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16-Civ-B10 Traffic Engineering: December 2019

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

  1. Question 1 Crest vertical curves and sight distance
  2. Question 2 Webster signal design for a four-approach intersection
  3. Question 3 Definitions and discussion
  4. Question 4 M/M/1 queue at a single cashier
  5. Question 5 The same intersection with 10 % lower saturation flows and a 20 % higher PHF
  6. Question 6 Moving-vehicle (Wardrop) volume and travel-time study
  7. Question 7 D/D/1 deterministic queueing at a signal approach

Start with Question 1 →

Paper format. National Examinations, December 2019, 16-Civ-B10 Traffic Engineering. Three-hour duration, OPEN BOOK (any non-communicating calculator permitted). Seven questions on four pages, all of equal value at 20 marks each; the paper requires five solutions and marks only the first five as they appear in the answer book. Because the set is a study resource, all seven questions are solved here. The paper’s own Note 1 invites a clear statement of any assumptions made and Note 2 permits any required-but-not-given data to be assumed; every assumption used below is stated explicitly where it is introduced. Page 2 reproduces the AASHTO 2001 metric stopping-sight-distance table, whose footnote fixes the brake-reaction time at 2.5 s and the deceleration at 3.4 m/s2; Question 1 is built around it.

Reference texts.

Canadian context. These are Engineers Canada national examinations, so the answers are framed for Canadian practice: the TAC Geometric Design Guide for Canadian Roads and the MUTCDC are the governing documents and metric design controls are used throughout. Question 1 supplies the AASHTO 2001 metric table directly, so that table is used as printed — the TAC guide adopts the same 2.5 s / 3.4 m/s2 stopping model, so the two agree here. Lane widths, walking speed and crosswalk geometry follow TAC and MUTCDC practice.