CPM Fundamentals - Worked Examples
CPM, Pert, and S-Curve Training Module
Example 1: Determining Early Finish for Single Activity
A canal excavation activity has an Early Start () of day and a duration of days. Calculate the Early Finish () of the excavation.
Step-by-Step Solution
0 of 2 Steps CompletedExample 12: Network Diagram Logic for Curing and Testing Constraints
A canal turnover sequence requires the following dependent activities:
- Activity F (Concrete Lining) finishes on day .
- Activity G (Concrete Curing) requires days and must finish before any testing can occur. It depends directly on Activity F.
- Activity H (Water Delivery Testing) requires days and depends directly on Activity G.
- Activity I (Final Turnover Inspection) depends on Activity H and requires days.
Calculate the Early Finish () of the Final Turnover Inspection.
Step-by-Step Solution
0 of 3 Steps CompletedExample 4: Predecessor Logic with Access Constraints
A lateral canal excavation (Activity C) requires Right-of-Way (ROW) clearing (Activity A) to be finished. The clearing finishes on day . However, due to local community access constraints, the equipment cannot mobilize to the site until day (Activity B). If Activity C requires both Activity A and Activity B to be completed before it can start, calculate the Early Start of the lateral canal excavation.
Step-by-Step Solution
0 of 3 Steps CompletedExample 2: Activity Duration Estimation for Canal Excavation
A canal section requires of excavation. A backhoe and dump truck crew has a verified daily output of . Calculate the planned duration for the canal excavation activity, assuming a efficiency factor due to limited site access.
Step-by-Step Solution
0 of 2 Steps CompletedExample 3: Early Start with Multiple Predecessors
Concrete lining can begin only after canal excavation, subgrade preparation, and formwork are completely finished. Their Early Finishes are day , day , and day , respectively. Calculate the Early Start for the concrete lining activity.
Step-by-Step Solution
0 of 2 Steps CompletedExample 5: Computing Total Float for an Irrigation Structure
A structure installation activity has an Early Start () of day , Early Finish () of day , Late Start () of day , and Late Finish () of day . Calculate the Total Float.
Step-by-Step Solution
0 of 2 Steps CompletedExample 6: Identifying the Critical Path in a Simplified Network
A simplified irrigation project network has three continuous paths from start to finish:
- Path A: Site Survey, Canal Excavation, Concreting, Concrete Curing = days
- Path B: Site Survey, Material Delivery, Structure Installation = days
- Path C: Site Survey, Final Inspection, Project Turnover = days
Identify the critical path and determine the minimum project completion time.
Step-by-Step Solution
0 of 2 Steps CompletedExample 7: Free Float for a Material Delivery Activity
A material delivery activity finishes on day (). Its immediate and only successor, structure installation, has an Early Start () of day . Calculate the free float of the delivery activity.
Step-by-Step Solution
0 of 2 Steps CompletedExample 8: Early Start and Early Finish in a Network Sequence
An activity sequence consists of Canal Excavation (Task A) followed by Subgrade Preparation (Task B). Task A has an Early Start () of and a duration of days. Task B has a duration of days. Calculate the Early Start and Early Finish for both tasks.
Step-by-Step Solution
0 of 3 Steps CompletedExample 9: Backward Pass Scheduling for Curing
Concrete Curing (Task C) has a duration of days and precedes Water Delivery Testing (Task D), which has a Late Start () of days. If Task D is the only immediate successor of Task C, calculate the Late Finish () and Late Start () of Task C.
Step-by-Step Solution
0 of 3 Steps CompletedExample 10: Total Float and Free Float for Procurement
Procurement of steel gates (Activity E) has a duration of days, with days and days. Its immediate successors are Gate Installation (Activity F, which has days) and Electrical Wiring (Activity G, which has days). Calculate the Total Float and Free Float of Activity E.
Step-by-Step Solution
0 of 4 Steps CompletedExample 11: Determining Critical Path in Complex Irrigation Works
A project network diagram for an irrigation dam has three parallel paths with expected durations:
- Path 1: Cofferdam Construction River Diversion Core Trench Excavation with duration days
- Path 2: Foundation Grouting Embankment Fill Spillway Concreting with duration days
- Path 3: Access Road Grading Temporary Facilities Setup with duration days
Identify the critical path and the total project duration.