A wire in the shape of a semicircle with radius a is oriented in the yz-plane with its center of curvature at the origin as shown in Figure. If the current in the wire is I, calculate the magnetic-field components produced at point P, a distance x out along the x-axis.
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- An electron with a speed of 4.1 x 106 m/s moves with a circle in a plane to a uniform magnetic field. If the radius o fhte circle is 2.4 cm, then what is the magnitude of the field?An electron beam passes through a region between two plates with a poten- a) tial difference giving rise to an electric field of E = 104 Vm-1. External coils give a magnetic field of B = 10-4 T in this region, at right angles to the electric field and to the electron beam. The electron beam is undeflected (follows a straight line) in this region. Calculate the velocity of the electrons.A long straight wire is fixed in space and has current I. Draw the wire vertically with the current flowing upward. A square wire loop with side length s and resistance R is in the plane of the page and has its closest side a distance x away from the wire. Find the magnetic flux through the square HINT: The B-field depends on distance from the wire so you will have to integrate. The loop is pushed with velocity v toward the Find the rate of change of magnetic flux. HINT: Don't forget the chain rule. If f(x(t)) is a function of x and x is a function of t, then df/dt = (df/dx)(dx/dt) Find the current induced in the square Which direction is the current flowing? Explain with Lenz's Law Find the net magnetic force on the
- A charge of the magnitude of 50 µC and of the a mass 42 ug, enters perpendicularly in a uniform magnetic field. Then it leaves the magnetic field, in a direction perpendicular to the original direction, as shown in the figure. If the charge is the magnetic field for a 200 ms time interval, calculate the magnetic field (in T). BAs shown in the figure below, a circular ring with a radius of a is folded along a line across the diameter so that the two semicircles are perpendicular. In the magnetic field, this ring was rotated at a constant angular velocity over time, as shown in the figure. The axis of rotation is an extension of the fold-off line and is perpendicular to the magnetic field. The resistance of the ring is R. (1) Give a qualitative explanation of what will happen. (2)Find the current flowing through the ring. (3)What torque should be applied to the ring to allow it to rotate at a constant angular speed? (4)What do you have to do to turn it N round? (5) What energy changes from ring to heat? (6) How much energy changes from ring to heat? * I'll be so thankful and satisfied to get answer just least 3 of 6 questions..A solid cylindrical conductor with radius 4.50 cm carriesa current of 2.00 A. The current is uniformly distributed over the crosssectionalarea of the conductor. Find the magnitude of the magneticfield at the following distances from the conductor axis: 6.00 cm.
- Please answer parts (a), (b), and (c).Two long wires a positioned as shown below -- one along the x direction and one along y direction. Each wire has a current of 10 A in the indicated directions and the top wire is 10 cm above the bottom wire. What is the angle of the B field exactly half-way between the two wires in degrees? We define to the right as 0 degrees, up as 90, left as 180, and down as 270. What is the magnitude of the magnetic field in μT to 3 significant digits?