subject
Physics, 13.03.2020 03:32 lnorred2

A straight segment of wire of length L 0.500 m is oriented along the z axis with current i in the-z direction. The wire is constrained to move in the xz plane by a pair of plates that create a channel in which the wire can move. See the simulation (linked below). On one side of the wire and halfway along its length is connected a spring of spring constant k = 10.0 N/m. The current carrying wire sits in a uniform magnetic field B of magnitude 1.00 T, the direction of which can be varied (relative to the fixed direction of the current in the wire). You can assume that, for a givern value of the angle θ (between B and the direction of the current), the wire has been brought to equilibrium. This means that the net force on the wire is equal to zero. The plot in the simulation shows the x component of the magnetic force on the wire (divided by the product iLB) versus the angle 6 Simulation The Magnetic Force on a Current-Carrying Wire Question 1 You can adjust the value of θ such that the known stretch of the spring allows you to determine the magnitude of the magnetic force. From that information, you should be able to find the current i in the wire. What is the currenti in the wire?

ansver
Answers: 3

Another question on Physics

question
Physics, 22.06.2019 12:00
If two students are running down the hall toward each other, trying to get to class, and they have the same mass and acceleration, what will happen when they collide? will their forces cancel out or will each one experience a reaction?
Answers: 1
question
Physics, 22.06.2019 22:00
Agirl throws a ball. if the ball's acceleration is 12 m/sec/sec and its mass is 0.5 kg, how much force did the girl apply to the ball?
Answers: 1
question
Physics, 23.06.2019 02:30
Intro: a solid ball of radius rb has a uniform charge density ρ. part a: what is the magnitude of the electric field e(r) at a distance r> rb from the center of the ball? express your answer in terms of ρ, rb, r, and ϵ0. part b: what is the magnitude of the electric field e(r) at a distance r express your answer in terms of ρ, rb, r, and ϵ0. part c: let e(r) represent the electric field due to the charged ball throughout all of space. which of the following statements about the electric field are true? check all that apply. e(0) = 0 e(rb)=0 limr→∞e(r)=0 the maximum electric field occurs when r=0 the maximum electric field occurs when r=rb the maximum electric field occurs as r→∞.
Answers: 1
question
Physics, 23.06.2019 06:00
Atoms in a molecule are bonded together by sharing gaining or losing_
Answers: 1
You know the right answer?
A straight segment of wire of length L 0.500 m is oriented along the z axis with current i in the-z...
Questions
question
Mathematics, 03.02.2021 17:20
question
Mathematics, 03.02.2021 17:20
Questions on the website: 13722362