PHYSICS OF EVERYDAY PHENO... 7/14 >C<
PHYSICS OF EVERYDAY PHENO... 7/14 >C<
8th Edition
ISBN: 9781308172200
Author: Griffith
Publisher: MCG/CREATE
Question
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Chapter 14, Problem 3SP

(a)

To determine

The area bounded by the rectangular coil.

(a)

Expert Solution
Check Mark

Answer to Problem 3SP

The area bounded by the rectangular coil is 0.0018m2.

Explanation of Solution

Given info: The length of rectangular coil is 6cm and breadth of coil is 3cm.

The coil provided is rectangular in shape. Therefore area of coil is found by multiplying the breadth and length.

Write the equation to find the area of a rectangular loop.

A=lb

Here,

A is the area of the rectangular coil

l is the length of the rectangular coil

b is the breadth of the rectangular coil

Substitute 6cm for l and 3cm for b in the equation to get A.

A=6cm(1m100cm)×3cm(1m100cm)=0.0018m2

Conclusion:

Therefore, the area of the rectangular coil is 0.0018m2.

(b)

To determine

The maximum value of magnetic flux passing through the rectangular coil as it is turned.

(b)

Expert Solution
Check Mark

Answer to Problem 3SP

The maximum value of magnetic flux that is passing through the rectangular coil is 0.043Tm2.

Explanation of Solution

Given info: Magnetic field applied is 0.4T , area of rectangular coil is 0.0018m2 , number of turns in the rectangular coil is 60.

Write the equation to find the magnetic flux passing through an area.

ϕ=NBAcosθ

Here,

ϕ is the magnetic flux passing through the rectangular coil

N is the number of turns in the rectangular coil

B is the magnetic field intensity applied

A is the area of the rectangular coil

θ is the angle between the rectangular coil and the magnetic field

Maximum value of magnetic flux passes through the coil when the magnetic field and the rectangular coil are parallel to each other. Therefore the angle between rectangular coil and magnetic field θ is 0°.

Substitute 60 for N , 0.4T for B , 0.0018m2 for A ,and 0° for θ in the equation to get ϕ.

ϕ=60×0.4T×0.0018m2cos0°=0.0432Tm2

Conclusion:

Therefore, the maximum value of magnetic flux that passes through the rectangular coil is 0.043Tm2.

(c)

To determine

The minimum value of flux that passes through the rectangular coil as it is rotated.

(c)

Expert Solution
Check Mark

Answer to Problem 3SP

The minimum value of magnetic flux that passes through the rectangular coil is zero.

Explanation of Solution

Given info: Magnetic field applied is 0.4T , area of rectangular coil is 0.0018m2 , number of turns in the rectangular coil is 60.

Write the equation to find the magnetic flux passing through an area.

ϕ=NBAcosθ

Here,

ϕ is the magnetic flux passing through the rectangular coil

N is the number of turns in the rectangular coil

B is the magnetic field intensity applied

A is the area of the rectangular coil

θ is the angle between the rectangular coil and the magnetic field

Minimum value of magnetic flux passes through the coil when the magnetic field and the rectangular coil are perpendicular to each other. Therefore the angle between rectangular coil and magnetic field θ is 90°.

Substitute 60 for N , 0.4T for B , 0.0018m2 for A ,and 90° for θ in the equation to get ϕ.

ϕ=60×0.4T×0.0018m2cos90°=0Tm2

Conclusion:

Therefore, the minimum value of magnetic flux that passes through the rectangular coil is zero.

(d)

To determine

The time taken to change the flux from a maximum to minimum in a complete cycle.

(d)

Expert Solution
Check Mark

Answer to Problem 3SP

The time taken for a change from maximum flux to minimum flux is 0.25s.

Explanation of Solution

A complete turn of the rectangular coil takes one second. A complete turn means a 360° turn of the rectangular coil. During a complete turn the coil experiences three maximum and two minimums.

The first change from maximum to minimum flux occurs between the 0° to 90° change. Therefore a change from maximum to minimum flux occurs during every 90° rotation. In a complete cycle there are four 90° changes. Therefore the time required for one of such change is found by dividing the time taken by a complete rotation into four rotations.

Time for one complete rotation is 1sec. Therefore time for a change from a maximum flux to minimum flux is 0.25sec

Conclusion:

Therefore, the time taken for a change from maximum flux to a minimum flux is 0.25sec.

(e)

To determine

Maximum value of voltage developed in the coil when the flux changes from a maximum to a minimum.

(e)

Expert Solution
Check Mark

Answer to Problem 3SP

The maximum value of voltage developed when the flux changes from maximum value to minimum value is 0.1728V.

Explanation of Solution

Write the equation to find the voltage developed when magnetic flux changes from maximum value to minimum value.

=dϕdt

Here,

is the voltage developed in the rectangular coil

dϕ is the change in flux from a maximum to a minimum

dt is the time taken for the change in value of flux

dϕ is the difference between the maximum flux value and minimum flux value.

dϕ=0.043Tm20Tm2=0.043Tm2

dt is the time taken for a change between a maximum flux to a minimum flux value which is equal to 0.25s.

Substitute 0.043Tm2 for dϕ , 0.25s for dt in the equation to find .

=0.043Tm20.25s=0.1728V

Conclusion:

Therefore, the maximum value of voltage induced when flux changes from a maximum value to a minimum value is 0.1728V.

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Chapter 14 Solutions

PHYSICS OF EVERYDAY PHENO... 7/14 >C<

Ch. 14 - A uniform magnetic field is directed horizontally...Ch. 14 - A positively charged particle is momentarily at...Ch. 14 - If a uniform magnetic field is directed...Ch. 14 - Why does the magnetic force on a current-carrying...Ch. 14 - If we look down at the top of a circular loop of...Ch. 14 - If we were to represent the current loop of...Ch. 14 - A current-carrying rectangular loop of wire is...Ch. 14 - If the rectangular loop of wire shown in question...Ch. 14 - Because the magnetic fields of a coil of wire and...Ch. 14 - In what respect is a simple ammeter designed to...Ch. 14 - Does an ac motor require a split-ring commutator...Ch. 14 - Which type of motor typically runs at a fixed...Ch. 14 - If Faraday wound enough turns of wire on the...Ch. 14 - Is a magnetic flux the same as a magnetic field?...Ch. 14 - A horizontal loop of wire has a magnetic field...Ch. 14 - Suppose the magnetic flux through a coil of wire...Ch. 14 - Two coils of wire are identical except that coil....Ch. 14 - Do the sensors that detect vehicles at stoplights...Ch. 14 - Under which conditions are inductive detectors...Ch. 14 - If the magnetic field produced by the magnets in a...Ch. 14 - Does a simple generator produce a steady direct...Ch. 14 - A simple generator and a simple electric motor...Ch. 14 - Can a transformer be used, as shown in the...Ch. 14 - By stepping up the voltage of an...Ch. 14 - Prob. 1ECh. 14 - Prob. 2ECh. 14 - Prob. 3ECh. 14 - Prob. 4ECh. 14 - Prob. 5ECh. 14 - Prob. 6ECh. 14 - Prob. 7ECh. 14 - Prob. 8ECh. 14 - Prob. 9ECh. 14 - Prob. 10ECh. 14 - Prob. 11ECh. 14 - Prob. 12ECh. 14 - Prob. 13ECh. 14 - Prob. 14ECh. 14 - Prob. 15ECh. 14 - Prob. 16ECh. 14 - Prob. 1SPCh. 14 - Prob. 2SPCh. 14 - Prob. 3SPCh. 14 - Prob. 4SP
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