1. A wire of total resistance 0.030 is bent into a triangular loop shown below, and is being pulled out of a region containing a 2.0 T uniform. magnetic field at a speed of 20 cm/s. An isosceles right triangle (leg 10 cm) leaving a magnetic field B= 2.0T 450 B = 0 10 cm √20cm/s a. Calculate the magnetic flux through the loop as a function of t, where t is the time since the triangular loop first emerges from the field. (Hint: What is x(t)?) b. Calculate the current in the loop at t = 0.20s. In which direction is the current?
1. A wire of total resistance 0.030 is bent into a triangular loop shown below, and is being pulled out of a region containing a 2.0 T uniform. magnetic field at a speed of 20 cm/s. An isosceles right triangle (leg 10 cm) leaving a magnetic field B= 2.0T 450 B = 0 10 cm √20cm/s a. Calculate the magnetic flux through the loop as a function of t, where t is the time since the triangular loop first emerges from the field. (Hint: What is x(t)?) b. Calculate the current in the loop at t = 0.20s. In which direction is the current?
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Question
A wire of total resistance 0.030 S is bent into a triangular loop shown below, and is being pulled out of a region containing a 2.0 T uniform magnetic field at a speed of 20 cm/s.
a. Calculate the magnetic flux through the loop as a function of t, where t is the time since the triangular loop first emerges from the field. (Hint: What is xt) ?)
b. Calculate the current in the loop at
t = 0.20 s. In which direction is the current?
![1. A wire of total resistance 0.030 is bent into a
triangular loop shown below, and is being pulled
out of a region containing a 2.0 T uniform.
magnetic field at a speed of 20 cm/s.
An isosceles right triangle (leg 10 cm) leaving a
magnetic field
B= 2.0T
450
B = 0
10 cm
√20cm/s
a. Calculate the magnetic flux through the loop
as a function of t, where t is the time since
the triangular loop first emerges from the
field. (Hint: What is x(t)?)
b. Calculate the current in the loop at
t = 0.20s. In which direction is the current?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fcb8eaf99-051a-48be-b4ce-9ed11c8ed1bc%2F3c61a4a1-68a1-430b-90be-03567affee59%2Ffg6hrcm_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. A wire of total resistance 0.030 is bent into a
triangular loop shown below, and is being pulled
out of a region containing a 2.0 T uniform.
magnetic field at a speed of 20 cm/s.
An isosceles right triangle (leg 10 cm) leaving a
magnetic field
B= 2.0T
450
B = 0
10 cm
√20cm/s
a. Calculate the magnetic flux through the loop
as a function of t, where t is the time since
the triangular loop first emerges from the
field. (Hint: What is x(t)?)
b. Calculate the current in the loop at
t = 0.20s. In which direction is the current?
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