3. A magnetie material has a magnetization of 2300 A -m" and produces a flux density of 0.0314 Wb-m*. Calculate the magnetizing force and the relative permeability of he material.
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- Trying to mcasUKT magnefle stpms, to measure aighber lays out a dreular oil with 50 turns ef radius radiur coil with 50 turns E4sm in a axeyard f the A, Nomaliy, the vertical component e earth's mágrete fHeld is B=opul tdownward). If a magnetio storm causes the field to change by AB =250nT Colawnward) in ims a) How lange tr the emp etevetoped in the cofl 8) what fs the dirzetien of current caused by indueed eme ?metal A. 3.0m C . What chorge of sphero ot radius 2-0 cm Carries a the eloctorc field Gom from the centreDetermine the minimum atomic percentage of Co²+ in a cubic Co2+-ferrite magnetic material that has a saturation magnetization of 5.0 x 105 A/m. at%
- Use the following constants if necessary. Coulomb constant, k = 8.987 x 10° N · m² /C?. vacuum permittivity, En = 8.854 x 10-12 F/m. Magnetic Permeability of vacuum, Ho = 12.566370614356 x 10 H/m. Magnitude of the Charge of one electron, e = -1.60217662 x 10-19 C. Mass of one electron, m. = 9.10938356 x 10-31 kg. Unless specified otherwise, each symbol carries their usual meaning. For example, uC means micro coulomb. R/2 4. d A single current-carrying circular loop of radius R = 7.6 cm is placed next to a long straight wire as shown in Figure. A current i = -5.4 A is passing through the wire towards right. At a certain moment an electron is moving at a velocity v = 200.0 jm/s toward the centre of the circular wire. At the instant shown in figure, the electron's distance from the wire is d = 6.7 cm. The z axis points out of the page in the coordinate system shown in the figure which is represented by the circle with a dot inside. a) Compute the magnitude of the magnetic field at the…3. You are conducting a magnetic survey in Minnesota with a proton-precession magnetometer with a sensitivity of 1 nT. Make some simplifying assumptions (e.g. I=90°) and estimate how far away from the magnetic senor you need to be from a 2000-pound (=1 ton) car (on the surface) so that the magnetic signal is less than 1 nT? The magnetic moment for typical iron and steel objects is 100 Am/ton.Use the following constants if necessary. Coulomb constant, k = 8.987 × 10º N · m² /C². Vacuum permitivity, €0 = 8.854 x 10-12 F/m. Magnetic Permeability of vacuum, uo = 12.566370614356 × 10-" H/m. Magnitude of the Charge of one electron, e = -1.60217662 × 10-19 C. Mass of one electron, me = 9.10938356 × 10¬31 otherwise, each symbol carries their usual meaning. For example, µC means micro coulomb. kg. Unless specified 47, q2 = 23, q3 = 39 located at (-7,5), (–4, –10) and (4, –8) respectively. Now, say you Say you have 3 charges q1 = choose three random points on the xy plane denoted by p1 (–15, 4), p2 (–14, – 16) and p2 (–15, –16). Note that, all charges are in nano coulombs. And all coordinates are in centimeters. Given this information, answer the following questions: PartI a) Calculate the relative position vector that points from q3 to p1. x component of the vector Give your answer up to at least three significance digits. m y component of the vector Give your answer up to at least…
- Need this Solution SirThe figure shows the hysteria-free curve for a ferromagnetic material. For this material, which stylish expresses the magnetization state at points b-c-d-e-f-g in the correct order? Please select one: A. Satisfaction Point-Zero magnetization-permanent magnetization-satisfaction Point-Zero magnetization-permanent magnetization B. Permanent magnetization-satisfaction Point-Zero magnetization-permanent magnetization-satisfaction Point-Zero magnetization C. Permanent magnetization-zero magnetization-satisfaction point-permanent magnetization-zero magnetization-satisfaction point D. Satisfaction point-permanent magnetization-zero magnetization-satisfaction point-permanent magnetization-zero magnetizationQ.2. wlocity 2i +3k empae. m an electsic feld g intensty 3i+6j+22 and magnete feld of 2+sk Tesla Find Ae magnituda n Loentz force acting on the e. An e morng with and direction