Resistance, Resistivity, and Ohm's Law
▶︎ Watch it animatedinteractive step-through · ~3 min · optional ⚙︎ Open the appletResistance Bench · cut a wire from a metal, a length and a diameter, lock it as a reference, then swap the graph axesResistivity is a property of a material and resistance is a property of an object, joined by $R = \rho L/A$. Length scales the resistance in direct proportion while the cross-sectional area divides it, and for a round wire the radius or diameter reaches $R$ through a square, so doubling the diameter quarters the resistance. Ohm's law is the claim that $R$ holds constant as the current varies, true of ohmic materials and not of a lamp filament, whose resistance rises with temperature so its characteristic curve bends. On a plot of current against potential difference the slope is $1/R$, so the steeper line belongs to the smaller resistance.
Four errors dominate. Using a table value of resistivity as the resistance of a particular wire, or arguing that two wires of the same metal must have equal resistance. Scaling resistance linearly with diameter or radius when the area carries the square. Carrying a lamp's resistance from one operating point to another as though it were constant. And ranking resistances off the slope of a graph without checking which quantity sits on which axis.
The work
3 ways in · any order
Lesson
Resistance, Resistivity, and Ohm's Law
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Splits the material constant from the object's resistance, squares the diameter dependence, restricts Ohm's law to ohmic devices, and reads a characteristic graph off its axes rather than off habit.
Diagnostic
10-item topic check
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Ten items spanning the failure modes of this topic: using resistivity as a resistance, scaling resistance linearly with diameter, carrying a lamp's resistance to a different operating point, and ranking resistances backward off a graph. Take it cold to find which one is yours, or after the lesson to confirm it is not.
Targeted Practice
Drill a single misconception
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Pick one of the failure modes you missed and drill it on its own. The round is adaptive: two correct in a row clears it for now and moves you to the next. Two in a row is a checkpoint, not proof: if the error resurfaces later, the misconception comes back.