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How can you relate the z parameter to the y parameter?
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What is the condition for symmetry in z and y parameter?

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How do you find the Z-parameters from Y parameters?

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How can you relate power engineering with electrical engineering?

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What are the four variables used in Z parameter representation?

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What is the condition for symmetry in case z and y parameters?

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What is the relationship between Z-parameters and Y parameters?

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What is the difference between Y and Z parameters?
Answer : The Y-parameters (admittance parameters) and Z-parameters (impedance parameters) are both used to describe the behavior of linear electrical networks, particularly in the context of two-port networks. ... the network's behavior is described in terms of current-to-voltage relationships (admittance)....

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What are the defining equations of z and Y-parameters?

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What is the condition for symmetry in case z and y-parameters?

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Solve the first-order PDE using Lagrange’s method \[ p + q = x + y \] where \( p = \frac{\partial z}{\partial x} \) and \( q = \frac{\partial z}{\partial y} \).
Answer : #### **Solution:** 1. **Given PDE:** \[ p + q = x + y \] which can be rewritten as: \[ \frac{\partial z}{\partial x} + \frac{\partial z}{\partial y} = x + y \] 2. **Using Lagrange's ... \( C_1 = x - y \), \[ z = y^2 + (x-y)y + C_2 \] which is the general solution....

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How does the turns ratio relate to voltage transformation?

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How do you convert ABCD parameters to Z-parameters?

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How can you Minimise loss due to hysteresis the magnetic material should have?

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Convert the following Boolean equation to standard SOP form and implement using NAND-NAND logic: (i) y = A'B'C' + ABC'D' + A'C'D' (ii) y = PQ + P'QR + PQR.

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Solve the following using Taylor’s Series Method (up to 3 terms): \[ \frac{dy}{dx} = x^2 + y, \quad y(0) = 1 \] Find \( y(0.2) \).
Answer : #### **Solution:** 1. **Taylor Series Expansion:** The Taylor series expansion of \( y(x) \) around \( x = 0 \) is: \[ y(x) = y(0) + x \frac{dy}{dx} \bigg|_{x=0} + \frac{x^2}{2!} \frac{d^2y}{dx^2} \ ... + 0.004 \] \[ = 1.224 \] **Final Answer: \( y(0.2) \approx 1.224 \)**. ---...

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