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Question

The time taken for the magnetic energy to reach 25% of its maximum value, when a solenoid of resistance R, inductance L is connected to a battery, is


A

LRln2

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B

LRln10

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C

Infinite

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D

LRln5

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Solution

The correct option is A

LRln2


Step 1: Given data:

A solenoid of resistance R

Inductance L

Let 't' be the time taken for the magnetic energy to reach 25% of its maximum value

Step 2: Formula used:

Maximum magnetic energy will be given by-

Uo=12LIo21

Where, Io is the maximum current flow through L-R circuit.

From current-time relations, we know that,

I=Io1-e-RtL2

Which states that the growth of the current is exponential.

Where, I is the current flowing through L-R circuit at any instant 't'.

Step 3: Calculation of current:

Let I be the current flowing when the magnetic energy reaches to 25% of its maximum value.

The obtained magnetic energy will be, U=12LI23

As it is given that,

U=25100Uo

U=Uo4

From equations (1) and (3)-

12LI2=1412LIo2I=Io24

Thus the current in the L-R circuit when the magnetic energy reached 25% of its maximum value is I=Io2.

Step 4: Calculation of time taken:

From equation (2), the current flows through L-R circuit at any instant 't' is-

I=Io1-e-RtL

From equation (4), putting the value of I

Io2=Io1-e-RtL12=1-e-RtLe-RtL=12

Taking log on both sides,

loge12=logee-RtLln12=-RtLt=-LRln12t=LRln2 from the property rule of the natural logarithm lnex=x&lnx=-ln1x

Thus the time taken for the magnetic energy to reach 25% of its maximum value is LRln2.

Hence, option (A) is the correct answer.


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