To use your left hand to determine the direction of the voltage developed in moving conductor place your forefinger in the direction of the lines of force. Fleming developed this hand rule.
To use your left hand to determine the direction of the voltage developed in a moving conductor in a stationary magnetic field, you must point your forefinger in the direction of the lines of force.
The answer choices weren't provided. To use your left hand to determine the direction of the voltage developed in a moving conductor in a stationary magnetic field you must point your forefinger in the direction of the lines of force.
forefinger in the direction of the lines of force
The right hand rule can be used to determine the direction of the magnetic field by pointing the thumb of your right hand in the direction of the current flow and curling your fingers. The direction in which your fingers curl represents the direction of the magnetic field.
The right hand rule is used in physics to determine the direction of vectors. By pointing the thumb of your right hand in the direction of the first vector and aligning your fingers in the direction of the second vector, the direction in which your palm faces indicates the direction of the resulting vector.
To determine the direction of the magnetic field using the right-hand rule, point your thumb in the direction of the current flow and curl your fingers. The direction your fingers curl represents the direction of the magnetic field.
To use the right hand rule to determine the direction of a magnetic field, point your thumb in the direction of the current flow and curl your fingers. The direction your fingers curl represents the direction of the magnetic field.
To apply the right hand rule in physics to determine the direction of a magnetic field, point your thumb in the direction of the current flow and curl your fingers. The direction your fingers curl represents the direction of the magnetic field.
To use the right hand rule in physics to determine the direction of magnetic fields, point your thumb in the direction of the current flow and curl your fingers. The direction your fingers curl represents the direction of the magnetic field.
The right-hand rule for the cross product is a way to determine the direction of the resulting vector. To use it, align your right hand's fingers in the direction of the first vector and then curl them towards the second vector. Your thumb will point in the direction of the resulting vector.
To determine the direction of north using a watch, hold the watch flat and point the hour hand towards the sun. The midpoint between the hour hand and 12 o'clock on the watch face will indicate the direction of south. North will be in the opposite direction.
To use the right hand rule for magnetism to determine the direction of magnetic field lines, point your thumb in the direction of the current flow and curl your fingers. The direction in which your fingers curl represents the direction of the magnetic field lines.