When applying the Left-Hand Rule for a Coil, the fingers ? .
Added by Paul Q.
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This is the direction in which positive charge would move. Show more…
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Which of the following statements for a solenoid is NOT true? a. To determine the magnetic field you grasp the coil in your right hand. b. A solenoid consists of a coiled conductor. c. Your right-hand thumb must be pointed in the direction of the south pole. d. The fingers of your right hand are curled in the direction of the electric current. e. The right hand rule for a solenoid is consistent with the right hand rule for a straight conductor. The direction of the positively charged particle's velocity according to the diagram above must be a. to the left b. to the right c. upward d. out of the page, perpendicular to the page e. into the page, perpendicular to the page
Adi S.
How can the thumb and fingers of your right hand indicate the direction of the magnetic field? Point the thumb of your left hand along the direction of the current's magnetic field. Point the thumb of your right hand along the direction of the magnetic field. Point the thumb of your right hand along the direction of the current. Then, curl your fingers around the main coil.
Sri K.
Circle the correct answers, and draw arrows to complete the diagram. Returning to the actual setup, the conventional current in the coil, Iinduced, moves in the [CW/CCW] direction. Furthermore, due to Ampere's Law, Iinduced produces its own magnetic field. Using the right hand rule, the orientation of the induced magnetic field from the coil, Binduced from coil is drawn below. (Remember that the tip of the magnetic field direction arrow refers to North.)
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