If d = 30 cm and the current in the wire is 50 A. find the magnitude of the magnetic field in Tesla at point X. wwww wwww hint: Magnitude means use the absolute value. Answer: A second wire also carries a current from this time from right to left below point X. The direction of the magnetic field around the bottom wire will be d wwwwwwwwwwwwwwww At the point of the X the magnetic field from only the bottom wire will point

Principles of Physics: A Calculus-Based Text
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ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter22: Magnetic Forces And Magnetic Fields
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If d = 30 cm and the current in the wire is 50 A. find the magnitude of the
d
magnetic field in Tesla at point X.
hint: Magnitude means use the absolute value.
Answer:
A second wire also carries a current from this time from right to left below
point X.
d
The direction of the magnetic field around the bottom wire will be
At the point of the X the magnetic field from only the bottom wire will point
Transcribed Image Text:If d = 30 cm and the current in the wire is 50 A. find the magnitude of the d magnetic field in Tesla at point X. hint: Magnitude means use the absolute value. Answer: A second wire also carries a current from this time from right to left below point X. d The direction of the magnetic field around the bottom wire will be At the point of the X the magnetic field from only the bottom wire will point
A long straight wire carries a current from left to right below point X.
d.
The direction of the magnetic field around the wire will be
At the point of the X the magnetic field will point
Choose the equation or equations that you will need to use to find the magnetic field at point X.
Select one or more:
a. B Field at the center of a loop: B = NHOL/2R
b. c = fA
%3D
c. Mirror or Thin Lens Equation: 1/d, + 1/d; =1/f, h/h; = -d,/d¡
d. Torque on a loop: t = NIABsine
e. Force between current carrying wires separated by distance d: F = Holil2L/2nd
f. Force on a current carrying wire: F
BILsine
%3D
g. Magnetic Force on a moving charge: F = qvBsine
%3D
h. Magnetic Flux: 0 = BAcos0
%3D
i. Force on an object mass m moving in a circle of radius R: F = mv?/R
j. Doppler shift: f = f(1 ± u/c)
Transcribed Image Text:A long straight wire carries a current from left to right below point X. d. The direction of the magnetic field around the wire will be At the point of the X the magnetic field will point Choose the equation or equations that you will need to use to find the magnetic field at point X. Select one or more: a. B Field at the center of a loop: B = NHOL/2R b. c = fA %3D c. Mirror or Thin Lens Equation: 1/d, + 1/d; =1/f, h/h; = -d,/d¡ d. Torque on a loop: t = NIABsine e. Force between current carrying wires separated by distance d: F = Holil2L/2nd f. Force on a current carrying wire: F BILsine %3D g. Magnetic Force on a moving charge: F = qvBsine %3D h. Magnetic Flux: 0 = BAcos0 %3D i. Force on an object mass m moving in a circle of radius R: F = mv?/R j. Doppler shift: f = f(1 ± u/c)
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