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Question

If earth suddenly contracts to half its present radius keeping the mass constant, what would be the length of the day?


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Solution

Step 1. Given data:

From the given, reduction in Earth’s size indicates the reduction in its radius, since, the radius is reduced to half.

Step 2. Formula used:

We have to find the moment of inertia of earth before and after contraction keeping in mind that the mass remains constant.

The formula of the moment of inertia of a solid sphere is,

I=25MR2

Here M is the mass and R is the radius of the sphere.

The angular velocity can be expressed as,

ω=2πT

Now the law of conservation of angular momentum is,

I1ω1=I2ω2

From the given, the present radius of the earth R1 is reduced by half, so after contraction the radius is,

R2=R12 ------------ 1

But at the time of contraction, the mass is constant, which is shown in the figure above

We get,

M1=M2=M ------------ 2

Step 3. Find the angular velocity before and after contraction

From the above contraction, the angular velocity of the earth's rotation changes.

So, the angular velocity before contraction is,

ω1=2πT1----------- 3

The angular velocity after contraction is,

ω2=2πT2---------- 4

Step 4. Find the moment of inertia

There is another quantity that is undergoing change due to the contraction of earths- moment of inertia. So, the moment of inertial before contraction is,

I1=25MR12 ----------- 5

Moment of inertia after contraction is,

I2=25MR22

=25MR122

=I14 -------- 6

Now,

According to the law of conservation of angular momentum is,

dLdt=0

Here, L= is constant.

So,

I1ω1=I2ω2 --------- 7

Step 5. Find the length of the day

Substitute equations 3, 4, and 6 in 7, we get,

I12πT1=I142πT2

T2=T14 ----------- 8

We know that our planet Earth rotates once every 24 hours at the moment.

So,

T1=24hrs --------- 9

Substitute the equation 9 in 8, we get,

T2=244Hrs

T2=6Hrs

Hence, for an earth that is contracted to half its present size with mass constant, the duration of a day will be just 6Hrs.


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