A step down transformer, transforms a supply line voltage of 2200 V into 220 V. The primary coil has 5000 turns. The efficiency and the power transmitted by the transformer are 90% and 8 KW respectively. Then the power supplied is
$\left( A \right)$ 9.89 KW
$\left( B \right)$ 8.89 KW
$\left( C \right)$ 88.9 KW
$\left( D \right)$ 889 KW
Answer
299.4k+ views
- Hint: In this question use the property that efficiency of a transformer is the ratio of power received at the load end to the power supplied by the source end so use this concept to reach the solution of the question.
Complete step-by-step solution -
Given data:
Supply voltage = 2200 V
Load voltage = 220 V
Number of turns in primary coil = 500
Efficiency of transformer = 90% = (90/100)
Power transmitted i.e. power received by the load end = 8 KW
Now as we know that efficiency ($\eta $) of a transformer is the ratio of power received (${P_r}$) at the load end to the power supplied (${P_s}$) by the source end.
$ \Rightarrow \eta = \dfrac{{{P_r}}}{{{P_s}}}$
Now substitute the values we have,
$ \Rightarrow \dfrac{{90}}{{100}} = \dfrac{{8{\text{ KW}}}}{{{P_s}}}$
$ \Rightarrow {P_s} = \dfrac{{8{\text{ KW}}}}{{\dfrac{{90}}{{100}}}} = \dfrac{{800}}{{90}}{\text{ = 8}}{\text{.89 KW}}$
So the power supplied by the transformer is 8.89 KW.
So this is the required answer.
Hence option (B) is the correct answer.
Note – An interesting fact is that for an ideal transformer the power supplied by the transformer is equal to the power received as the efficiency of the ideal transformer is 100%, if not than it is not an ideal transformer it is a practical transformer and the loss in the power while transferring the power from source to load (i.e. the difference of power) is called as core loss and copper loss of the transformer.
Complete step-by-step solution -
Given data:
Supply voltage = 2200 V
Load voltage = 220 V
Number of turns in primary coil = 500
Efficiency of transformer = 90% = (90/100)
Power transmitted i.e. power received by the load end = 8 KW
Now as we know that efficiency ($\eta $) of a transformer is the ratio of power received (${P_r}$) at the load end to the power supplied (${P_s}$) by the source end.
$ \Rightarrow \eta = \dfrac{{{P_r}}}{{{P_s}}}$
Now substitute the values we have,
$ \Rightarrow \dfrac{{90}}{{100}} = \dfrac{{8{\text{ KW}}}}{{{P_s}}}$
$ \Rightarrow {P_s} = \dfrac{{8{\text{ KW}}}}{{\dfrac{{90}}{{100}}}} = \dfrac{{800}}{{90}}{\text{ = 8}}{\text{.89 KW}}$
So the power supplied by the transformer is 8.89 KW.
So this is the required answer.
Hence option (B) is the correct answer.
Note – An interesting fact is that for an ideal transformer the power supplied by the transformer is equal to the power received as the efficiency of the ideal transformer is 100%, if not than it is not an ideal transformer it is a practical transformer and the loss in the power while transferring the power from source to load (i.e. the difference of power) is called as core loss and copper loss of the transformer.
Recently Updated Pages
If the magnetizing field on a ferromagnetic material class 12 physics JEE_Main

A point charge is placed at the corner of a cube The class 12 physics JEE_Main

What changes occur if the monochromatic light used class 12 physics JEE_Main

The unit of specific conductance is A Ohm B Ohmmetre class 12 physics JEE_Main

Which lens is used in magnifying glass A Concave lens class 12 physics JEE_Main

Sir C V Raman won the Nobel Prize in which year A 1928 class 12 physics JEE_Main

Trending doubts
JEE Main 2026: Exam Dates, Session 2 Updates, City Slip, Admit Card & Latest News

Understanding the Electric Field of a Uniformly Charged Ring

Understanding Atomic Structure for Beginners

Electron Gain Enthalpy and Electron Affinity Explained

Derivation of Equation of Trajectory Explained for Students

How to Convert a Galvanometer into an Ammeter or Voltmeter

Other Pages
CBSE Class 12 Physics Question Paper 2026: Download SET-wise PDF with Answer Key & Analysis

JEE Advanced Percentile vs Marks 2026: JEE Main Cutoff, AIR & IIT Admission Guide

What Are Current and Potential Difference in Electricity?

Understanding Uniform Acceleration in Physics

Hybridisation in Chemistry – Concept, Types & Applications

Isoelectronic Species: Definition, Examples & Importance

