A loop of wire in the shape of a rectangle of width w and length L and a long, straight wire carrying a current I lie on a tabletop as shown in the figure below. Ⓡ (a) Determine the magnetic flux through the loop due to the current I. (Use any variable stated above along with the following as necessary: 40.) B = (b) Suppose the current is changing with time according to I = a + bt, where a and b are constants. Determine the magnitude of the emf (in V) that is induced in the loop if b = 18.0 A/s, h = 1.00 cm, w = 15.0 cm, and L = 1.10 m. V (c) What is the direction of the induced current in the rectangle? O clockwise O counterclockwise O The magnitude is zero. What If? Suppose a constant current of I = 6.00 A flows in the straight wire and the loop moves from an initial position ho = 1.00 cm toward the bottom of the figure at a constant speed of v = 22.0 cm/s. (d) What is the magnitude of the induced emf (in V) in the loop 1.00 s after it begins to move? V (e) What is the direction of the induced current in the loop 1.00 s after it begins to move? O clockwise O counterclockwise O The magnitude is zero.
A loop of wire in the shape of a rectangle of width w and length L and a long, straight wire carrying a current I lie on a tabletop as shown in the figure below. Ⓡ (a) Determine the magnetic flux through the loop due to the current I. (Use any variable stated above along with the following as necessary: 40.) B = (b) Suppose the current is changing with time according to I = a + bt, where a and b are constants. Determine the magnitude of the emf (in V) that is induced in the loop if b = 18.0 A/s, h = 1.00 cm, w = 15.0 cm, and L = 1.10 m. V (c) What is the direction of the induced current in the rectangle? O clockwise O counterclockwise O The magnitude is zero. What If? Suppose a constant current of I = 6.00 A flows in the straight wire and the loop moves from an initial position ho = 1.00 cm toward the bottom of the figure at a constant speed of v = 22.0 cm/s. (d) What is the magnitude of the induced emf (in V) in the loop 1.00 s after it begins to move? V (e) What is the direction of the induced current in the loop 1.00 s after it begins to move? O clockwise O counterclockwise O The magnitude is zero.
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Chapter1: Units, Trigonometry. And Vectors
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![A loop of wire in the shape of a rectangle of width w and length L and a long, straight wire carrying a current I lie on a tabletop as shown in the figure below.
i
(a) Determine the magnetic flux through the loop due to the current I. (Use any variable stated above along with the following as necessary: μ.)
$B=
(b) Suppose the current is changing with time according to I = a + bt, where a and b are constants. Determine the magnitude of the emf (in V) that is induced in the loop if b = 18.0 A/s, h = 1.00 cm, w = 15.0 cm, and L =
1.10 m.
(c) What is the direction of the induced current in the rectangle?
O clockwise
O counterclockwise
O The magnitude is zero.
What If? Suppose a constant current of I = 6.00 A flows in the straight wire and the loop moves from an initial position ho = 1.00 cm toward the bottom of the figure at a constant speed of v = 22.0 cm/s.
(d) What is the magnitude of the induced emf (in V) in the loop 1.00 s after it begins to move?
(e) What is the direction of the induced current in the loop 1.00 s after it begins to move?
O clockwise
O counterclockwise
O The magnitude is zero.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F76aaab3c-5a4a-4ff8-814d-d2e8a1f30217%2Fbb5476bc-99e7-4927-9c61-48dd6013b92b%2Fkinawvn_processed.png&w=3840&q=75)
Transcribed Image Text:A loop of wire in the shape of a rectangle of width w and length L and a long, straight wire carrying a current I lie on a tabletop as shown in the figure below.
i
(a) Determine the magnetic flux through the loop due to the current I. (Use any variable stated above along with the following as necessary: μ.)
$B=
(b) Suppose the current is changing with time according to I = a + bt, where a and b are constants. Determine the magnitude of the emf (in V) that is induced in the loop if b = 18.0 A/s, h = 1.00 cm, w = 15.0 cm, and L =
1.10 m.
(c) What is the direction of the induced current in the rectangle?
O clockwise
O counterclockwise
O The magnitude is zero.
What If? Suppose a constant current of I = 6.00 A flows in the straight wire and the loop moves from an initial position ho = 1.00 cm toward the bottom of the figure at a constant speed of v = 22.0 cm/s.
(d) What is the magnitude of the induced emf (in V) in the loop 1.00 s after it begins to move?
(e) What is the direction of the induced current in the loop 1.00 s after it begins to move?
O clockwise
O counterclockwise
O The magnitude is zero.
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![What If? Suppose a constant current of I = 6.00 A flows in the straight wire and the loop moves from an initial position ho = 1.00 cm toward the bottom of the figure at a constant speed
of v= 22.0 cm/s.
(d) What is the magnitude of the induced emf (in V) in the loop 1.00 s after it begins to move?
V
(e) What is the direction of the induced current in the loop 1.00 s after it begins to move?
O clockwise
O counterclockwise
O The magnitude is zero.](https://content.bartleby.com/qna-images/question/76aaab3c-5a4a-4ff8-814d-d2e8a1f30217/b1be17e2-f6e7-4b9a-969d-ca7d214e2d90/ypscrg_thumbnail.png)
Transcribed Image Text:What If? Suppose a constant current of I = 6.00 A flows in the straight wire and the loop moves from an initial position ho = 1.00 cm toward the bottom of the figure at a constant speed
of v= 22.0 cm/s.
(d) What is the magnitude of the induced emf (in V) in the loop 1.00 s after it begins to move?
V
(e) What is the direction of the induced current in the loop 1.00 s after it begins to move?
O clockwise
O counterclockwise
O The magnitude is zero.
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