NEET Practice Questions (MCQs) with Answers & Solutions

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A silicon optical fibre has a core refractive index of 1.50 and a cladding refractive index 1.47 what is the numerical aperture of the fibre ?

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Which of the following alternative is not nature Noise ?

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In optical fibre communication, the APD semi conductor device is a red

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Phase difference between space current and capacitive current is

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Refractive index of ionosphere is

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Two wires of equal lengths, equal diameters and having resistivities $ \rho _1 and \rho_2 $ are connected in series .The equivalent resistivity of the combination is....

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Explanation

$R = R_1 + R_2 = { \rho_1 L \over A} +{ \rho _2 L \over A } = { L \over A} (\rho_1 + \rho_2) .......(1)$ $ R = { \rho (2L) \over A} ......(2)$ $ Equation (1) and (2) gives = \rho = 1/2 (\rho_1 + \rho_2) $ $ I_1 = {12 V \over 4 \Omega } = 3A$

The effective resistance of a n number of resistors connected in parallel in x ohm. When one of the resistors is removed, the effective resistance becomes y ohm. The resistance of the resistor that is removed is....

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Explanation

$ {1 \over R_1 }+ {1 \over R_2 }+.....+{1 \over R_{n-1} }+{1 \over R_n } = {1 \over x } .....(1)$ $ \Rightarrow If the n^{th} resistor is removed , then $ $ {1 \over R_1 }+ {1 \over R_2 }+.....+{1 \over R_{n-1} }+{1 \over R_n } = {1 \over y } .....(2)$ Subtracting (2) form (1), we have $ {1 \over R_n }= {1 \over x } - { 1 \over y}$ $$Which given {R_n} = {xy \over (y-x)} which is choice (B)$$

when a cell is connected to a resistance $R_1$ the rate at which heat is generated in it is the same as when the cell is connected to a resistance $R_ 2 < R_1$
the internal resistance of the cell is....

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Explanation

$ I = { E \over (R_1 + r )} \Rightarrow Q_1 = I^2 R_1 = [ { E \over (R_1 + r)}]^2 R_1$ $ Q_2 = [ { E \over (R_2 + r)}]^2 R_2$ $Equating Q_1 and Q_2 simplifying, we get \,r = \sqrt { R_1 R_2} $

Two batteries each of emf 2V and internal resistance $1 \Omega $ are connected in series to a resistor R. Maximum Possible power consumed by the resistor = ....

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Explanation

$ Max power = n ({ E^2 \over 4r})$

In an experiment to measure the internal resistance of a cell by a potentiometer it is found that all the balance points at a length of 2m when the cell is shunted by a 5 ohm resistance and is at a length of 3m when the cell is shunted by a 10 ohm resistance, the internal resistance of the cell is then :

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Explanation

$ r = ({ l_1 \over l_2} -1) R$

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