Question
a.
R = 0, G ≠ 0, and a = 0
b.
R = 0, G = α, 0 and β = |r|
c.
G = 0, α = β
d.
R = 0, G = 0, α = 0, β = |r|
Posted under Electronics and Communication Engineering
Interact with the Community - Share Your Thoughts
Uncertain About the Answer? Seek Clarification Here.
Understand the Explanation? Include it Here.
Q. A transmission line has primary constants R, L, G and C and secondary constant z₀ and γ = (α + Jβ). If the line is loss less, then
Similar Questions
Explore Relevant Multiple Choice Questions (MCQs)
Q. Which of the following is multiband HF receiving antenna?
View solution
Q. A rectangular waveguide is a
View solution
Q. If a and b are the dimensions of waveguide then
View solution
Q. The frequency range for satellite communication is
View solution
Q. Tropospheric scatter is used with frequencies in the
View solution
Q. A Yagi antenna has a driven antenna
View solution
Q. The minimum height of outer atmosphere is
View solution
Q. An electric charge Q is placed in a dielectric medium which of the following quantities are independent of the dielectric constant ε of the medium
View solution
Q. A square corner reflector is used in
View solution
Q. A square corner reflector is used in which of the following?
View solution
Q. High frequency waves are
View solution
Q. The direction of vectors gives the direction of propagation of electromagnetic waves
View solution
Q. According to maximum power transfer theorem, the maximum power is absorbed by one network from another network when
View solution
Q. Maxwell's divergence equation for the magnetic field is given as
View solution
Q. Which antenna is a wideband antenna?
View solution
Q. The radiation pattern of loop antenna is
View solution
Q. Maxwell's curl equation for the static electric field E can be expressed as
View solution
Q. The unit of ∇ x H is
View solution
Q. A λ/8 section of transmission line is determined of load impedance of (2 - j 5) Ω. If characteristic impedance of line is 10 Ω. Then input impedance of line is
View solution
Q. Long distance short wave radio broadcasting based on
View solution
Recommended Subjects
Are you eager to expand your knowledge beyond Electronics and Communication Engineering? We've handpicked a range of related categories that you might find intriguing.
Click on the categories below to discover a wealth of MCQs and enrich your understanding of various subjects. Happy exploring!