A plastic bead with a mass of 0.382 g and a charge of -213 nC is moving at 4870 m/s in a direction 126.7° counterclockwise from the +x axis. At the location of the bead, there is an electric field with a magnitude of 3290 N/C in a direction 58.5° counterclockwise from the +x axis and a magnetic field with a magnitude of 432 mT directed in the +z direction. This coordinate system is arranged so that the +y direction is vertically up. (a) Draw and clearly label a complete free body diagram for the plastic bead. (b) Calculate the magnitude and direction of the electric force on the plastic bead. (C) Calculate the magnitude and direction of the magnetic force on the plastic bead. (d) Calculate the magnitude and direction of the gravitational force on the plastic bead. (e) Use Newton's Second Law to calculate the x, y, and z components of the acceleration of the plastic bead. tx out ot pae

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Chapter1: Units, Trigonometry. And Vectors
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A plastic bead with a mass of 0.382 g and a charge of -213 nC is moving at 4870 m/s in a direction 126.7° counterclockwise from the +x axis. At the location of the
bead, there is an electric field with a magnitude of 3290 N/C in a direction 58.5° counterclockwise from the +x axis and a magnetic field with a magnitude of 432 mT
directed in the +z direction. This coordinate system is arranged so that the +y direction is vertically up.
(a) Draw and clearly label a complete free body diagram for the plastic bead.
(b) Calculate the magnitude and direction of the electric force on the plastic bead.
(C) Calculate the magnitude and direction of the magnetic force on the plastic bead.
(d) Calculate the magnitude and direction of the gravitational force on the plastic bead.
(e) Use Newton's Second Law to calculate the x, y, and z components of the acceleration of the plastic bead.
tx
out ot pae
Transcribed Image Text:A plastic bead with a mass of 0.382 g and a charge of -213 nC is moving at 4870 m/s in a direction 126.7° counterclockwise from the +x axis. At the location of the bead, there is an electric field with a magnitude of 3290 N/C in a direction 58.5° counterclockwise from the +x axis and a magnetic field with a magnitude of 432 mT directed in the +z direction. This coordinate system is arranged so that the +y direction is vertically up. (a) Draw and clearly label a complete free body diagram for the plastic bead. (b) Calculate the magnitude and direction of the electric force on the plastic bead. (C) Calculate the magnitude and direction of the magnetic force on the plastic bead. (d) Calculate the magnitude and direction of the gravitational force on the plastic bead. (e) Use Newton's Second Law to calculate the x, y, and z components of the acceleration of the plastic bead. tx out ot pae
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