Step 1: Two ways to increase the force on a current-carrying conductor:
\[ F = BIL \sin\theta \]
where:
\( F \) = force on the conductor, \( B \) = magnetic field strength, \( I \) = current, \( L \) = length of the conductor in the field, \( \theta \) = angle between field and current.
Step 2: Device based on this principle:
The working of an
electric motor depends on the force experienced by a current-carrying conductor in a magnetic field.
Step 3: Fleming’s Left-Hand Rule:
It states that —
“If the forefinger, middle finger, and thumb of the left hand are stretched mutually perpendicular to each other, then —”

Note: The interaction between magnetic field and electric current is the fundamental principle behind all
electromechanical devices such as electric motors, loudspeakers, and galvanometers.