JEE Main - 11th April 2015
Embibe Experts Physics Solutions for Exercise - JEE Main - 11th April 2015
Simple step-by-step solutions to JEE Main - 11th April 2015 questions of Electronic Devices Semiconductors from EMBIBE CHAPTER WISE PREVIOUS YEAR PAPERS FOR PHYSICS. Also get 3D topic explainers, cheat sheets, and unlimited doubts solving on EMBIBE.
Questions from JEE Main - 11th April 2015 with Hints & Solutions
Match List I with List II
List I | List II | ||
A | Attenuation | I | Combination of a receiver and transmitter |
B | Transducer | II | Process of retrieval of information from the carrier wave at receiver |
C | Demodulation | III | Converts one form of energy into another |
D | Repeater | IV | Loss of strength of a signal while propagating through a medium |
Choose the correct answer from the options given below :
The amplitude of is modulated by signal. The amplitude modulated signal contains frequency (ies) of
Choose the correct answer from the options given below:
Given below are two statements
Statement I : For transmitting a signal, size of antenna should be comparable to wavelength of signal (at least in dimension).
Statement II : In amplitude modulation, amplitude of carrier wave remains constant (unchanged).
In the light of the above statements, choose the most appropriate answer from the options given below
Which of the following frequencies does not belong to FM broadcast.
In an amplitude modulation, a modulating signal having amplitude of is superimposed with a carrier signal of amplitude in first case. Then, in second case, the same modulating signal is superimposed with different carrier signal of amplitude . The ratio of modulation index in the two case respectively wil be :
The output for the inputs and of circuit is given by
Truth table of the shown circuit is :
Match the List I with List II
List I | List II | ||
A | Intrinsic Semiconductor | I | Fermi-level near valence band |
B | n-type semiconductor | II | Fermi-level at middle of valence and conduction band |
C | p-type semiconductor | III | Fermi-level near conduction band |
D | Metals | IV | Fermi-level inside conduction band |
Choose the correct answer from the options given below:
Choose the correct statement about Zener diode: