Calculate the magnetic flux created by the field lines uniform magnetic force of 27 passing through a surface of 100 cm² with the following angles: a) 0° b) 30° c) 60° d) 90°
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Calculate the magnetic flux created by the field lines uniform magnetic force of 27 passing through a surface of 100 cm² with the following angles: a) 0° b) 30° c) 60° d) 90°
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- Quantity that is not affected by magnetic field is Current flowing in conductor Moving charge Stationary charge None of the choicesA rectangular coil of wire has a length of 3 cm and a width of 4 cm. It is in a 0.004 T magnetic field. What is the magnetic flux through the coil if the face of the coil is parallel to the B-field lines? What is the flux if the angle between the face of the coil and the magnetic field is 75°?What would be the inducesd voltage for a conductor moving at a speed of 25 km/h and having a length of 1 m being passed through a magnetic field with flux density of 0.6 T? 6.25 V 1.74 V 6250 V 1.736 mV none of the above
- Calculate the magnetic flux created by the field lines uniform magnetic force of 27 passing through a surface of 100 cm² with the following angles: a) 0° b) 30° c) 60° d) 90°electromagnetic theory What is the unit of magnetic flux density? a) Wb / m2 b) V / m c) Wb d) F / mGiven the proposed magnetic circuit below. We assume that the magnetic flux is linked by the coil and it is confined to the magnetic core. The magnetic circuit is characterized by the following: Hy = 103 N = 0.5 × 10³ turns i = 100 mA l = 100 mm N turns h = 10 cm l1 = 80 mm 12 = 0.09 m W=1cm 1.1 Calculate the flux on the magnetic structure 1.2 Calculate the flux density on the magnetic structure. 1.3 Calculate the field intensity on the magnetic structure
- In which of the cases given below a uniform magnetic field cannot exert a magnetic force on a particle? I) The particle is charged I) The particle's movement is perpendicular to the magnetic field III) The particle is at rest IV) An electric field is acting on a particle 18- O A) III and IV O B) Il and IV O ) Tand II O D) I and II O E) II28 The electromagnet of Figure P13.28 has reluctance given by R(x) = 7 × 108(0.002 + x) H¬!, where x is the length of the variable gap in meters. The coil has 980 turns and 30-2 resistance. For an applied voltage of 120 V DC, findSolve for flux density (in gauss) from a magnetic flux of 5,000 Mx through a perpendicular area of 2cm x 5cm
- A magnetic circuit has 150 turns-coil, the cross- sectional area 5 x 10-4 m2 and the length of the magnetic circuit 25 x 10-2 m. What are the values of magnetic field intensity and relatíve permeability when the current is 2 A and total flux is 0.3 x 10-3 Wb? (a) 1200 AT/m and 397.9 (b) 300 AT/m and 500 x 10-6 (c) 300 AT/m and 397.9 (d) 1200 AT/m and 500 x 10-6Quantity that is not affected by magnetic field is? a)Stationary charge b)None of the choices c)Moving charge d)Current flowing in conductor100 windings are wound on an iron core and 1A direct current flows through it. The mean path of the iron part is 0.3m, the air gap is π*10^-3 m (0.0031415), the iron section is 300*10^-6 m^2, and the magnetic permeability of the core is 0.004 H/m. How many micro Webers is the magnetic flux through the air gap? a) 400 b) 23.30 c) 1.165 d) 200 e) 11.65