It is in xy plane
Magnetic field due to straight wire on C = μ₀i/(2πr) <--- (along z-axis)
Magnetic field due circular wire on C = μ₀i/(2πr) <-----(along z-axis)
a) x-component = 0 T
b) y-component = 0 T
c) z-component = μ₀i/(πr)
= (4*10^-7*8.95 *10^-3)/(0.0119)
= 3*10^-7 Tesla
_______________
When it is rotated it will be in zy plane
d) x-component = 3*10^-7 Tesla
e) y-component = 0 T
f) z-component = 0 T
Chapter 29, Problem 020 In the figure, part of a long insulated wire carrying current-8.95 mA...
Chapter 29, Problem 020 In the figure, part of a long insulated wire carrying current i = 2.10 mA is bent into a circular section of radius R = 5.97 cm. What are (a) the x-component, (b) the y-component, and (c) the z-component of the magnetic field at the center of curvature C if the circular section lies in the plane of the page as shown? What are (d) the x-component, (e) the y-component, and (f) the z-component of the...
In the figure, part of a long insulated wire carrying current i = 9.89 mA is bent into a circular section of radius R = 9.80 cm. What are (a) the x-component, (b) the y-component, and (c) the z-component of the magnetic field at the center of curvature Cif the circular section lies in the plane of the page as shown? What are (d) the x-component, (e) the y-component, and (f) the z- component of the magnetic field at the...
Please show all steps and box final answer. Thank you.
Chapter 29, Problem 016 In the figure, two concentric circular loops of wire carrying current in the same direction lie in the same plane. Loop 1 has radius 1.20 cm and carries 3.50 mA. Loop 2 has radius 2.80 cm and carries 5.60 mA. Loop 2 is to be rotated about a diameter while the net magnetic field B set up by the two loops at their common center is...
Chapter 29, Problem 035 The figure shows wire 1 in cross section; the wire is long and straight, carries a current of 4.08 mA out of the page, and is at distance di = 2.67 cm from a surface. Wire 2, which is parallel to wire 1 and also long, is at horizontal distance d2 = 5.30 cm from wire 1 and carries a current of 6.98 mA into the page. What is the x component of the magnetic force...
A very long straight wire carrying an electric current is
perpendicular to the x-y plane. The current has a value of 31.5 A
and is directed in the -z (into the page). At point 'p', the
magnetic field B is represented by one
of the arrows.
Calculate the magnitude of the B-field at
'p'.
Calculate the x-component of the B-field at
'p'.
A very long straight wire carrying an electric current is perpendicular to the x-y plane. The current has a...
Chapter 29, Problem 062 In the figure, current , 66.6 mA is set up in a loop having two radial lengths and two semicircles of radii a 4.61 cm and b = 7.53 ㎝ with a common center P. What are the (a) magnitude and (b) direction (into or out of the page) of the magnetic field at P and the (c) magnitude and (d) direction (into or out of the page) of the loop's magnetic dipole moment? (a) Number...
Chapter 29, Problem 029 In the figure, four long straight wires are perpendicular to the page, and their cross sections form a square of edge length a 19 cm. The currents are out of the page in wires 1 and 4 and into the page in wires 2 and 3, and each wire carries 17 A. What is the magnitude of the net magnetic field at the square's center? Number Units Chapter 29, Problem 062 In the figure, current i-35.9...
Chapter 29, Problem 062 In the figure, current i 41.4 mA is set up in a loop having two and b 6.64 cm with a common center P. What are the (a) magnitude and (b) direction (into or out of the page) of the magnetic field at P and the (c) magnitude an moment? radial lengths and two semicircles of radii a # 4.37 cm d (d) direction (into or out of the page) of the loop's magnetic dipole (a)...
A very long straight wire carrying an electric current is
perpendicular to the x-y plane. The current has a value of 31.1 A
and is directed in the +z (out of the page). At point 'p', the
magnetic field B is represented by one of the
arrows.
1. Indicate the direction of the magnetic field at point 'p'.
2. Calculate the magnitude of the B-field at
'p'.
3. Calculate the y-component of the B-field at
'p'.
:wire 1p :: ?...
OURCES Chapter 29, Problem 061 A circular loop of radius 8.1 cm carries a current of 17 A. A flat coil of radius 0.92 cm, having 73 turns and a current of 1.2 A, is concentric with the loop. The plane of the loop is perpendicular to the plane of the coil. Assume the loop's magnetic field is uniform across the coil. What is the magnitude of (a) the magnetic field produced by the loop at its center and (b)...