Inspect
Review the problem, diagram, and evidence.
The latest actual demand was 130 units, but exponential smoothing with Ξ±=0.30 did not replace the forecast with 130. The next forecast became 109.
Inspect, commit, prove, fix, and sign off.
Follow the investigation process used in the field β in five guided steps.
Review the problem, diagram, and evidence.
Choose your hypothesis.
Run calculations and test your idea.
Select and validate a safe correction.
See the full debrief and key takeaways.
A production planner uses single exponential smoothing. The current-period forecast was 100 units, actual demand was 130 units, and Ξ±=0.30. A note sets the next-period forecast directly to 130 units. Determine the correct next-period forecast.
Find the root cause, confirm the fix, and see how this connects to the exam.
The latest actual demand was copied directly into the next forecast.
The previous forecast retains weight when Ξ± is less than one.
Use Fnext=Ξ±A+(1-Ξ±)F.
Using Fnext=Ξ±A+(1-Ξ±)F, the next forecast is 0.30(130)+0.70(100)=109 units.
Single exponential smoothing updates the forecast as Fnext=Ξ±Acurrent+(1-Ξ±)Fcurrent, so the new forecast is a weighted combination unless Ξ±=1.
Fnext=Ξ±Acurrent+(1-Ξ±)Fcurrent.
The forecast responds more strongly to the latest actual observation.
Each case is designed to build the judgment, analysis, and confidence you need for engineering exams β and beyond.
Basic subject familiarity helps, but every case is designed to teach through the investigation itself.
Most cases are designed for a focused 5β10 minute investigation.
Each case is mapped to a verified exam, subject, topic, and misconception before publication.
The sealed debrief unlocks with the root cause, corrected reasoning, fix, and takeaway.