A strict threshold scan separates the control decision from the load-current calculation. Exact arithmetic here means exact results for the stated model inputs; measured inputs still carry uncertainty and significant-figure limits.

highlighted = computed this step

The control voltage must be above the threshold

The ideal control rule is strict. Equal to the threshold is not above the threshold, so the boundary row stays open.

Vcontrol>VthresholdV_{\text{control}} > V_{\text{threshold}}
Boundary rowAt the threshold boundary, the load path is still open.12 Vopen4 ohmA0 Acontroloffload

The load current appears only after the switch closes

The source and load resistor are fixed in every row. The only input that changes is the control voltage, and current appears only in the row above threshold.

VcVthVsRLIL3 V6 V12 V4 ohm0 A6 V6 V12 V4 ohm0 A9 V6 V12 V4 ohm3 A\begin{array}{c|c|c|c|c}V_c&V_{\text{th}}&V_s&R_L&I_L\\3\ \text{V}&6\ \text{V}&12\ \text{V}&4\ \text{ohm}&0\ \text{A}\\6\ \text{V}&6\ \text{V}&12\ \text{V}&4\ \text{ohm}&0\ \text{A}\\9\ \text{V}&6\ \text{V}&12\ \text{V}&4\ \text{ohm}&3\ \text{A}\\\end{array}
Controlled load onThe above-threshold row closes the load path.12 Vclosed4 ohmA3 A3 A+-12 Vcontrolonload

The closed row is still Ohm's law

Once the controlled switch closes, the load current is not a separate rule. It is the source voltage divided by the load resistance.

IL=VsRL=12 V/4 ohm=3 AI_L = \frac{V_s}{R_L} = 12\ \text{V}/4\ \text{ohm}=3\ \text{A}
Controlled load currentThe current label comes from the checked load row.12 Vclosed4 ohmA3 A3 A+-12 Vcontrolonload

The boundary row prevents a hidden rounding rule

The scan includes below, equal, and above threshold. That makes the switching rule visible before the current calculation starts.

0 A,0 A,3 A0\ \text{A},\quad 0\ \text{A},\quad 3\ \text{A}
Controlled load auditThe equality row remains open by construction.12 Vopen4 ohmA0 Acontroloffload