A horizontal wire is at y = 0. Current travels in the +x direction. The magnetic field at y = 0.05 is 0.01 T.
1. What is the current in the wire?
2. A 2 C charge is at y = 0.05 m . Its velocity is 15 m/s in the +x direction. What is the force in the charge?
3. What is the direction of the force?
A horizontal wire is at y = 0. Current travels in the +x direction. The magnetic...
A wire lying along a y axis from y= 0 to y 0.142 m carries a current of 2.98 mA in the negative direction of the axis. The wire fully lies in a nonuniform magnetic field given by C = (0.141 T/m)y components of the magnetic force on the wire? (0.462 T/m)y J.what are the (a) x, (b) y, and (c)
A wire lying along a y axis from y= 0 to y 0.142 m carries a current of 2.98...
A charge q=1.0*10^-2 C travels in the x-direction (y is up and,
z is out) at v=1000 m/s..
help me with this. I got 0.600 with direction heading to -Z but
it is wrong. I want to know why.
五 A charge q-1.0x 102 C travels in the x-direction (y is up, z is out) at v-1000 m/s, perpendicular to a wire carrying current 1-2.0 A, and one with current 2-1.0 A at a point 0.01 m from each wire....
(Magnetic Force on a Wire) A horizontal,
current-carrying wire of mass m = 40.0 g is free to slide without
friction along two vertical conducting rails spaced l = 80.0 cm
apart as in Figure. A uniform magnetic field of B = 1.20 T is
directed into the plane of the drawing. What magnitude and
direction (to the right or to the left) must the current have if
the force exerted by the magnetic field on the wire is just...
A 3.0m wire travels through a uniform magnetic field of 0.3 T
with speed 0.5m/s. (The B field is going out of the paper and the
wire is moving o
a) What emf is induced in the wire?
b) if you assume that the ends of the wire are connected to an
external circuit with resistance 2.5 ohms, what is the magnitude
and direction of the current
c) What is the magnitude and direction of the force exerted by
the...
9. Wire 1 and wire 2 are two parallel, horizontal wires. The current in wirel is SA moving to the left, and the current in wire 2 is 10 A, moving to the right. The wires are 15 cm apart, the point P is 5 cm from wire 1. point Q is 5 cm from wire 2, and point R is 5 cm from both point and wire 2. -P Scm SA wire 1 Sem 5cm -R 5cm 10A OE...
A current of 8 amps runs in the +y direction on the y axis. Another current runs in the -y or +y direction 0.1 meters to the left of the y axis. A point charge of -8 coulombs is moving at the 2 m/s in the -x direction at a point which at x = +2.1 m, y = 0. The magnetic force on the charge due to the total magnetic produced by is 18 micro-Newtons in the + y...
Learning Goal: To practice Problem-solving Strategy 24.2 Magnetic force problems A long straight horizontal wire carries a current I = 3.40 A to the left. A positive 1.00 C charge moves to the right at a distance 2.00 m above the wire at constant speed v = 5000 m/s. (Figure 1) What are the magnitude and the direction of the magnetic force on the charge? Part C What is the magnitude B of the magnetic field at the location of the charge due...
A long, straight wire lies along the y-axis and carries a current I = 11 A in the y-direction (see figure. In addition to the magnetic field due to the current in the wire, a uniform magnetic field B0 with magnitude 1.3 x 10-6 T is in the +x-direction. What is the magnitude of the total field at point (c)x = 0, z= -0.21 m? (Give your answer in decimal using "microT" (micro Tesla) as unit )
A wire lying along a y axis from y = 0 to y = 0.350 m carries a current of 3.89 mA in the negative direction of the axis. The wire fully lies in a nonuniform magnetic field given by B→ = (0.334 T/m)yî + (0.570 T/m)yĵ. What are the (a) x, (b) y, and (c) z components of the magnetic force on the wire?
A wire lying along a y axis from y = 0 to y =0.386 m carries a current of 3.65 mA in the negative direction of the axis. The wire fully lies in a nonuniform magnetic field given by B = (0.388T/m)y i + (0.450) T/m)y j. What are the (a) x (b) y and (c) z components of the magnetic force on the wire.