Question

In a physics laboratory experiment, a coil with 180 turns enclosing an area of 11.4 cm2...

In a physics laboratory experiment, a coil with 180 turns enclosing an area of 11.4 cm2 is rotated during the time interval 4.90×10−2 s from a position in which its plane is perpendicular to Earth's magnetic field to one in which its plane is parallel to the field. The magnitude of Earth's magnetic field at the lab location is 6.60×10−5 T .

A.)What is the magnitude of the magnetic flux (Φinitial) through the coil before it is rotated?

B.)What is the magnitude of the magnetic flux Φfinal through the coil after it is rotated?

C.)What is the magnitude of the average emf induced in the coil?

Homework Answers

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
In a physics laboratory experiment, a coil with 180 turns enclosing an area of 13.9 cm2...
In a physics laboratory experiment, a coil with 180 turns enclosing an area of 13.9 cm2 is rotated during the time interval 3.70×10−2 s from a position in which its plane is perpendicular to Earth's magnetic field to one in which its plane is parallel to the field. The magnitude of Earth's magnetic field at the lab location is 6.70×10−5 T . What is the magnitude of the magnetic flux (Φinitial) through the coil before it is rotated? Express your...
A coil has 250 turns enclosing an area of 10.0 cm2 . In a physics laboratory...
A coil has 250 turns enclosing an area of 10.0 cm2 . In a physics laboratory experiment, the coil is rotated during the time interval 3.10×10−2 s from a position in which the plane of each turn is perpendicular to Earth's magnetic field to one in which the plane of each turn is parallel to the field. The magnitude of Earth's magnetic field at the lab location is 5.80×10−5 T . a) What is the magnitude Φinitial of the magnetic...
In a physics laboratory experiment, a coil with 160 turns enclosing an area of 11.2 cm2...
In a physics laboratory experiment, a coil with 160 turns enclosing an area of 11.2 cm2 is rotated during the time interval 3.40×10−2 s from a position in which its plane is perpendicular to Earth's magnetic field to one in which its plane is parallel to the field. The magnitude of Earth's magnetic field at the lab location is 6.00×10−5 T . Part A What is the total magnitude of the magnetic flux ( Φinitial) through the coil before it...
In a physics laboratory experiment, a coil with 250 turns enclosing an area of 11.4 cm2...
In a physics laboratory experiment, a coil with 250 turns enclosing an area of 11.4 cm2 is rotated in a time interval of 3.80×10−2 s from a position where its plane is perpendicular to the earth's magnetic field to one where its plane is parallel to the field. The earth's magnetic field at the lab location is 6.1×10−5 T. Part A What is the magnetic flux through each turn of the coil before it is rotated? Express your answer using...
In a physics laboratory experiment, a coil with 200 turns enclosing an area of 10.1 c...
In a physics laboratory experiment, a coil with 200 turns enclosing an area of 10.1 c m^2 is rotated during the time interval 3.00×10−2 s from a position in which its plane is perpendicular to Earth's magnetic field to one in which its plane is parallel to the field. The magnitude of Earth's magnetic field at the lab location is 6.20×10−5 T . a.What is the magnitude of the magnetic flux Φinitial through the coil before it is rotated? Express...
In a physics laboratory experiment, a coil with 220 turns enclosing an area of 11.6 cm2...
In a physics laboratory experiment, a coil with 220 turns enclosing an area of 11.6 cm2 is rotated during the time interval 3.60×10?2 s from a position in which its plane is perpendicular to Earth's magnetic field to one in which its plane is parallel to the field. The magnitude of Earth's magnetic field at the lab location is 6.80×10?5 T . Part A: What is the magnitude of the magnetic flux (?initial) through the coil before it is rotated?...
EXERCISE 29.2 In a physics laboratory experiment, a coil with 240 turns enclosing an area of...
EXERCISE 29.2 In a physics laboratory experiment, a coil with 240 turns enclosing an area of 10.8 cm2 is rotated in a time interval of 3.80×10−2 s from a position where its plane is perpendicular to the earth's magnetic field to one where its plane is parallel to the field. The earth's magnetic field at the lab location is 6.5×10−5 T. (Express your answers using two significant figures.) A) What is the magnetic flux through each turn of the coil...
In a physics laboratory experiment, a coil with 180 turns. Each turn of the coil encloses...
In a physics laboratory experiment, a coil with 180 turns. Each turn of the coil encloses an area of 12 cm2 . The coil is rotated from a position where its plane is perpendicular to the earth's magnetic field to one where its plane is parallel to the field. The rotation takes 3.4×10−2 s . The earth's magnetic field at the location of the laboratory is 6.0×10−5 T. A) What is the magnetic flux through one turn of the coil...
A flat circular coil having 15 turns, each of a radius of 18.0 cm, is in...
A flat circular coil having 15 turns, each of a radius of 18.0 cm, is in a uniform and steady 0.130-T magnetic field. The coil has a resistance of 8.00 a) Find the total magnetic flux through one turn of the coil when the field is parallel to the axis of the coil. b) If the coil is rotated in 12.0 ms so its axis is perpendicular to the field, find the average induced voltage and the induced current in...
A generator is constructed by rotating a coil of N turns in a magnetic field B...
A generator is constructed by rotating a coil of N turns in a magnetic field B at a frequency f. The internal resistance of the coil is R and the cross sectional area of the coil is A. Decide which statements are true and which are false. If the first is T and the rest F, enter TFFFFF. A) The maximum induced EMF occurs when the coil is rotated about an axis parallel to the magnetic field lines. B) The...