Suppose a 8.86mC charge moves with velocity 117.01 m/s at an angle of 49.18° relative to the direction of a uniform magnetic field of magnitude 1.96T exists. What is the magnitude of the magnetic force this charge experiences? B B 0 9 Note: It is understood that the unit of your answer is in Newtons, however do not explicitly include units in your answer. Enter only a number. If you do enter a unit, your answer will be counted wrong.
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- A singly charged ion (an ion missing one electron) is injected perpendicular to a 0.205 T magnetic field with a velocity of 1250 m/s, and the ion moves in a circle of 22.7 mm radius. What is the molar mass of the ion in grams? (Remember to use grams and Avogadro's number to get molar mass. State the answer as an integer with no unit.) A Moving to another question will save this response. «>An electron moves along the z-axis with v₂ = 4.7 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? Part A (1 cm, 0 cm, 0 cm) Express your answers using two significant figures.Enter your answers numerically separated by commas. Br, By, B₂ = Submit Part B VE ΑΣΦ Request Answer Ba, By, B₂ = Submit (0 cm, 0 cm, 1 cm) Express your answers using two significant figures. Enter your answers numerically separated by commas. IVE| ΑΣΦ ? Request Answer T ? TPlease solve the question correctly and also be sure to give the correct units. Thank you!
- The magnetic field in a hospital’s cyclotron is 0.170 T. Find the magnitude of the magnetic force on a proton with speed 2.60 × 107 m/s moving in a plane perpendicular to the field. answer in NA magnetic field has a magnitude of 0.0017 T, and an electric field has a magnitude of 6.0 x 10³ N/C. Both fields point in the same direction. A positive 1.7-μC charge moves at a speed of 4.2 x 106 m/s in a direction that is perpendicular to both fields. Determine the magnitude of the net force that acts on the charge. Number i Units tThe wire has 5 segments each 1m and can rotate around the axis shown. The wire is placed in a magnetic field of 1.0 T magnitude. The direction of the magnetic field is parallel to one of the segments as shown in the figure. If the wire carries 2.0 A current, what are the magnitudes of the net magnetic force acting on the wire and the torque with respect to the axis?
- Consider the current-carrying wire shown in the figure. The current creates a magnetic field at the point P, which is the center of the arc segment of the wire. If 0 = 20.0°, the radius of the arc is 0.700 m, and the current is 5.00 A, what are the magnitude (in nT) and direction of the field produced at P? magnitude direction 2.49 X Apply the Biot-Savart law. What will be the contributions of the segments of wire along the straight-line sections? Hint: what is ds x Î for each segment? nT into the screen Need Help? Submit Answer Read ItIn each of the figures below a charge q₁ = 11.3 nC is moving with a speed v = 2.0 * 107. The direction is pointing in the (a) right, (b) up, (c) left and (d) downward direction on a cartesian coordinate system as shown below. When the charge passes by the location (5.00cm, 5.00cm) what is the magnetic field vector (in component form) at the location (5.00cm, 0.00cm) for each situation? (a) (b) (c) P 91 Р V (d) 91 91A long, straight conductor carries a current of 8.0 A and is directed to the right.What is the magnitude of the magnetic field produced by the current-carrying wire 2.0 m from the wire? (See figure below) Draw the magnetic field to determine the direction of the field at the specified point P.
- = 6.80 A and the wire lies in the plane of the rectangular loop, which carries a current I, = 10.0 A. The dimensions in the figure are In the figure below, the current in the long, straight wire is I, 0.100 m, a = 0.150 m, and { C = 0.420 m. Find the magnitude and direction of the net force exerted on the loop by the magnetic field created by the wire. magnitude direction to the leftAn electron is traveling with a constan velocity vo in the presence of a uniform electric mg field E-Ek, where E- e (Here, m denotes the mass of the electron and e denotes its charge. g denotes the acceleration due to gravity). Gravity acts in the -Z direction. At t=0, when the electron is at the origin, a uniform magnetic field BB+BJ is switched on. Here. B, and B, are fixed positive BB. The coordinates of the point where the electron intersects the X-Y plane constants and B for the first time after t=0 are given by: 2amy B Zamy BB e (A) (C) 2 e B 2AMY, B B (B) (D) 2amv, B.B. e B 2rum BB B Lamy B.B B 2am B BIn 10.0 seconds a total charge of 285 C flows through a wire. If the wire is inside of a 31.0 mT perpendicular magnetic field it experiences a magnetic force of 6.00 x 102 N. 20. The length of the wire that is inside of the magnetic field is a.bc x 10d m. The values of a, b, c and dare and (Record your four-digit answer in the numerical-response section below.) Your answer: