Find the amplitude of the displacement current density in a metallic conductor at 60 Hz if, & = Eo, μ = μo, o = 5.8 x 107 S/m and J = sin(377 t - 117.1 z) (MA/m²)
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Q: a = 3 [cm], b = 7 [cm], h = 2 [cm], µr = 700, N = 85 [tur], I = 5 [A]. Calculate the total magnetic…
A: Given, a=3 cmb=7 cmh=2 cmμr=700N=85 I=5 A
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Q: a) An RLC circuit is used in a radio to tune into an FM station broadcasting at f = 99.7 MHz. The…
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Q: a = 3 [cm], b = 7 [cm], h = 2 [cm], µr = 700, N = 85 [tur], I = 5 [A]. Calculate the total magnetic…
A: Given, a = 3 [cm], b = 7 [cm], h = 2 [cm], μr = 700, N = 85 I = 5 [A]
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- An RLC circuit governed by the equation Lg" + Rd + q/C = E0(t)sin wt a)get the equation for the current b)assuming that the differential equation obtained in the previous item is I(t)=A cos wt + B sin wt shows that - Eo Z EoR A : and B= R2 + Z? R2 + Z?(a) An RLC circuit is used in a radio to tune into an FM station broadcasting at f = 99.7 MHz. The resistance in the circuit is R = 8.00 0, and the inductance is L = 2.00 pH. What capacitance (in pF) should be used? pF (b) What If? What would be the range of capacitances (in pF) needed to cover the entire FM band, from 88.0 MHz to 108 MHz? Cmin = pF Cmax pF %3D Need Help? Read It Master Ita = 3 [cm], b = 7 [cm], h = 2 [cm], µr = 700, N = 85 [tur], I = 5 [A]. Calculate the total magnetic flux intensity within the cross section of the winding as [µWb / m2] or [µT] numerically (micro µ = 10-6)? Magnetic Flux Intensity Φ: Cross section integral of magnetic induction. Φ = ∫SB*ds Tolerance is nominally 0.1 [µWb / m2]. µo = 4π*10-7 [H / m].
- Given the magnetic flied intensity in vacuum H = 2.23 ax + 3.25 ay + 2.00 az milliamperes per meter. Determine the amount of flux, in webers, passing through the rectangular plane of dimensions 3.77 cm by 3.98 cm lying on y = 1.01 meters in the +y-direction. Use u0 = 4pi x 10e-7 H/m.In a nonmagnetic material electric field intensity is given by E =16 cos(4*108t- 2x) ay V/m The relative permittivity of the medium will be?A 0.220–A current is charging a capacitor that has circular plates 10.1 cm in radius. The plate separation is 4.00 mm. (a) What is the time rate of increase of electric field between the plates? V/(m·s)(b) What is the magnetic field between the plates 5.00 cm from the center? T
- The principle of induction heating is explored in this problem. A sheet of metal (good conductor) of conductivity oc is inserted into AC magnetic field whose value at the surface z =+d and wwww H(d) = (-unitvector y) 10 A/m H(-d) = (-unitvector y) 20 A/m Determine the expressions for (a) the magnetic field vector field H (z) and (b) the volume current density field J (z) in the field region -dFigure CQ19.7 shows a coaxial cable carrying current I in itsinner conductor and a return current of the same magnitudein the opposite direction in the outer conductor. Themagnetic field strength at r = r0 is B0. Find the ratio B /B0 at(a) r = 2r0 and (b) r = 4r0.dy 2ху The integrating factor of dx 4x is 1+x2 1+x2 4x2 -4x2 O 1+ x2 O 2x