Inspect
Review the problem, diagram, and evidence.
An NPN switch has VCC = 5 V, Rc = 100 Ω, β = 100, and Ib = 1 mA. βIb predicts 100 mA, but with VCE(sat) ≈ 0.2 V the collector circ
Inspect, commit, prove, fix, and sign off.
Follow the investigation process used in the field — 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.
An NPN switch has VCC = 5 V, Rc = 100 Ω, β = 100, and Ib = 1 mA. βIb predicts 100 mA, but with VCE(sat) ≈ 0.2 V the collector circuit can supply only about 48 mA, so the transistor saturates.
Find the root cause, confirm the fix, and see how this connects to the exam.
Applying Ic = βIb without checking whether the collector circuit can support that current.
βIb predicts 100 mA, but the collector loop allows only about 48 mA; therefore the BJT is saturated and Ic is circuit-limited.
βIb predicts 100 mA, but the collector loop allows only about 48 mA; therefore the BJT is saturated and Ic is circuit-limited.
Check the device model and operating region first, then apply the corresponding circuit equation.
βIb predicts 100 mA, but the collector loop allows only about 48 mA; therefore the BJT is saturated and Ic is circuit-limited.
Each case is designed to build the judgment, analysis, and confidence you need for engineering exams — and beyond.
Basic subject familiarity helps, but every case is designed to teach through the investigation itself.
Most cases are designed for a focused 5–10 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.