B) Find the radius and the convergence interval of the following series, then test at the values ofx: Σ (n+1) (2x+1)" 2" (2n+1)
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![B) Find the radius and the convergence interval of the following series, then test at the
values ofx:
Σ
(n+1) (2x+1)"
2" (2n+1)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe66f15e9-dfed-4f45-9df2-0ae9447c34b7%2Fb859e9bc-373a-45eb-ab85-21a2ca1ef6e9%2Ff3nlvkl_processed.jpeg&w=3840&q=75)
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- I need the answer quickly. Find the Direct Form-I realization of the given difference equation. y(n)-2/5* y(n-1)+ 4/3*y(n-2) = x(n) + 6x(n-1)Problem. Draw the direct form I and direct form II implementation for the difference equation y[n]-(1/2)y[n-2] =3x[n] - 2x[n-2]Solution please, in Stepwise manner, do not skip any step.
- For an RC Circuit: a. Using information from the graph, find tSolve the Linear first Order Differential Equation x =y +x* cosx dy X- %3D dx BIEE ParagraphHello. I could get the transfer function from continous time, Is discrete time the same? I'm not positive how to do this one. THank you for the help.
- A pure sinusoidal signal is input to a system. The output is shown in the figure below, y(t) (V) -T/2 T/2 t (sec) -4 If A= 5, t1 = 0.2, t2 = 1.3 and T- 3 Find the THD (in percentage % correct to 2 decimal places)5) Perform the following function in a simple program steps a) BL-5.BH b) DX = AX + BX O CXPlease help with the attached problem.
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