Engineering Electromagnetics
Engineering Electromagnetics
9th Edition
ISBN: 9780078028151
Author: Hayt, William H. (william Hart), Jr, BUCK, John A.
Publisher: Mcgraw-hill Education,
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Chapter 5, Problem 5.34P

A sphere of radius b and dielectric constant £r is centered at the origin in free space. An electric field E = E0 ax is incident from free space onto the sphere surface. E0 is a constant. (a) Find the electric field in the sphere interior and express the result in rectangular components, (b) Specialize your result from part a for the case in which ∅ = đ�œ‹. (c) Specialize your result from part a for the case in which θ = đ�œ‹/2. Compare both results (parts b and c) to the answer to Problem 5.31.

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could you please show steps on how the answer was derived. Vo(t)=3.922 cos(1000t-71.31')V
can you show the steps to answer question.
Q2. Figure Q2 shows a block diagram with an input of C(s) and an output R(s). a) C(s) K₁ R(s) K2 1 + 5s 1+2s Figure Q2. Block diagram of control system. Simply the block diagram to get the transfer function of the system C(s)/R(s). b) What is the order of the system? c) What is the gain of the system? d) Determine the values of K₁ and K₂ to obtain a natural frequency w of 0.5 rad/s and damping ratio of 0.4. e) What is the rise time and overshoot of the system with a unit step input?

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