Question: A thin conducting wire forms the shape of a right-angled triangle AOB in the xy-plane,...
A very thin wire lies in the xy plane. It has the shape shown below consisting of two circular segments, centered at the origin, which are connected together. There is a current i in the wire as shown. A particle with charge q is at the origin with some velocity in the +x direction. R 2R φ Vo 9 (out of page) If the magnetic field at the origin was measured to be B = - Biv and an external...
A conducting wire formed in the shape of a right triangle with base b = 38 cm and height h = 65 cm and having resistance R = 1.1 Ω, rotates uniformly around the y-axis in the direction indicated by the arrow (clockwise as viewed from above (loooking down in the negative y-direction)). The triangle makes one complete rotaion in time t = T = 1.8 seconds. A constant magnetic field B = 1.1 T pointing in the positive z-direction...
Consider a wire along the x axis and has a 90 bend at the origin and continues along the negative y axis. The current in the wire is {i]A and flows in the positive x direction, then in the negative y direction. Calculate the magnitude of the magnetic field produced by the wire at the point (1,1). (Use Biot Savart law). The integral ∫ dx/(a2+x2)3/2 = x/(a2 (a2+x2)1/2) might be useful. State your answer in terms of μo, i.e. set...
A long, straight wire carrying a current of I1 =5.0 A perpendicular to the xy plane (page on a table) intersects the x-axis at the origin and points +z direction (out of page). A second, long wire carrying I2 = 12 A intersects the x-axis at x= 6.0 cm and points -z direction (into the page). Find the direction and magnitude of the net magnetic field due to these two currents at (x=0, y= 8.0 cm). First draw a neat...
A long, straight wire carrying a current of I1 =5.0 A perpendicular to the xy plane (page on a table) intersects the x-axis at the origin and points +z direction (out of page). A second, long wire carrying I2 = 12 A intersects the x-axis at x= 6.0 cm and points -z direction (into the page). Find the direction and magnitude of the net magnetic field due to these two currents at (x=0, y= 8.0 cm). First draw a neat...
Two long, straight, conducting wires are both
perpendicular to the xyxy-plane. Wire 1 passes through the point xx
= 0, yy = 1.00 cmcm, zz = 0 and carries current 1.00 AA in the
+zz-direction. Wire 2 passes through the point xx = 0, y = -1.00
cmcm, zz = 0 and carries current 4.00 AA also in the +zz-direction.
Find the net magnetic field due to both wires at xx = 0, yy = 0, zz
= 0.
<Chapters...
A 10 m long wire that is fixed (stationary) carries a current
I1 = 10 A to the right, as
shown in the figure.
a) Find an expression for the intensity of the magnetic field
generated by this long wire at the observation point with
coordinates (0, - y0 , 0) in
terms of the
current I1
and y0
b) What is the direction of the magnetic field generated by this
wire? (Entering, leaving the page; right, left, up or down)
c)...
A wire formed in the shape of a right triangle with base Lab-25 cm and height Lxe- 66 cm carries current 1 - 736 m as shown in Position 1. The wire is located in a region containing a constant magnetic field 8-1.22 T aligned with the positive z-axis. Position 1Position 2 1) What is Fac, the x component of the force on the segment of the wire that connects points a and c in Position 1? Submi 2) What...
A 10 m long wire that is fixed (stationary) carries a current:
I1 = 10 A to the right, as shown in the figure.
A much smaller wire of 10 grams and 2 cm in length, is placed
parallel to the long wire as shown in the figure. The geometric
center of the small wire is at the observation point with
coordinates: (0,-y0,0), where: 0 = 5 cm. Assuming that the magnetic
field felt by the small wire has an...
2. RFID Tag Magnetic field: Consider a square loop of wire that lies in the x-y plane and carries an electric current lo. The center of the loop is located at the origin and each side has length a. The current flows in a counter-clockwise direction as shown in the figure below Note*: This is a common design for an RFID tag's antenna, we will analyze RFID tag detection at a later time. a) Using Biot-Savart's law, find an expression...