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  1. The effective length of an 1/2 antenna (Given Rr = 73 Ω and (Ae)max = 0.34λ2 and η = 120p) is __________ .

  2. A.
    0.6348 λ
    B.
    0.5133 λ
    C.
    0.1587 λ
    D.
    0.3714 λ

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  3. Find Z11,

  4. A.
    2 Ω
    B.
    4 Ω
    C.
    1 Ω
    D.
    Ω

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  5. Consider a Binary Symmetric Channel (BSC) with probability of error being p. To transmit a bit, say 1, we transmit a sequence of three 1 s. The receiver will interpret the received sequence to represent 1 if at least two bits are 1. The probability that the transmitted bit will be received in error is

  6. A.
    p3 + 3p2 (1 - p)
    B.
    p3
    C.
    (1 - p)3
    D.
    p3 + p2 (1 -p)

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  7. Consider the sequence x(n) whose fourier transform X(e) is depicted for - p ≤ ω ≤ p as shown in figure

    1. x(n) is periodic
    2. Real
    3. Even
    4. Finite energy

  8. A.
    1 - True, 2 - True, 3 - True, 4 - True
    B.
    1 - False, 2 - True, 3 - False, 4 - True
    C.
    1 - True, 2 - False, 3 - True, 4 - False
    D.
    1 - False, 2 - False, 3 - False, 4 - True

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  9. In the given figure
    .
    The damped frequency is __________ .

  10. A.
    0 rad/sec
    B.
    2 rad/sec
    C.
    3/2 rad/sec
    D.
    None of these

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  11. For a medium σ = 2.1 x 10-4 mho/m and ε = 80 e0 at a frequency of 5 GHz its loss tangent is

  12. A.
    1 x 10-5
    B.
    9.45 x 10-6
    C.
    1.31 x 10-4
    D.

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  13. For the output F to be 1 in the logic circuit shown, the input combination should be

  14. A.
    A = 1, B = 1, C = 0
    B.
    A = 1, B = 0, C = 0
    C.
    A = 0, B = 1, C = 0
    D.
    A = 0, B = 0, C = 1

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  15. The ROC of Z-transform of the discrete time sequence x(n) is

  16. A.
    B.
    C.
    D.
    2 > |Z| > 3

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  17. Assuming the OP-AMP to be ideal, the voltage gain of the amplifier shown in figure is

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  19. The function shown in figure, can represent a probability density function for A __________ .

  20. A.
    A = 1/4
    B.
    A = 1/6
    C.
    A = 1/8
    D.
    A = 1/2

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