A student takes a strand of copper wire and forms it into a circular loop of circumference of 0.405 m. The student then places the loop in a uniform, constant magnetic field of magnitude 0.00283 T that is oriented perpendicular to the face of the loop. Pulling on the ends of the wire, they reduce the circumference of the loop to 0.127 m in a time interval of 0.582 s. Assuming that the loop remains circular as it shrinks, what is the magnitude of the average emf & induced around the loop during this time interval? |ε| = V
Q: An electron enters a region of space containing a uniform 1.39×10−5 T magnetic field. Its speed is…
A: Answer:- Given Magnetic field (B) = 1.39 × 10-5 T Speed of electron (V) = 179 m/s Mass of…
Q: The figure shows a long, straight wire carrying current I₁ = 19.3 A and a circular loop carrying…
A: Write the expression for the magnetic field at point P due to the straight wire which carries the…
Q: what is its mass?
A: Cyclotron Motion When a charged particle enters a magnetic field, the Lorentz force acts on the…
Q: Refer to diagram 2. A metal rod (mass 468 g, resistance 7.15 Q) slides on frictionless rails exactly…
A: Since emf across the slider is, ε=Blvcosθ The induced current is, I=εR=BlvcosθR The expression for…
Q: A conducting rod of length = 25 cm is placed on a U-shaped metal wire that is connected to a…
A:
Q: A rectangular loop of wire with sides 0.166 and 0.538 m lies in a plane perpendicular to a constant…
A: Given data *The loop of wire with sides are 0.166 m and 0.538 m *The magnitude of the magnetic field…
Q: The figure below shows a cross section of a long thin ribbon of width w = 2.98 cm that is carrying a…
A:
Q: You have a right triangular coil with base of 0.800 m and height 0.600 m having two loops and…
A: Given data: Base of triangular coil (b) = 0.800 m Height (h) = 0.600 m Number of loops (N) = 2…
Q: A student takes a strand of copper wire and forms it into a circular loop of circumference of 0.385…
A: From Faraday's law of electromagnetic induction, the magnitude of induced emf is given by…
Q: A small object with mass 4.00x10-6 kg and a charge q. The object has speed 500 m/s as it enters the…
A:
Q: An electron moves through a uniform magnetic field. The magnetic field is given by B = (0.00i-23.7 j…
A: According to question we need to find value of vy
Q: A rectangular loop of wire with sides 0.263 and 0.598 m lies in a plane perpendicular to a constant…
A:
Q: A conducting loop in the shape of a square of edge length l=0.4cm carries a current I=10A in…
A: Given data *The edge length of the square is l = 0.4 m *The current is I = 10 A
Q: An electron moving with a speed of 5.62 x 106 m/s in the positive y direction experiences zero…
A:
Q: A wire of length l = 5.0m carries a current of 40 A between the opposite poles of a magnet at an…
A:
Q: The two conducting rails in the drawing are tilted upward so they each make an angle of 30.0° with…
A:
Q: A square loop of wire lies in the xy-plane with sides of length 10.0 cm that are parallel to the x-…
A: Given that the sides of loop lie on x and y axis. Current I = 3A ; Magnitude of Uniform magnetic…
Q: Question: A conductive wire, which is shaped in a 'U' without being connected to any power supply or…
A:
Q: Transcranial magnetic stimulation (TMS) is a non-invasive technique used to stimulate regions of the…
A: It is necessary to consider the concept related to magnetic flux and Faraday's law states that the…
Q: A coil has 180 turns enclosing an area of 10.4 cm2cm2 . In a physics laboratory experiment, the coil…
A:
Q: A 0.200 kg metal rod carrying a current of 37.0 A glides on two horizontal rails 0.500 m apart. What…
A: When a magnetic field is applied on a current carrying rod in perpendicular direction , then a force…
Q: A rectangular loop of wire with sides 0.221 and 0.444 m lies in a plane perpendicular to a constant…
A:
Q: A rectangular loop of wire with sides 0.261 and 0.581 m lies in a plane perpendicular to a constant…
A:
Q: A wire loop carrying 5.0 A of current is bent into an equilateral triangle with a side length of…
A: The expression for the magnetic force is F=ILBsinθ where F is the force, I is current, L is the…
Q: During a transcranial magnetic stimulation (TMS) treatment, a magnetic field, typically of magnitude…
A: Given:- The magnetic field B = 5 T The current coil rises from Zero to peak in a time t = 65μs=…
Q: A straight wire 0.280 m in length carries a current of 3.40 A. What are the two angles between the…
A: The wire has a length of 0.28 mLet L=0.28 mIt carries a current, I=3.4 AThe magnetic field is,…
Q: e induced emf
A:
Q: See the attached figure for this problem. There is a charge is 9.61 x 10^-6 C, the magnetic field…
A:
Q: A rectangular loop with dimensions 4.20 cm by 9.50 cm carries current I. The current in the loop…
A: Given that:-Dimension of loop, Width, W=4.20 cm =0.0420 mLength,L=9.50 cm…
Q: A 11.0 g wire of length 69.8 cm is suspended by a pair of flexible leads in a uniform magnetic field…
A:
Q: Please answer question 2 parts a, d, and e
A: Assuming the static equilibrium condition, which means that the block doesn't move, hence the…
Q: A circular loop carrying a current of 1.25 A is oriented in a magnetic field of 0.22 T . The loop…
A: Given, Current in the circular loop, I = 1.25 A magnetic field in the region, B = 0.22 T area…
Q: An electron enters a region of space containing a uniform 2.21 × 10-³ T magnetic field. Its speed is…
A:
Q: The two conducting rails in the drawing are tilted upward so they each make an angle of 30.0° with…
A:
Q: х х х XI X х х х х х х х х х
A: According to Faraday's law of induction, any change in magnetic environment will cause a production…
Q: A square conducting loop that measures a = 0.250 m on each side, is placed in a magnetic field. The…
A: Given: The measure of square loop is a=0.250 m. The magnetic field is B=2.60 T. The velocity is…
Q: A coil has 250 turns enclosing an area of 11.8 cm2 . In a physics laboratory experiment, the coil is…
A:
Q: See the attached figure for this problem. A charge of 8.70 x 10^6 C moves to the right as shown…
A:
Unlock instant AI solutions
Tap the button
to generate a solution
Click the button to generate
a solution
- A single-turn square loop of wire, 2.00 cm on each edge, carries a clockwise current of 0.240 A. The loop is inside a solenoid, with the plane of the loop perpendicular to the magnetic field of the solenoid. The solenoid has 30.0 turns/cm and carries a 15.0 A. (a) Find the force on each side of the loop. magnitude × What is the direction of the magnetic field inside a solenoid. μN direction directed away from the center ▾ (b) Find the magnitude of the torque acting on the loop. This is the maximum torque that can be exerted on the current loop in this field. Think carefully about the orientation of the loop with respect to the field. N. mAn electron enters a region of space containing a uniform 2.89 × 10-³ T magnetic field. Its speed is 163 m/s and it enters perpendicularly to the field. Under these conditions, the electron undergoes circular motion. Find the radius r of the electron's path and the frequency f of the motion. r = m %3D HzA student takes a strand of copper wire and forms it into a circular loop of circumference of 0.405 m. The student then places the loop in a uniform, constant magnetic field of magnitude 0.00283 T that is oriented perpendicular to the face of the loop. Pulling on the ends of the wire, they reduce the circumference of the loop to 0.127 m in a time interval of 0.582 s. Assuming that the loop remains circular as it shrinks, what is the magnitude of the average emf & induced around the loop during this time interval? |ε| = V
- A loop of wire has the shape shown in the drawing. The top part of the wire is bent into a semicircle of radius r = 0.27 m. The normal to the plane of the loop is parallel to a constant magnetic field (φ = 0˚) of magnitude 0.87 T. What is the change ΔΦ in the magnetic flux that passes through the loop when, starting with the position shown in the drawing, the semicircle is rotated through half a revolution?A loop of wire has the shape shown in the drawing. The top part of the wire is bent into a semicircle of radius r = 0.22 m. The normal to the plane of the loop is parallel to a constant magnetic field (φ = 0˚) of magnitude 0.90 T. What is the change ΔΦ in the magnetic flux that passes through the loop when, starting with the position shown in the drawing, the semicircle is rotated through half a revolution?The figure below shows a flexible loop of metal wire with a radius of 13.0 cm. It lies in a magnetic field pointing into the page with a magnitude of 0.100 T. A student grabs the loop at points A and B and rapidly pulls in opposite directions until the loop folds up, such that its area becomes zero. The change in area occurs in a span of 0.210 s. x X x X X X * x x * A x X x X B x x x x x X X * X @ What is the average induced emf (in mV) in the loop over this time span? mV X x
- A 1.00 C charge enters a uniform magnetic field. The magnetic field vector has the following components: 1.00 T in the x-direction, 2.00 T in the y-direction, and 3.00 T in the z-direction. The particle enters the magnetic field with a constant velocity whose components are as follows: 4.00 m/s in the x-direction, 5.00 m/s in the y-direction, and 6.00 m/s in the z-direction. - What are the components of the magnetic force in the particle? (Fx, Fy, and Fz) - What is the magnitude of the magnetic force?Sodium ions (Na+) move at 0.854 m/s through a bloodstream in the arm of a person standing near a large magnet. The magnetic field has a strength of 0.255 T and makes an angle of 47.0° with the motion of the sodium ions. The arm contains 115 cm3 of blood with 3.50 ✕ 1020 Na+ ions per cubic centimeter. If no other ions were present in the arm, what would be the magnetic force on the arm?I am working on physics homework and am stuck on this one! Help would be great, thank you!