EBK AN INTRODUCTION TO MODERN ASTROPHYS
EBK AN INTRODUCTION TO MODERN ASTROPHYS
2nd Edition
ISBN: 9781108390248
Author: Carroll
Publisher: YUZU
Question
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Chapter 10, Problem 10.22P
To determine

The radii of a 0.072M star and 85M star also the ratio of radii of both the star.

Expert Solution & Answer
Check Mark

Answer to Problem 10.22P

The radius of star one is 0.082R the radius of star second is 13.1R and ratio of radius of both stars is 0.0063.

Explanation of Solution

Write the expression Stefan-Boltzmann equation for radius of star is given as,

    R=(L4πσT4)1/2        (1)

Here, L is luminosity, T is surface temperature and σ is numerical constant.

Conclusion:

Substitute 106.006L for L and 5.76×108 for σ and 50506.87 for T in equation (1)

    R1=(106.066L4π(5.76×108)(50506.87)4)1/2=(3.9×10324π(5.76×108)(50506.87)4)1/2=(1.92×10224π(5.76×108)(6.50731×1018))1/2=(1.92×1022(4.7101×1012))1/2

Thus, radius of small star is 0.082R.

Substitute 104.3L for L and 5.76×108 for σ and 1661.46 for T in equation (1)

    R2=(104.3L4π(5.76×108)(1661.46)4)1/2=(1.92×10224π(5.76×108)(1661.46)4)1/2=(1.92×10224π(5.76×108)(7.62017347×1012))1/2=(1.92×1022(5515656.421))1/2

On further simplifying the above expression.

    R2=(1.92×1022(3.254×1014))1/2=(3.481×1015)1/2=9.1×109m=13.1R

Thus, radius of large star is 13.1R.

The ratio of radius of star 1 and 2 is calculated as,

    R1R2=0.082R13.1R=0.0063

Thus, the ratio of radius of star 1 and 2 is 0.0063.

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