1 Applied Probability & Statistics. Three-hour, closed-book exam; one of two permitted calculators (Sharp or Casio), one 8.5″×11.0″ aid sheet (both sides), statistical tables supplied. Format: three sections — Section A: do 2 of 4 (20 marks); Section B: do 2 of 3 (40 marks); Section C: do 1 of 2 (20 marks) — a 9-question, 80-mark paper as actually structured by the section table and each question's own printed marks (the front page's own summary line states “Exam: 5 Questions. Total marks: 100”, which is internally inconsistent with 20+40+20=80 from its own section breakdown and every question's printed mark value). All nine questions across the three sections are solved below for completeness.

Reference texts: Montgomery & Runger, Applied Statistics and Probability for Engineers (7th ed., Wiley) — probability density functions and moments (ch. 4), point/interval estimation (ch. 8), two-sample hypothesis testing and the sign test (ch. 9–10, 16), simple linear regression (ch. 11), single-factor ANOVA and multiple comparisons (ch. 13). Montgomery, Peck & Vining, Introduction to Linear Regression Analysis (6th ed., Wiley) — multiple regression by matrices, confidence/prediction intervals (ch. 2–3). Montgomery, Design and Analysis of Experiments (9th ed., Wiley) — Bartlett's test, Tukey's HSD, $2^k$ factorial designs (ch. 3, 6).