
Two long, parallel wires carry currents of I1 = 2.85 A and I2 =
5.45 A in the directions indicated in the figure below, where d =
19.5 cm. (Take the positive x direction to be to the right.)
(a) Find the magnitude and direction of the magnetic field at a
point midway between the wires.
magnitude______ μT
direction________ ° counterclockwise from the +x axis
(b) Find the magnitude and direction of the magnetic field at
point P, located d =...
Problem 6. Two infinitely long wires are arranged side by side. The current I, is pointing out of the page. The current I1 is pointing into the page. The distance between the wires is d. Let the magnitude of the currents be equal. I = I) Find the direction of the total magnetic field at the following coordinates. Give the answer as a positive or negative unit vector i, j, or k.23. At (2d, 0) (A) rightward (B) up (C) out (D)...
use node analysis to find I1, I2, I3 and I4
Use Node Analysis To Find I., I2 I3, IA IA V 6A LI. 200 172 & 1or 302 120A &GR
In the figure below, the current in the long, straight wire is I1 = 6.60 A and the wire lies in the plane of the rectangular loop, which carries a current I2 = 10.0 A. The dimensions in the figure are c = 0.100 m, a = 0.150 m, and l = 0.690 m. Find the magnitude and direction of the net force exerted on the loop by the magnetic field created by the wire.
I1=13 A,
I2=12 A, r=0.0033 m, a=0.0027 m, and b=0.0068 m.
The figure shows a wire with current I¡ coming out of the page. It is surrounded by a cylindrical shell with inner radius a and outer radius b, and a current 12 uni- formly distributed throughout the material and coming out of the page. What is the magnitude of the magnetic field a distance r away from the center of the figure when a<r < b?
What's the correct answer for Part B magnitude? I
keep getting it wrong.
Two long, parallel wires carry currents of
I1 = 3.22 A and I2 = 4.85 A
in the direction indicated in the figure below. (Choose the line
running from wire 1 to wire 2 as the positive x-axis and
the line running upward from wire 1 as the positive
y-axis.)
(a) Find the magnitude and direction of the magnetic field at a
point midway between the wires...
Two long, parallel transmission lines, d = 40.0 cm apart, carry
I1 = 25.0 A and I2 = 75.0 A.
Don't do part A, only parts D-F.
2. Two long, parallel transmission lines, d = 40.0 cm apart, carry 11 = 25.0 A and 12 = 75.0 A. We are to find all locations where the net magnetic field due to the two wires is zero if these currents are in: i) the same direction and ii) the opposite direction....
The figure below shows two long parallel, straight wires
carrying currents, I1 = 38 A and I2 = 70 A. The distance between
the wires is 18 m. What is the magnitude of the magnetic field (in
nT) at point A , which is at a distance of 4 m from wire #1?
The figure below shows two long parallel, straight wires carrying currents, 14 = 38 A and I2 = 70 A. The distance between the wires is 18...
Please find I for #1. find V for #2. find R for #3.
find I, I1, I2 for #4. find R (v=12V) , I1, I2 for #5. Show work
please, Thanks!
4r find I I 8.52 find V 20 HE R a.. 8. find B ZA 4V 4.3.62 find I, 260 52 find 202 I, 2 lor
In the figure below, the current in the long, straight wire is
I1 = 3.30 A and the wire lies in the plane of the rectangular loop,
which carries a current I2 = 10.0 A. The dimensions in the figure
are c = 0.100 m, a = 0.150 m, and ℓ = 0.605 m. Find the magnitude
and direction of the net force exerted on the loop by the magnetic
field created by the wire.