The diagram below is of a triangular prism that has three rectangular sides and two triangular sides. This prism is placed in a region of uniform magnetic field of magnitude 0.120 T directed in the positive x direction. Here ab = 30.0 bc= 50.0 cm, and ad 66.0 cm. B Determine the magnetic flux, including the sign, through each of the five faces of the box. Pabc = cbef= Pabed= Pacfd = Wb Wb Wb Wb Wh
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- A wire in the shape of an "M" lies in the plane of the paper. It carries a current of 2.0 A, flowing from A to E, as shown in the figure. It is placed in a uniform magnetic field of 0.85 T in the same plane, directed as shown on the right side of the figure. The figure indicates the dimensions of the wire. Note that AB is parallel to DE and to the baseline from which the magnetic field direction is measured. What are the magnitude and direction of the force acting on section DE of this wire?The figure below shows two very long straight wires (in cross section) that each carry a current of 3.11 A directly out of the page. Distance di = 7.00 m and distance d2 = 5.50 m. What is the magnitude of the net magnetic field at point P, which lies on a perpendicular bisector to the wires? Number Units Use correct number of significant digits; the tolerance is +/-2%- An electron moves along the z-axis with vz 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 B (0 cm, 0 cm, 1 cm) Express your answers using two significant figures. Enter your answers numerically separated by commas. Bz Bz, By, B₂ = Submit Part C BI, By, B₂ = 15. ΑΣΦ Submit Request Answer (0 cm, 2 cm, 1 cm) Express your answers using two significant figures. Enter your answers numerically separated by commas. VG ΑΣΦ Request Answer ? ? T T
- In the figure, four long straight wires are perpendicular to the page, and their cross sections form a square of edge length a = 14.0 cm. Each wire carries 3.50 A, and the currents are out of the page in wires 1 and 4 and into the page in wires 2 and 3. In unit-vector notation, what is the net magnetic force per meter of wire length on wire 4? î+ i ĵ Units Number -2.63E-5 2.38E-5 N/mThe magnetic field produced by the solenoid in a magnetic resonance imaging (MRI) system designed for measurements on whole human bodies has a field strength of 8.83 T, and the current in the solenoid is 3.08 × 102 A. What is the number of turns per meter of length of the solenoid? Number i Units >A long pair of insulated wires serves to conduct 23.0 A of dc current to and from an instrument. If the wires are of negligible diameter but are 2.8 mm apart, what is the magnetic field 10.0 cm from their midpoint, in their plane (Figure 1)? Express your answer using two significant figures. Compare to the magnetic field of the Earth of 5.0×10−5T. Express your answer using two significant figures.
- A 11.38m wire carries a current of 96.39mA perpendicular to a uniform magnetic field of magnitude 1.22T. What is the magnitude of the force the wire experiences due to the presence of the magnetic field? X x i X X X 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.Hey I am doing some physics homework and am stumped on this question. Any help will be great! Thanks!Ampere's Law 2. Figure 4 shows a cross-sectional view of a coaxial cable. The center conductor is surrounded by a rubber layer, an outer conductor, and a second rubber layer. Suppose the current in the inner conductor is 11 = 1.00 A pointing out of the page and the current in the outer conductor is 12 = 3.00 A pointing in the page. If the distance d = 1.00 mm, determine the magnitude and direction of the magnetic field at (a) point "a", and (b) at point "b". Figura 4
- Two very long parallel conductors are located at a distance of 2 · a from each other, perpendicular to the plane of the figure below. The left-side conductor is carrying a current of i = 11 A directed into the page. What current i, (magnitude and direction) must flow through right-side conductor to produce a zero magnetic field at point P,? Use out of the page as the positive direction and a = 5 cm and b = 13 cm. y P, a a b The current, i, = Units Select an answer What is the magnitude and direction of the magnetic field at point P,? The magnitude of the B-field, B, = Units Select an answer The field is directed Select an answer Select an answer Question Help: OUp Down P Post to forum To the Left Submit Question To the RightA homogeneous pulley with two grooves consists of two wheels which turn together as one around the same axis. The moment of inertia of the two wheels together is ICM = 40 kg m2. The radii are: R1 = 1.2 m and R2 = 0.4 m. The masses that hang on both sides of the pulley are m1 = 36 kg and m2 = 12 kg. We will assume that the masses of the ropes are negligible. Determine the angular acceleration of the pulley, acceleration of the masses, and the tensions of the ropes.A long solenoid with n = 45 turns per centimeter and a radius of R = 19 cm carries a current of i = 35 mA. Find the magnetic field in the solenoid. The magnetci field, B0 = Units . If a straight conductor is positioned along the axis of the solenoid and carries a current of 99 A, what is the magnitude of the net magnetic field at the distance R/2 from the axis of the solenoid? The net magnetic field, BNet = Units .