) A long straight wire suspended in the air carries a conventional current of 8.51 A in the -x direction as shown in Figure (the wire runs along the x axis). At a particular instant a proton at location (0, -0.0463, 0) m has velocity (6x 10°. 0, 0) m/s. (Consider the charge of the proton: q, = 1.6x 10-19C). 2 out 1. (" The direction of the magnetic field due to the wire at the location of the proton: Olnto the page OOut of the page OUpward ODownward 21 ;The magnetic field due to the wire can be calculated using the formula number (refer to the formula sheet) What is the (vector) magnetic field due to the wire at the location of the proton? 31. 4(. , The magnetic force acting on the proton calculated using the formula number (refer to the formula sheet) 5 . ) What is the (vector) magnetic force on the proton due to the current in the wire?

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Chapter1: Units, Trigonometry. And Vectors
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) A long straight wire suspended in the air carries a conventional current of 8.51 A in the -x direction as
shown in Figure (the wire runs along the x axis). At a particular instant a proton at location (0,-0.0463, 0) m has velocity (6 x 10°.
0, 0) m/s. (Consider the charge of the proton: q, = 1.6 x 10-19C).
2 out
1. ("
The direction of the magnetic field due to the wire at the location of the proton:
Olnto the page
OOut of the page
OUpward
ODownward
21
;The magnetic field due to the wire can be calculated using the formula number (refer to the formula sheet)
What is the (vector) magnetic field due to the wire at the location of the proton?
31.
4(., The magnetic force acting on the proton calculated using the formula number (refer to the formula sheet)
5 .
) What is the (vector) magnetic force on the proton due to the current in the wire?
Transcribed Image Text:) A long straight wire suspended in the air carries a conventional current of 8.51 A in the -x direction as shown in Figure (the wire runs along the x axis). At a particular instant a proton at location (0,-0.0463, 0) m has velocity (6 x 10°. 0, 0) m/s. (Consider the charge of the proton: q, = 1.6 x 10-19C). 2 out 1. (" The direction of the magnetic field due to the wire at the location of the proton: Olnto the page OOut of the page OUpward ODownward 21 ;The magnetic field due to the wire can be calculated using the formula number (refer to the formula sheet) What is the (vector) magnetic field due to the wire at the location of the proton? 31. 4(., The magnetic force acting on the proton calculated using the formula number (refer to the formula sheet) 5 . ) What is the (vector) magnetic force on the proton due to the current in the wire?
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