Answer:
The resistance of the wire is 3.6 Ohm's.
Step-by-step explanation:
The force on a conductor in a magnetic field is given as;
F = BILSinθ
where: F is the force, i is the current through the conductor, L is the length of the conductor and θ is the angle between the conductor and field.
From the question, F = 8N, B = 4.8T, L = 2m, I = ? and θ =
.
So that,
8 = 4.8 × I × 2 × Sin
![90^(0)](https://img.qammunity.org/2021/formulas/computers-and-technology/college/n0rhsn76v6mnyjg591rf3k0sudqipayv1t.png)
8 = 9.6I
I =
![(8)/(9.6)](https://img.qammunity.org/2021/formulas/physics/high-school/qxmfxtq6da0taoumeo98t7v5ngwcqz7b67.png)
I = 0.8333A
The current flowing through the wire is 0.83A.
to determine the resistance of the wire, Ohm's law states that:
V = IR
where v is the electromotive force, I is the current flowing and R is the resistance of the conductor.
V = 3V, I = 0.8333, then;
R =
![(V)/(I)](https://img.qammunity.org/2021/formulas/physics/college/k3aen6w76qzrj0rb6fi4ecszfl1405fu30.png)
=
![(3)/(0.8333)](https://img.qammunity.org/2021/formulas/physics/high-school/uzakit48ggtejkspk2oaktojph1b2hlqgl.png)
= 3.6001Ohm's
The resistance of the wire is 3.6 Ohm's.