Part 1.c 0,75 m. 1.5 m. I- SA I2= 1A #1 (11 pts.) The two long...
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Part 1.c 0,75 m. 1.5 m. I- SA I2= 1A #1 (11 pts.) The two long straight wires shown are perpendicular, insulated from each other, and small enough so that they may be considered to be in the same plane. The wires are not free to move. Point P. in the same plane as the wires, is 0.75 meter from the wire carrying a current of 1 ampere and is 1.5 meters from the wire carrying a current of 5 amperes. a. (6 pts.) Determine the magnitude of the net magnetic field at P due to the currents. b. (1 pt.) What is the direction of the net magnetic field at P due to the currents? A charged particle at point P that is instantaneously moving with a velocity of 2 X 10° mis toward the bottom of the page experiences a force of 3 X 10 newtons to the left due to the two currents. C. (1 pt.) State whether the charge on the particie is positive or negative. d. (3 pts.) Determine the magnitude of the charge on the particle. Part 1.c 0,75 m. 1.5 m. I- SA I2= 1A #1 (11 pts.) The two long straight wires shown are perpendicular, insulated from each other, and small enough so that they may be considered to be in the same plane. The wires are not free to move. Point P. in the same plane as the wires, is 0.75 meter from the wire carrying a current of 1 ampere and is 1.5 meters from the wire carrying a current of 5 amperes. a. (6 pts.) Determine the magnitude of the net magnetic field at P due to the currents. b. (1 pt.) What is the direction of the net magnetic field at P due to the currents? A charged particle at point P that is instantaneously moving with a velocity of 2 X 10° mis toward the bottom of the page experiences a force of 3 X 10 newtons to the left due to the two currents. C. (1 pt.) State whether the charge on the particie is positive or negative. d. (3 pts.) Determine the magnitude of the charge on the particle.
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