A square conducting loop with side length
a = 1.25 cm
is placed at the center of a solenoid 40.0 cm long with a current of 4.60 A flowing through its 470 turns, and it is aligned so that the plane of the loop is perpendicular to the long axis of the solenoid. The radius of the solenoid is 5.00 cm.
(a) What is the magnetic flux through the loop?
Wb
(b) What is the magnitude of the average emf induced in the loop if
the current in the solenoid is increased from 4.60 A to 20.0 A in
1.75 s?
V


A square conducting loop with side length a = 1.25 cm is placed at the center...
A single-turn square loop of side L is centered on the axis of a long solenoid. In addition, the plane of the square loop is perpendicular to the axis of the solenoid. The solenoid has 1310 turns per meter and a diameter of 4.00 cm, and carries a current of 2.41 A. (a) Find the magnetic flux through the loop when L = 2 cm. Wb (b) Find the magnetic flux through the loop when L = 4.00 cm. Wb...
A square, single-turn wire loop ℓ = 1.00 cm on a side is placed
inside a solenoid that has a circular cross section of radius r =
3.00 cm, as shown in the end view of the figure below. The solenoid
is 24.5 cm long and wound with 104 turns of wire.
(a) If the current in the solenoid is 2.30 A, what is the
magnetic flux through the square loop?
T · m2
(b) If the current in the...
A single-turn square loop of side L is centered on the axis of a long solenoid. In addition, the plane of the square loop is perpendicular to the axis of the solenoid. The solenoid has 1250 turns per meter and a diameter of 5.75 cm, and carries a current of 2.04 A. Calculate the magnetic flux through the loop when L = 3.30 cm. Calculate the magnetic flux through the loop when L = 5.75 cm. Calculate the magnetic flux...
A square, single-turn wire loop ℓ = 1.00 cm on a side is placed inside a solenoid that has a circular cross section of radius r = 3.00 cm, as shown in the end view of the figure below. The solenoid is 24.0 cm long and wound with 122 turns of wire. (a) If the current in the solenoid is 2.35 A, what is the magnetic flux through the square loop? T · m2 (b) If the current in the...
A square loop of wire with side 3 cm is placed in a uniform
magnetic field of magnitude 0.4 T. A line perpendicular to the
plane of the loop is angled at 30 degrees to the magnetic field.
What is the magnitude of the magnetic flux through the coll
A square loop of wire with side 3 cm is placed in a uniform magnetic field of magnitude 0.4 T. A line perpendicular to the plane of the loop is angled...
A square loop with a single turn, with side L= 0.45cm is placed inside a solenoid with cross section of radius r = 2.5cm as shown in the figure below. The solenoid is 35cm long and made of 165 turns of wire. (a) If the current in the solenoid is 5.3A, what is the magnitude of the magnetic flux through the square loop? (b) If the current in the solenoid drops to zero in 2.0s, what is the magnitude of...
A single-turn square loop of side L is centered on the axis of a long solenoid. In addition, the plane of the square loop is perpendicular to the axis of the solenoid. The solenoid has 1310 turns per meter and a diameter of 5.55 cm , and carries a current of 2.55 A . Find the magnetic flux through the loop when L= 2.95 cm .
1. A square loop whose sides are 6.0-cm long is made with copper wire of radius 1.0 mm. If a magnetic field perpendicular to the loop is changing at a rate of 5.0 mT/s, what is the current in the loop? 2. A long solenoid with n = 10 turns per centimeter has a cross-sectional area of 5.0 cm2 and carries a current of 0.25 A. A coil with five turns encircles the solenoid. When the current through the solenoid...
A square, single-turn wire loop ! - 1.00 cm on a side is placed inside a solenoid that has a circular cross section of radius - 3.00 cm, as shown in the end view of the figure below. The solenoid is 22.5 cm long and wound with 112 turns of wire. (a) If the current in the solenoid is 3.85 A, what is the magnetic flux through the square loop? (b) If the current in the solenoid is reduced to...
A square flat loop with 15 turns and a side length of 20.3 cm is placed in a magnetic field that is perpendicular to the plane of the loop. The magnitude of this field varies with time according to B = 0.50t2 , with t measured in seconds and B in Tesla. What is the magnitude of the induced emf in the coil at t = 5.3? (Hint: Use the differential form of Faraday's law.)