A coaxial cable with inner radius 0.97 mm and outer radius 3.12 mm has a dielectric for which ϵR = 2.44. If P = 36ax + (5)ay + (-14)az pC/m2, find Dx in pC/m2.
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A coaxial cable with inner radius 0.97 mm and outer radius 3.12 mm has a dielectric for which ϵR = 2.44. If P = 36ax + (5)ay + (-14)az pC/m2, find Dx in pC/m2.
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- Problem 4. A positive point charge q₁5 [nc] is on the x-axis at x₁ = -1 [m] and a second positive point charge q₂ = 4 [nc] is on the x-axis at x₂ = 3 [m]. dl = b. a. and Point A. C. 91 Point A is on the x-axis at XA = 8 [m]. 0 = EzA=[ O+x O-x O+y O-y d. and Point A. d2 = 2 m 92 Find the distance between 91 6 created by the charge q₁ at Point A. E₁A= Ĵ [N/C] Find the distance between 92 Find the magnitude of È ₁A. [N/C] m x, m Calculate ₁4 the electric field 1A created by the charge 92 at Point A. E₂A î+ [N/C] g. Consider a point located 6 m from the origin, what will be the direction of the net electric field created by the charges at this point? Find the magnitude of È 2A. [N/C] Calculate E24 the electric field 2ACoaxial cable has inner radius 1mm and outer radius 3mm and length 10m. %3D with material with po between them.it is carrying current I= 5A find inductance .H multiply by N 6.8x10 6 34x10-6 11x10-6 2.2x106Q14. An air filled parallel plate capacitor is arranged such that the upper plate carries surface charge density 2C/m2 and lower plate carries surface charge density -2C/m as shown in figure. The electric field intensity under the bottom plate will be -2a/ɛ0 -a,/ɛ0 None of these ロロ
- solve this step by step thes object in ch4 electromagnetic fields#2 A capacitor with a capacitance of 4.023567436209E-10 pF is a parallel-plate capacitor. Each plate has an area of 0.0935m ^ 2 and a dielectric thickness of 0.0823 m. How many parallel sections are there if the dielectric constant of the material is 8?Q14. An air filled parallel plate capacitor is arranged such that the upper plate carries surface charge density 1C/m2 and lower plate carries surface charge density -1C/m2 as shown in figure. The electric field intensity between the plates will be -2az 60 None of these -az 80
- 3. For the following geometry, if the potential applied between the two conductive plates is Vo, find the total capacitance? Does the Ctotal follow the capacitance of two capacitors in series or in parallel? Pis -P1s + €₁ + + + + E₂ P2s -P2s + €2 + VoFind the inductance per unit length of a very long solenoid with a unit length of N windings. The permeability of the core is μ.A ten-turn solenoid has a ferromagnetic core with a relative permeability of 10,000. The length of the solenoid is l=10 cm and its cross section area is A=1 cm2. Determine the inductance L in mH. Round off to your answer to one decimal.
- If this were actually a parallel plate capacitor, which would be the dielectric constant of the dielectric? assume the capacitor has plate that are 2.50 mm by 2.25 mm, and the plates are separated by a distance of 3.30 mm.Question 84 A parallel plate capacitor of area A cm² and separating distance 'a' cm is dipped in ethyl alcohol up to a depth of a/2. Given the dielectric constant €, of ethyl alcohol to be 25, the ratio of capacitance after dipping to that before dipping would be(6) A parallel-plates capacitor with plate area of 100 cm? has a separation of 3mm between the pates. The separation is divided into three slabs, where each slab has 1 mm distance. The first slab is filled by air and has a constant of 1. The second slab is filled by polystyrene and has a constant of 2.5, while the third slab is filled by silicon dioxide and has a constant of 4. Compute the capacitance of the system. Note: for parallel slabs; Conductor 1 E = T 1 Air E1 83 Material A Material 3 Conductor Ans. C = 54 pF