MCQ
A transformer may be used to provide maximum power transfer between two $AC$ circuits that have different impedances $Z_1$ and $Z_2. $ The ratio of turns $N_1/N_2$ needed to meet this condition is given by :-
  • A
    $\frac{N_1}{N_2}=\frac{Z_1}{Z_2}$
  • B
    $\frac{N_1}{N_2}=\frac{Z_2}{Z_1}$
  • C
    $\frac{N_1}{N_2}=\sqrt{\frac{Z_2}{Z_1}}$
  • $\frac{N_1}{N_2}=\sqrt{\frac{Z_1}{Z_2}}$

Answer

Correct option: D.
$\frac{N_1}{N_2}=\sqrt{\frac{Z_1}{Z_2}}$
d
Maximum power transfer is In the state of resonance.

$\mathrm{P}=\mathrm{VI} \cos \theta$

$\cos \theta=1$

$\mathrm{P}=\frac{\mathrm{V}_{1}^{2}}{\mathrm{Z}_{1}}$

$\frac{V_{1}^{2}}{V_{2}^{2}}=\frac{Z_{1}}{Z_{2}}$

$\frac{V_{1}}{V_{2}}=\frac{N_{1}}{N_{2}}$

[By transformer (mutual induction) ]

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

Infrared radiation is detected by
A solid cylinder of density $\rho_0$, cross-section area $A$ and length $l$ floats in a liquid of density $\rho\left( >\rho_0\right)$ with its axis vertical, as shown. If it is slightly displaced downward and released, the time period will be .......
The angle between the electric lines of force and the equipotential surface is
If resistivity of all four wire connected in parallel is different as given in figure and all other dimensions of wire are same then current $i$ is (resistance of wire having resistivity $\rho $ is $R_0$ )
A train moves towards a stationary observer with a speed $34 \,m / s$. The train sounds a whistle and its frequency registered by the observer is $f_1$. If the speed of the train is reduced to $17 \,m / s$, the frequency registered is $f_2$. If the speed of sound is $340 \,m / s$ then the ratio $\frac{f_1}{f_2}$ is ..........
The figure shows a network of four resistances and three batteries Mark the incorrect statement.
Consider a car moving along a straight horizontal road with a speed of $72\, km/h$. If the coefficient of kinetic friction between the tyres and the road is $0.5,$ the shortest distance in which the car can be stopped is ........ $m$ .$[g = 10\,m{s^{ - 2}}]$
A body of mass $4\, kg$ is at rest on a horizontal table. The coefficient of friction between  the body and the table is $0.2$ . A horizontal force of $6N$ is applied on the body.  The acceleration of the body is .......... $m/s^2$
Two masses of $1 \,gm$ and $4 \,gm$ are moving with equal kinetic energies. The ratio of the magnitudes of their linear momenta is
If pulleys shown in the diagram are smooth and massless and $a_1$ and $a_2$ are acceleration of blocks of mass $4 \,kg$ and $8 \,kg$ respectively, then