into (+) or out of (-) the page, as shown in the picture. Calculate the y component of the magnetic Field at the center of the square. Submit Answer Tries 0/12 Calculate the x-component of the force on a 0-cm long right hand
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- < Inbox 111 Primary Hitham Wahed. An electron moves along the z-axis with Vz v₂ = 2.6 x 107 m/s. As it passes the origin, what are the strength and direction of the magnetic field at the following (x, y, z) positions? Promotions 50 new Quizlet, QuillBot, Adobe Creativ... Sent from iPhone ▼ Part A Social 23 new Facebook (1.0 cm, 0 cm, 0 cm) Express your answers in teslas separated by commas. ▸View Available Hint(s) B₂, By, B₂ = 195 ΑΣΦ ? T Try a fast, secure browser with updates built inTwo bar magnets are placed end to end, with opposite poles near each other. A compass is placed in the space between the ends. A positively charged particle moves through the gap between the magnets, at right angles to the magnetic field. Compare the direction of the force on the particle with the way the north end of the compass needle points.A) in concentric circles around the direction indicated by the compassB) parallel and in the opposite directionC) parallel and in the same directionD) at right angles to each otherImagine two identical long wires placed parallel to and near each other. A current is passed through each of them; the currents are in the same direction. Consider how each wire is positioned in the other's magnetic field shape. Use the right-hand rule to predict the effect on the wires.A) The wires experience no net forces.B) The wires attract each other.C) The wires repel each other.D) The wires' magnetic fields cancel.
- A proton moving freely in a circular path perpendicular to a constant magnetic field takes 1.60 us to complete one revolution. Determine the magnitude of the magnetic field. Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step carefully. T Submit AnswerA long wire carrying 4.5A of current makes two 90° bends, as shown inf the figure below. The bent part of the wires passes through a uniform 0.35 T magnetic field directed as shown in the figure and contained in a limited region of space. Find the magnitude of the resultant force that the magnetic field exerts on the wire. Magnetic field region 4.50 A 30,0 cm -60.0 cm- 160.0 cmYou can change the magnetic flux through a given surface by Group of answer choices changing the magnetic field. any combination of a through c. none of these strategies. changing the surface area over which the magnetic field is distributed. changing the angle between the magnetic field and surface in question.
- 7 6 / wire A wire is carrying a current that is in the out of page direction. What is the direction of the magnetic field due to this current carrying wire at the point shown by the dot? 00A charged particle enters a region of unoform magnetic field which is antiparallel to the particles velocity. Describe the trajectory of the particle and give a reason as to why the particle follows the path you describedFigure below shows two long straight wires separated by the distance d = 1.0 m. The current in the left-hand wire is I, = 6.0 A in the upward direction. If the magnetic field at point P is zero, the magnitude and direction of the current I, in the right-hand wire is: %3D -p- a. 1.5 A, upward Ob. 4.5 A, upward O c. 3.0 A, downward O d. 1.5 A, downward e. 3.0 A, upward
- The two wires shown in the figure below are separated by d = 11.1 cm and carry currents of I = 4.90 A in opposite directions. 2d- (a) Find the magnitude and direction of the net magnetic field at a point midway between the wires. magnitude µT direction --Select--- (b) Find the magnitude and direction of the net magnetic field at point P,, 11.1 cm to the right of the wire on the right. magnitude direction |---Select--- (c) Find the magnitude and direction of the net magnetic field at point Pa, 2d = 22.2 cm to the left of the wire on the left. magnitude uT direction ---Select---Page of 2 ZOOM + OHMANN, UST PHYSICS B-FIELD: TORQUE 2) A single-turn wire loop 10 cm in diameter carries a 12-A current. It experiences a 0.015 Nm torque when the normal to the loop plane makes a 25° angle with a uniform magnetic field. Find the magnetic field strength.The two wires shown in the figure below are separated by d = 12.5 cm and carry currents of I = 4.80 A in opposite directions. P1 - 2d- -d (a) Find the magnitude and direction of the net magnetic field at a point midway between the wires. magnitude uT direction --Select-- (b) Find the magnitude and direction of the net magnetic field at point P,, 12.5 cm to the right of the wire on the right. magnitude μτ direction |---Select--- (c) Find the magnitude and direction of the net magnetic field at point P,, 2d = 25.0 cm to the left of the wire on the left. magnitude uT direction ---Select---