Interview scorecard template

Solar-Powered Vehicle Engineer interview scorecard

Pre-screening scorecard for Solar-Powered Vehicle Engineer candidates.

See AI scoring
engineering applied scienceaerodynamicsbattery management systemmpptphotovoltaic arrayvehicle telemetry
Complete evaluation framework

What to assess and how to score it

Review the evidence signals before interviewing. Then use the anchored descriptions—not instinct alone—to choose the score that best matches each answer.

01
Evaluation factor

Technical depth

35% weight

Check depth on array design and drivetrain: cell selection (silicon versus gallium arsenide), MPPT topology, encapsulation, pack sizing and BMS limits, hub motor efficiency curves, rolling resistance and Cd targets.

Evidence to listen for

  • Explains the physics or mechanism behind their work, not just the tooling
  • Names the standards, tolerances, and constraints they designed against
  • Can defend a design decision under follow-up questions
  • Distinguishes what they personally engineered from what the team delivered

Five-point scoring guide

1
Poor

Cannot explain the fundamentals of their own stated specialism.

2
Needs Improvement

Knows the vocabulary but not the underlying mechanism; struggles under follow-ups.

3
Satisfactory

Solid working knowledge for the role; depth thins out on edge cases.

4
Very Good

Strong command of the domain; explains trade-offs and defends decisions well.

5
Excellent

Quotes real numbers for array watts, MPPT tracking efficiency, pack Wh/kg and drag area, and explains why each trade-off was chosen.

02
Evaluation factor

Work that shipped

30% weight

Ask which vehicles they actually built or raced: World Solar Challenge or Formula Sun entries, scrutineering outcomes, kilometres completed, subsystems they personally owned from CAD to track.

Evidence to listen for

  • Names specific programmes, parts, or systems that reached production or field use
  • States their own scope inside the project
  • Can give measured outcomes: yield, cycle time, cost, failure rate
  • Explains what went wrong and what they changed

Five-point scoring guide

1
Poor

No delivered work; experience is coursework, lab-only, or purely observational.

2
Needs Improvement

Contributed to projects but cannot say what shipped or what their part was.

3
Satisfactory

Has delivered real work; outcomes described without numbers.

4
Very Good

Names shipped work and their scope, with some measured results.

5
Excellent

Names specific cars, race results and the subsystems they signed off, with photos, telemetry logs or lap data to back it.

03
Evaluation factor

Diagnosis under uncertainty

20% weight

Probe how they chased faults nobody had seen before: unexplained array output drop, CAN dropouts, cell imbalance mid-stage, thermal derating, or brake regen inconsistency at speed.

Evidence to listen for

  • Describes a real failure they chased to root cause
  • Shows a method: isolate variables, reproduce, measure, eliminate
  • Distinguishes correlation from cause
  • Says what they ruled out and why, not only what the answer turned out to be

Five-point scoring guide

1
Poor

No diagnostic method; guesses or escalates immediately.

2
Needs Improvement

Trial and error with no structure; cannot explain how they narrowed the cause.

3
Satisfactory

Reasonable method on familiar problems; less structured on novel ones.

4
Very Good

Clear systematic approach with a real root-cause story.

5
Excellent

Walks through instrumented elimination using telemetry, thermal imaging or bench recreation, and states what the root cause turned out to be.

04
Evaluation factor

Working across the org

15% weight

Look for evidence of coordinating composites, electrical, strategy and driver crews, plus sponsor and university stakeholders, under fixed race deadlines and regulation revisions.

Evidence to listen for

  • Explains technical constraints to non-technical stakeholders without condescension
  • Has negotiated scope, cost, or timeline with manufacturing, product, or suppliers
  • Documents decisions so others can act on them
  • Takes review feedback without defensiveness

Five-point scoring guide

1
Poor

Cannot communicate outside their specialism; dismissive of other functions.

2
Needs Improvement

Communication gaps cause rework; avoids stakeholder contact.

3
Satisfactory

Works adequately with other teams; documentation is thin.

4
Very Good

Communicates clearly across functions; reliable collaborator.

5
Excellent

Describes interface documents, weekly integration reviews or shared telemetry dashboards that kept mechanical and electrical teams synchronised before shipping.

Put this rubric to work

Score every candidate against the same standard

Add these weighted factors to Hirevire and let AI evaluate recorded answers against your rubric.

Explore AI Scorecards